Daily Archives: October 25, 2016

Robotics | An Open Access Journal from MDPI

Posted: October 25, 2016 at 7:41 am

In this paper, we present a recent survey on robotic grippers. In many cases, modern grippers outperform their older counterparts which are now stronger, more repeatable, and faster. Technological advancements have also attributed to the development of gripping various objects. This includes [...] Read more. In this paper, we present a recent survey on robotic grippers. In many cases, modern grippers outperform their older counterparts which are now stronger, more repeatable, and faster. Technological advancements have also attributed to the development of gripping various objects. This includes soft fabrics, microelectromechanical systems, and synthetic sheets. In addition, newer materials are being used to improve functionality of grippers, which include piezoelectric, shape memory alloys, smart fluids, carbon fiber, and many more. This paper covers the very first robotic gripper to the newest developments in grasping methods. Unlike other survey papers, we focus on the applications of robotic grippers in industrial, medical, for fragile objects and soft fabrics grippers. We report on new advancements on grasping mechanisms and discuss their behavior for different purposes. Finally, we present the future trends of grippers in terms of flexibility and performance and their vital applications in emerging areas of robotic surgery, industrial assembly, space exploration, and micromanipulation. These advancements will provide a future outlook on the new trends in robotic grippers. Full article

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Robotics | An Open Access Journal from MDPI

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Industrial Robotics Training | School of Technology

Posted: at 7:41 am

Michigan Technological University is a FANUC Authorized Certified Education Training Facility that is able to provide training to academic and industry representatives. Michigan Tech collaborates with FANUC to support their goal of "Partnering with Education" to help meet the growing demand for the skilled workforce needed in all aspects of today's manufacturing. A FANUC certified instructor conducts all training at Michigan Tech and is committed to quality of teaching and providing the best learning experience. Our Robotics Laboratory is equipped with several FANUC industrial robots and classroom computers have FANUC Robotics ROBOGUIDE simulation software available for students to practice.

Register for our courses today!

Course Description: This course is intended for the person who operates or may be required to perform maintenance on a System R-J or higher controller with a standard application software package. It covers the tasks and procedures needed to reach the course goals with both classroom instruction and hands-on training. The course does not address the set-up and operation of specific software features and options.

Registered students will be provided with on-line modules four (4) weeks prior to the training. The on-line modules introduce the theoretical aspect of the material taught in the course. Hands-on 8-hour training will be conducted at Michigan Tech and will consist of 7 laboratory exercises. In addition to lab exercises, a pre-test and post-test are used to measure mastery of objectives.

Course Objectives:

Prerequisites: None

Seats: 12

Cost: $880

Fall 2016 Dates: September 24 October 8 October 22 November 19

Spring 2017 Dates: Coming Soon!

View Training Policies

Course Description:

This course covers the tasks that an operator, technician, engineer or programmer needs to set up and program a FANUC Robotics HandlingTool Software Package.

Course Objectives:

Course Delivery:

Registered students will be provided with on-line modules four (4) weeks prior to the training. Hands-on 16-hour training will be conducted at Michigan Tech and will consist of 12 laboratory exercises. In addition to lab exercises, a pre-test and post-test are used to measure mastery of objectives.

Prerequisites: None

Seats: 12

Cost: $1,760

Fall 2016 Dates: September 17-18 October 1-2 October 15-16 November 12-13 December 3-4 December 10-11

Spring 2017 Dates: Coming Soon!

View Training Policies

* 32 Hours (16 hours on-line + 16 hours hands-on training)

Course Description:

This course will provide procedures for creating a HandlingPRO virtual workcell. When completed, the workcell created will contain a FANUC robot with end-of-arm tooling, one or more fixtures for holding a part and a robot TPP Program which moves the part from one fixture to the other.

Course Objectives: One Day Course (HandlingPRO Intro)

Prerequisite: HandlingTool Operation and Programming OR Robot Operations course

Seats: 15

Cost: $880

Fall 2016 Dates: September 25 October 9 November 20 December 2

Spring 2017 Dates: Coming Soon!

View Training Policies

A continuing education unit (CEU) is a measure used in continuing education programs.

All the robotics training courses offered at Michigan Tech are in compliance with courses offered at FANUC Robotics with the course content being identical. Upon fulfilling all the course requirements, students receive a FANUC certificate of course completion.

Instructor Contact: avsergue@mtu.edu906-487-2258

Thank you for an excellent experience of learning the basics of the Fanuc robots. The knowledge you demonstrated, your preparation to adapt the course to fit the needs of what needed to be covered, and tailor the training to our knowledge level as well as Comco USA's business needs, made the 2 days spent there an extreme value to both me and my company (Comco USA).

It always shows when an instructor believes and enjoys what they are teaching. I believe your training would be a great value to anyone wanting to learn how to operate the Fanuc robots.

David Mitchell, Service Engineer, Comco USA

I really enjoyed the training, as well as the city and the surrounding area.

I am very impressed with the professionalism and dedication you have. The training was packed with the tools I needed to succeed. The theoretical content, along with the hands-on practice in Michigan Tech's Electrical Engineering Technology lab, gave me the confidence I was looking for.

I really liked your approach to the course, starting from emphasizing the safety aspects related to robot operations. The outline of the course was designed to get you into the robotic programming field in a continuous gradient, so I made huge steps in just two days of training. I definitely would not hesitate on taking more training at Michigan Tech.

Douglas Torres, Assistant Service Mgr. / Service Engineer, Comco USA Inc. - Nashville Office

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Industrial Robotics Training | School of Technology

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Future of Robotics|Robots of the Future|Robot Links

Posted: at 7:41 am

Robotic Pets

Pets of the future might be robots with artificial intelligence.

Robotic Pets

The ultimate goal of the RoboCup project is to develop a team of fully autonomous humanoid robots that can win against the human world champion team in soccer by the year 2050.

The FIRST Robotics Competition challenges teams of young people and their mentors to solve a common problem in a six-week timeframe using a standard "kit of parts" and a common set of rules. Teams build robots from the parts and enter them in competitions.

RoboCup web site

FIRST Robotics Competition

Insects have come up with many interesting solutions for the problems that future robots will have to deal with like cooperation, specialized movement and adapting to changing environments. Robotic engineers are incorporating examples found in nature into their designs.

Robot Insects

Wearable bionic suits are being developed for the military to allow soldiers to carry heavier loads and to conserve energy.

Other uses for exoskeletons are assisting rescue workers move heavy objects and bionics for motor-impaired patients.

Exoskeletons

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Industrial Electronics and Robotics Technician

Posted: at 7:41 am

Contact Us

Tom Newman Instructor 253.680.7350

Bob Traufler Career Advisor 253.680.7605

Location Downtown Campus Hours Mon - Fri, 7 a.m. - 2:45 p.m.

In the Industrial Electronics and Robotics Technician program, students learn to install, diagnose, maintain, modify, test, and calibrate electronic, electrical, and mechanical systems used in manufacturing support equipment and production machinery, including precision machine tools (CNC) and industrial robots.

The program consists of a certificate of training in Basic Electricity, a one-year Electrical Technician certificate, and a two-year Industrial Technology degree that prepares students for entry into electrical apprenticeships. The program features equipment and software from industry leaders such as Allen Bradley, Rockwell Automation, FANUC Robotics, Bosch, Siemens, Famic Technologies, and National Instruments.

Focus is on the intelligent control of machines and processes using programmable logic controllers (PLCs), embedded controllers, variable frequency drives (VFDs), industrial networks, sensors & transducers, instrumentation and robotics. The electrical curriculum is based on guidelines from the National Joint Apprenticeship Training Committee (NJATC) for electrical trades.

The program also offers in-depth career training for those interested in becoming an electronics technician in the manufacturing, scientific, aerospace, or civilian military industries.

Program Length: Seven quarters (approximate)

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Industrial Electronics and Robotics Technician

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STEM Robotics 101 NXT | STEMRobotics

Posted: at 7:41 am

Goals & Required Resources

STEM Robotics 101 is both a turn-key curriculum for novice Robotics teachers and a collaboration tool for veteran Robotics teachers.

This introductory STEM Robotics master curriculum uses the LEGO MINDSTORMS NXT Education Base Set and NXT-G software to teach a full STEM Robotics course.

This master curriculum is divided into Units, several of which contain lessons built around the "NXT Video Trainer 2.0" product from Carnegie Mellon University's Robotics Academy. (This product is now available free online from CMU's CS2N Courses site). These self-paced learning-to-program videos are supplemented with lessons on robotics technologies, explicit math and science concepts, and the Engineering Process, in order to round out a complete STEM curriculum.

Site Navigation & Structure

Use the "+" boxes in the left-hand Navigation Pane to quickly move through the hundreds of pages of content in the curriculum. By clicking on any item in the Navigation Tree, that item will turn red in the tree and its content will be displayed in this right-hand pane.

Each Unit is broken into several lessons, each of which typically include Objectives, an Instructor's Guide, Primary Instructional Material, Differentiated Instructional Material (Alternative, Extended, and Supplemental), as well as Formative and Summative Assessments. Most Units end witha design-from-scratchEngineering or Group Challenge that ties together all the learning-to-date into an open-ended culminating design project.

This is a comprehensive master STEM Robotics curriculum. Users are welcome to customize their own curriculum by selecting only those lessons and components best suited to their skills, and the needs of their students and school (see "Make a Clone of this Course" tool below the Navigation Pane).

Scope & Sequence

The Scope & Sequence page gives a Course-at-a-Glance view that may be used as a guide for customizing the course content.

Teacher Access

Access to Assessments and Answer Keys is limited to registered teacher-users. To request an account, select the "Register" button at the top-left of this page. Registered teacher-users are encouraged to use the "Add Additional Instructional Material" and "Add Additional Assessments" Wizards located at the top-left of each lesson. Contributed content will immediately be available for other to use.

Please review the READ ME:Conventions & Layout page below for guidance on conventions and use of this site. Registered teacher-users may also rate, tag and leave comments on the content of any page(only visible to other teacher-users).

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STEM Robotics 101 NXT | STEMRobotics

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Our Resort | Hedonism II

Posted: at 7:37 am

Select Departure City Albany, Ny [ALB] Albuquerque, Nm [ABQ] Allentown, Pa [ABE] Amarillo, Tx [AMA] Anchorage, Ak [ANC] Appleton, Mn [AQP] Arcata, Ca [ACV] Asheville, Nc [AVL] Aspen, Co [ASE] Atlanta, Ga [ATL] Atlantic City, Nj [ACY] Austin, Tx [AUS] Baltimore, Md [BWI] Bangor, Me [BGR] Beaumont, Tx [BPT] Bethel, Ak [BET] Billings, Mt [BIL] Binghamton, Ny [BGM] Birmingham, Al [BHM] Bismarck, Nd [BIS] Bloomington, Il [BMI] Boise, Id [BOI] Boston, Ma [BOS] Brownsville, Tx [BRO] Brunswick, Ga [BQK] Buffalo, Ny [BUF] Burbank, Ca [BUR] Burlington, Vt [BTV] Calgary [YYC] Cedar Rapids, Ia [CID] Charleston, Sc [CHS] Charleston, Wv [CRW] Charlotte, Nc [CLT] Charlottesville, Va [CHO] Chicago (Midway), Il [MDW] Chicago (O'Hare), Il [ORD] Cincinnati, Oh [CVG] Cleveland, Oh [CLE] College Station, Tx [CLL] Colorado Springs, Co [COS] Columbia, Mo [COU] Columbia, Sc [CAE] Columbus, Oh [CMH] Cordova, Ak [CDV] Corpus Christi, Tx [CRP] Dallas Love Field, Tx [DAL] Dallas/Fort Worth, Tx [DFW] Dayton, Oh [DAY] Denver, Co [DEN] Des Moines, Ia [DSM] Detroit, Mi [DTW] Duluth, Mn [DLH] Durango, Co [DRO] Edmonton Intntl [YEG] Eastern Iowa, Ia [CID] El Paso, Tx [ELP] Erie, Pa [ERI] Eugene, Or [EUG] Eureka, Ca [EKA] Fairbanks, Ak [FAI] Fargo, Nd [FAR] Flint, Mi [FNT] Fresno, Ca [FAT] Ft. Lauderdale, Fl [FLL] Ft. Myers, Fl [RSW] Ft. Walton/Okaloosa [VPS] Ft. Wayne, In [FWA] Gainesville, Fl [GNV] Grand Forks, Nd [GFK] Grand Rapids, Mi [GRR] Great Falls, Mt [GTF] Green Bay, Wi [GRB] Greensboro, Nc [GSO] Greenville, Sc [GSP] Gulfport, Ms [GPT] Halifax Intntl [YHZ] Harlingen [HRL] Harrisburg, Pa [MDT] Hartford, Ct [BDL] Helena, Mt [HLN] Hilo, Hi [ITO] Hilton Head, Sc [HHH] Honolulu, Hi [HNL] Houston Hobby, Tx [HOU] Houston Busch, Tx [IAH] Huntington, Wv [HTS] Huntsville Intl, Al [HSV] Idaho Falls, Id [IDA] Indianapolis, In [IND] Islip, Ny [ISP] Ithaca, Ny [ITH] Jackson Hole, Wy [JAC] Jackson Int'L, Ms [JAN] Jacksonville, Fl [JAX] Juneau, Ak [JNU] Kahului, Hi [OGG] Kansas City, Mo [MCI] Kapalua, Hi [JHM] Kauai, Hi [LIH] Key West, Fl [EYW] Knoxville, Tn [TYS] Kona, Hi [KOA] Lanai, Hi [LNY] Lansing, Mi [LAN] Las Vegas, Nv [LAS] Lexington, Ky [LEX] Lincoln, Ne [LNK] Little Rock, Ar [LIT] Long Beach, Ca [LGB] Los Angeles, Ca [LAX] Louisville, Ky [SDF] Lubbock, Tx [LBB] Lynchburg, Va [LYH] Montreal Mirabel [YMX] Montreal Trudeau [YUL] Madison, Wi [MSN] Manchester, Nh [MHT] Maui, Hi [OGG] Mcallen, Tx [MFE] Medford, Or [MFR] Melbourne, Fl [MLB] Memphis, Tn [MEM] Miami, Fl [MIA] Midland/Odessa, Tx [MAF] Milwaukee, Wi [MKE] Minneapolis/St. Paul [MSP] Missoula, Mt [MSO] Mobile Regional, Al [MOB] Molokai, Hi [MKK] Monterey, Ca [MRY] Montgomery, Al [MGM] Myrtle Beach, Sc [MYR] Naples, Fl [APF] Nashville, Tn [BNA] New Braunfels, Tx [BAZ] New Orleans, La [MSY] New York Kennedy, Ny [JFK] New York Laguardia [LGA] Newark, Nj [EWR] Norfolk, Va [ORF] Ottawa Mcdonald [YOW] Oakland, Ca [OAK] Oklahoma City, Ok [OKC] Omaha, Ne [OMA] Ontario, Ca [ONT] Orange County, Ca [SNA] Orlando, Fl [MCO] Palm Springs, Ca [PSP] Panama City, Fl [PFN] Pensacola, Fl [PNS] Peoria, Il [PIA] Philadelphia, Pa [PHL] Phoenix, Az [PHX] Pittsburgh, Pa [PIT] Port Angeles, Wa [CLM] Portland Intl, Or [PDX] Portland, Me [PWM] Providence, Ri [PVD] Quebec Intntl [YQB] Raleigh/Durham, Nc [RDU] Rapid City, Sd [RAP] Redmond, Or [RDM] Reno, Nv [RNO] Richmond, Va [RIC] Roanoke, Va [ROA] Rochester, Ny [ROC] Rockford, Il [RFD] Sacramento, Ca [SMF] Saginaw, Mi [MBS] Salem, Or [SLE] Salt Lake City, Ut [SLC] San Antonio, Tx [SAT] San Diego, Ca [SAN] San Francisco, Ca [SFO] San Jose, Ca [SJC] Santa Barbara, Ca [SBA] Santa Rosa, Ca [STS] Sarasota/Bradenton [SRQ] Savannah, Ga [SAV] Seattle/Tacoma, Wa [SEA] Shreveport, La [SHV] Sioux City, Ia [SUX] Sioux Falls, Sd [FSD] Spokane, Wa [GEG] Springfield, Il [SPI] Springfield, Mo [SGF] St. Louis, Mo [STL] St. Petersburg, Fl [PIE] Syracuse, Ny [SYR] Toronto Pearson [YYZ] Tallahassee, Fl [TLH] Tampa, Fl [TPA] Traverse City, Mi [TVC] Tucson, Az [TUS] Tulsa, Ok [TUL] Vancouver Intntl [YVR] Victoria Intntl [YYJ] Winnipeg Intntl [YWG] Washington Natl, Dc [DCA] Washington/Dulles, Dc [IAD] Wenatchee, Wa [EAT] West Palm Beach, Fl [PBI] White Plains, Ny [HPN] Wichita, Ks [ICT] Wilkes-Barre/Scranton [AVP]

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Our Resort | Hedonism II

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Full text: Donald Trump 2016 RNC draft speech transcript …

Posted: at 7:36 am

Donald Trump's remarks according to a draft obtained by POLITICO Thursday afternoon.

By POLITICO Staff

07/21/16 06:21 PM EDT

Remarks as prepared for delivery according to a draft obtained by POLITICO Thursday afternoon.

Friends, delegates and fellow Americans: I humbly and gratefully accept your nomination for the presidency of the United States.

Story Continued Below

Together, we will lead our party back to the White House, and we will lead our country back to safety, prosperity, and peace. We will be a country of generosity and warmth. But we will also be a country of law and order.

Our Convention occurs at a moment of crisis for our nation. The attacks on our police, and the terrorism in our cities, threaten our very way of life. Any politician who does not grasp this danger is not fit to lead our country.

Americans watching this address tonight have seen the recent images of violence in our streets and the chaos in our communities. Many have witnessed this violence personally, some have even been its victims.

I have a message for all of you: the crime and violence that today afflicts our nation will soon come to an end. Beginning on January 20th 2017, safety will be restored.

The most basic duty of government is to defend the lives of its own citizens. Any government that fails to do so is a government unworthy to lead.

It is finally time for a straightforward assessment of the state of our nation.

I will present the facts plainly and honestly. We cannot afford to be so politically correct anymore.

So if you want to hear the corporate spin, the carefully-crafted lies, and the media myths the Democrats are holding their convention next week.

But here, at our convention, there will be no lies. We will honor the American people with the truth, and nothing else.

These are the facts:

Decades of progress made in bringing down crime are now being reversed by this Administrations rollback of criminal enforcement.

Homicides last year increased by 17% in Americas fifty largest cities. Thats the largest increase in 25 years. In our nations capital, killings have risen by 50 percent. They are up nearly 60% in nearby Baltimore.

In the Presidents hometown of Chicago, more than 2,000 have been the victims of shootings this year alone. And more than 3,600 have been killed in the Chicago area since he took office.

The number of police officers killed in the line of duty has risen by almost 50% compared to this point last year. Nearly 180,000 illegal immigrants with criminal records, ordered deported from our country, are tonight roaming free to threaten peaceful citizens.

The number of new illegal immigrant families who have crossed the border so far this year already exceeds the entire total from 2015. They are being released by the tens of thousands into our communities with no regard for the impact on public safety or resources.

One such border-crosser was released and made his way to Nebraska. There, he ended the life of an innocent young girl named Sarah Root. She was 21 years-old, and was killed the day after graduating from college with a 4.0 Grade Point Average. Her killer was then released a second time, and he is now a fugitive from the law.

Ive met Sarahs beautiful family. But to this Administration, their amazing daughter was just one more American life that wasnt worth protecting. One more child to sacrifice on the altar of open borders. What about our economy?

Again, I will tell you the plain facts that have been edited out of your nightly news and your morning newspaper: Nearly Four in 10 African-American children are living in poverty, while 58% of African American youth are not employed. 2 million more Latinos are in poverty today than when the President took his oath of office less than eight years ago. Another 14 million people have left the workforce entirely.

Household incomes are down more than $4,000 since the year 2000. Our manufacturing trade deficit has reached an all-time high nearly $800 billion in a single year. The budget is no better.

President Obama has doubled our national debt to more than $19 trillion, and growing. Yet, what do we have to show for it? Our roads and bridges are falling apart, our airports are in Third World condition, and forty-three million Americans are on food stamps.

Now let us consider the state of affairs abroad.

Not only have our citizens endured domestic disaster, but they have lived through one international humiliation after another. We all remember the images of our sailors being forced to their knees by their Iranian captors at gunpoint.

This was just prior to the signing of the Iran deal, which gave back to Iran $150 billion and gave us nothing it will go down in history as one of the worst deals ever made. Another humiliation came when president Obama drew a red line in Syria and the whole world knew it meant nothing.

In Libya, our consulate the symbol of American prestige around the globe was brought down in flames. America is far less safe and the world is far less stable than when Obama made the decision to put Hillary Clinton in charge of Americas foreign policy.

I am certain it is a decision he truly regrets. Her bad instincts and her bad judgment something pointed out by Bernie Sanders are what caused the disasters unfolding today. Lets review the record. In 2009, pre-Hillary, ISIS was not even on the map.

Libya was cooperating. Egypt was peaceful. Iraq was seeing a reduction in violence. Iran was being choked by sanctions. Syria was under control. After four years of Hillary Clinton, what do we have? ISIS has spread across the region, and the world. Libya is in ruins, and our Ambassador and his staff were left helpless to die at the hands of savage killers. Egypt was turned over to the radical Muslim brotherhood, forcing the military to retake control. Iraq is in chaos.

Iran is on the path to nuclear weapons. Syria is engulfed in a civil war and a refugee crisis that now threatens the West. After fifteen years of wars in the Middle East, after trillions of dollars spent and thousands of lives lost, the situation is worse than it has ever been before.

This is the legacy of Hillary Clinton: death, destruction and weakness.

But Hillary Clintons legacy does not have to be Americas legacy. The problems we face now poverty and violence at home, war and destruction abroad will last only as long as we continue relying on the same politicians who created them. A change in leadership is required to change these outcomes. Tonight, I will share with you my plan of action for America.

The most important difference between our plan and that of our opponents, is that our plan will put America First. Americanism, not globalism, will be our credo. As long as we are led by politicians who will not put America First, then we can be assured that other nations will not treat America with respect. This will all change in 2017.

The American People will come first once again. My plan will begin with safety at home which means safe neighborhoods, secure borders, and protection from terrorism. There can be no prosperity without law and order. On the economy, I will outline reforms to add millions of new jobs and trillions in new wealth that can be used to rebuild America.

A number of these reforms that I will outline tonight will be opposed by some of our nations most powerful special interests. That is because these interests have rigged our political and economic system for their exclusive benefit.

Big business, elite media and major donors are lining up behind the campaign of my opponent because they know she will keep our rigged system in place. They are throwing money at her because they have total control over everything she does. She is their puppet, and they pull the strings.

That is why Hillary Clintons message is that things will never change. My message is that things have to change and they have to change right now. Every day I wake up determined to deliver for the people I have met all across this nation that have been neglected, ignored, and abandoned.

I have visited the laid-off factory workers, and the communities crushed by our horrible and unfair trade deals. These are the forgotten men and women of our country. People who work hard but no longer have a voice.

I AM YOUR VOICE.

I have embraced crying mothers who have lost their children because our politicians put their personal agendas before the national good. I have no patience for injustice, no tolerance for government incompetence, no sympathy for leaders who fail their citizens.

When innocent people suffer, because our political system lacks the will, or the courage, or the basic decency to enforce our laws or worse still, has sold out to some corporate lobbyist for cash I am not able to look the other way.

And when a Secretary of State illegally stores her emails on a private server, deletes 33,000 of them so the authorities cant see her crime, puts our country at risk, lies about it in every different form and faces no consequence I know that corruption has reached a level like never before.

When the FBI Director says that the Secretary of State was extremely careless and negligent, in handling our classified secrets, I also know that these terms are minor compared to what she actually did. They were just used to save her from facing justice for her terrible crimes.

In fact, her single greatest accomplishment may be committing such an egregious crime and getting away with it especially when others have paid so dearly. When that same Secretary of State rakes in millions of dollars trading access and favors to special interests and foreign powers I know the time for action has come.

I have joined the political arena so that the powerful can no longer beat up on people that cannot defend themselves. Nobody knows the system better than me, which is why I alone can fix it. I have seen firsthand how the system is rigged against our citizens, just like it was rigged against Bernie Sanders he never had a chance.

But his supporters will join our movement, because we will fix his biggest issue: trade. Millions of Democrats will join our movement because we are going to fix the system so it works for all Americans. In this cause, I am proud to have at my side the next Vice President of the United States: Governor Mike Pence of Indiana.

We will bring the same economic success to America that Mike brought to Indiana. He is a man of character and accomplishment. He is the right man for the job. The first task for our new Administration will be to liberate our citizens from the crime and terrorism and lawlessness that threatens their communities.

America was shocked to its core when our police officers in Dallas were brutally executed. In the days after Dallas, we have seen continued threats and violence against our law enforcement officials. Law officers have been shot or killed in recent days in Georgia, Missouri, Wisconsin, Kansas, Michigan and Tennessee.

On Sunday, more police were gunned down in Baton Rouge, Louisiana. Three were killed, and four were badly injured. An attack on law enforcement is an attack on all Americans. I have a message to every last person threatening the peace on our streets and the safety of our police: when I take the oath of office next year, I will restore law and order our country.

I will work with, and appoint, the best prosecutors and law enforcement officials in the country to get the job done. In this race for the White House, I am the Law And Order candidate. The irresponsible rhetoric of our President, who has used the pulpit of the presidency to divide us by race and color, has made America a more dangerous environment for everyone.

This Administration has failed Americas inner cities. Its failed them on education. Its failed them on jobs. Its failed them on crime. Its failed them at every level.

When I am President, I will work to ensure that all of our kids are treated equally, and protected equally.

Every action I take, I will ask myself: does this make life better for young Americans in Baltimore, Chicago, Detroit, Ferguson who have as much of a right to live out their dreams as any other child America?

To make life safe in America, we must also address the growing threats we face from outside America: we are going to defeat the barbarians of ISIS. Once again, France is the victim of brutal Islamic terrorism.

Men, women and children viciously mowed down. Lives ruined. Families ripped apart. A nation in mourning.

The damage and devastation that can be inflicted by Islamic radicals has been over and over at the World Trade Center, at an office party in San Bernardino, at the Boston Marathon, and a military recruiting center in Chattanooga, Tennessee.

Only weeks ago, in Orlando, Florida, 49 wonderful Americans were savagely murdered by an Islamic terrorist. This time, the terrorist targeted our LGBT community. As your President, I will do everything in my power to protect our LGBT citizens from the violence and oppression of a hateful foreign ideology. To protect us from terrorism, we need to focus on three things.

We must have the best intelligence gathering operation in the world. We must abandon the failed policy of nation building and regime change that Hillary Clinton pushed in Iraq, Libya, Egypt and Syria. Instead, we must work with all of our allies who share our goal of destroying ISIS and stamping out Islamic terror.

This includes working with our greatest ally in the region, the State of Israel. Lastly, we must immediately suspend immigration from any nation that has been compromised by terrorism until such time as proven vetting mechanisms have been put in place.

My opponent has called for a radical 550% increase in Syrian refugees on top of existing massive refugee flows coming into our country under President Obama. She proposes this despite the fact that theres no way to screen these refugees in order to find out who they are or where they come from. I only want to admit individuals into our country who will support our values and love our people.

Anyone who endorses violence, hatred or oppression is not welcome in our country and never will be.

Decades of record immigration have produced lower wages and higher unemployment for our citizens, especially for African-American and Latino workers. We are going to have an immigration system that works, but one that works for the American people.

On Monday, we heard from three parents whose children were killed by illegal immigrants Mary Ann Mendoza, Sabine Durden, and Jamiel Shaw. They are just three brave representatives of many thousands. Of all my travels in this country, nothing has affected me more deeply than the time I have spent with the mothers and fathers who have lost their children to violence spilling across our border.

These families have no special interests to represent them. There are no demonstrators to protest on their behalf. My opponent will never meet with them, or share in their pain. Instead, my opponent wants Sanctuary Cities. But where was sanctuary for Kate Steinle? Where was Sanctuary for the children of Mary Ann, Sabine and Jamiel? Where was sanctuary for all the other Americans who have been so brutally murdered, and who have suffered so horribly?

These wounded American families have been alone. But they are alone no longer. Tonight, this candidate and this whole nation stand in their corner to support them, to send them our love, and to pledge in their honor that we will save countless more families from suffering the same awful fate.

We are going to build a great border wall to stop illegal immigration, to stop the gangs and the violence, and to stop the drugs from pouring into our communities. I have been honored to receive the endorsement of Americas Border Patrol Agents, and will work directly with them to protect the integrity of our lawful immigration system.

By ending catch-and-release on the border, we will stop the cycle of human smuggling and violence. Illegal border crossings will go down. Peace will be restored. By enforcing the rules for the millions who overstay their visas, our laws will finally receive the respect they deserve.

Tonight, I want every American whose demands for immigration security have been denied and every politician who has denied them to listen very closely to the words I am about to say.

On January 21st of 2017, the day after I take the oath of office, Americans will finally wake up in a country where the laws of the United States are enforced. We are going to be considerate and compassionate to everyone.

But my greatest compassion will be for our own struggling citizens. My plan is the exact opposite of the radical and dangerous immigration policy of Hillary Clinton. Americans want relief from uncontrolled immigration. Communities want relief.

Yet Hillary Clinton is proposing mass amnesty, mass immigration, and mass lawlessness. Her plan will overwhelm your schools and hospitals, further reduce your jobs and wages, and make it harder for recent immigrants to escape from poverty.

I have a different vision for our workers. It begins with a new, fair trade policy that protects our jobs and stands up to countries that cheat. Its been a signature message of my campaign from day one, and it will be a signature feature of my presidency from the moment I take the oath of office.

I have made billions of dollars in business making deals now Im going to make our country rich again. I am going to turn our bad trade agreements into great ones. America has lost nearly-one third of its manufacturing jobs since 1997, following the enactment of disastrous trade deals supported by Bill and Hillary Clinton.

Remember, it was Bill Clinton who signed NAFTA, one of the worst economic deals ever made by our country.

Never again.

I am going to bring our jobs back to Ohio and to America and I am not going to let companies move to other countries, firing their employees along the way, without consequences.

My opponent, on the other hand, has supported virtually every trade agreement that has been destroying our middle class. She supported NAFTA, and she supported Chinas entrance into the World Trade Organization another one of her husbands colossal mistakes.

She supported the job killing trade deal with South Korea. She has supported the Trans-Pacific Partnership. The TPP will not only destroy our manufacturing, but it will make America subject to the rulings of foreign governments. I pledge to never sign any trade agreement that hurts our workers, or that diminishes our freedom and independence. Instead, I will make individual deals with individual countries.

No longer will we enter into these massive deals, with many countries, that are thousands of pages long and which no one from our country even reads or understands. We are going to enforce all trade violations, including through the use of taxes and tariffs, against any country that cheats.

This includes stopping Chinas outrageous theft of intellectual property, along with their illegal product dumping, and their devastating currency manipulation. Our horrible trade agreements with China and many others, will be totally renegotiated. That includes renegotiating NAFTA to get a much better deal for America and well walk away if we dont get the deal that we want. We are going to start building and making things again.

Next comes the reform of our tax laws, regulations and energy rules. While Hillary Clinton plans a massive tax increase, I have proposed the largest tax reduction of any candidate who has declared for the presidential race this year Democrat or Republican. Middle-income Americans will experience profound relief, and taxes will be simplified for everyone.

America is one of the highest-taxed nations in the world. Reducing taxes will cause new companies and new jobs to come roaring back into our country. Then we are going to deal with the issue of regulation, one of the greatest job-killers of them all. Excessive regulation is costing our country as much as $2 trillion a year, and we will end it. We are going to lift the restrictions on the production of American energy. This will produce more than $20 trillion in job creating economic activity over the next four decades.

My opponent, on the other hand, wants to put the great miners and steel workers of our country out of work that will never happen when I am President. With these new economic policies, trillions of dollars will start flowing into our country.

This new wealth will improve the quality of life for all Americans We will build the roads, highways, bridges, tunnels, airports, and the railways of tomorrow. This, in turn, will create millions more jobs. We will rescue kids from failing schools by helping their parents send them to a safe school of their choice.

My opponent would rather protect education bureaucrats than serve American children. We will repeal and replace disastrous Obamacare. You will be able to choose your own doctor again. And we will fix TSA at the airports! We will completely rebuild our depleted military, and the countries that we protect, at a massive loss, will be asked to pay their fair share.

We will take care of our great Veterans like they have never been taken care of before. My opponent dismissed the VA scandal as being not widespread one more sign of how out of touch she really is. We are going to ask every Department Head in government to provide a list of wasteful spending projects that we can eliminate in my first 100 days. The politicians have talked about it, Im going to do it. We are also going to appoint justices to the United States Supreme Court who will uphold our laws and our Constitution.

The replacement for Justice Scalia will be a person of similar views and principles. This will be one of the most important issues decided by this election. My opponent wants to essentially abolish the 2nd amendment. I, on the other hand, received the early and strong endorsement of the National Rifle Association and will protect the right of all Americans to keep their families safe.

At this moment, I would like to thank the evangelical community who have been so good to me and so supportive. You have so much to contribute to our politics, yet our laws prevent you from speaking your minds from your own pulpits.

An amendment, pushed by Lyndon Johnson, many years ago, threatens religious institutions with a loss of their tax-exempt status if they openly advocate their political views.

I am going to work very hard to repeal that language and protect free speech for all Americans. We can accomplish these great things, and so much else all we need to do is start believing in ourselves and in our country again. It is time to show the whole world that America Is Back bigger, and better and stronger than ever before.

In this journey, I'm so lucky to have at my side my wife Melania and my wonderful children, Don, Ivanka, Eric, Tiffany, and Barron: you will always be my greatest source of pride and joy. My Dad, Fred Trump, was the smartest and hardest working man I ever knew. I wonder sometimes what hed say if he were here to see this tonight.

Its because of him that I learned, from my youngest age, to respect the dignity of work and the dignity of working people. He was a guy most comfortable in the company of bricklayers, carpenters, and electricians and I have a lot of that in me also. Then theres my mother, Mary. She was strong, but also warm and fair-minded. She was a truly great mother. She was also one of the most honest and charitable people I have ever known, and a great judge of character.

To my sisters Mary Anne and Elizabeth, my brother Robert and my late brother Fred, I will always give you my love you are most special to me. I have loved my life in business.

But now, my sole and exclusive mission is to go to work for our country to go to work for all of you. Its time to deliver a victory for the American people. But to do that, we must break free from the petty politics of the past.

America is a nation of believers, dreamers, and strivers that is being led by a group of censors, critics, and cynics.

Remember: all of the people telling you that you cant have the country you want, are the same people telling you that I wouldnt be standing here tonight. No longer can we rely on those elites in media, and politics, who will say anything to keep a rigged system in place.

Instead, we must choose to Believe In America. History is watching us now.

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Gene therapy – Wikipedia

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Gene therapy is the therapeutic delivery of nucleic acid polymers into a patient's cells as a drug to treat disease.[1] The first attempt at modifying human DNA was performed in 1980 by Martin Cline, but the first successful and approved[by whom?] nuclear gene transfer in humans was performed in May 1989.[2] The first therapeutic use of gene transfer as well as the first direct insertion of human DNA into the nuclear genome was performed by French Anderson in a trial starting in September 1990.

Between 1989 and February 2016, over 2,300 clinical trials had been conducted, more than half of them in phase I.[3]

It should be noted that not all medical procedures that introduce alterations to a patient's genetic makeup can be considered gene therapy. Bone marrow transplantation and organ transplants in general have been found to introduce foreign DNA into patients.[4] Gene therapy is defined by the precision of the procedure and the intention of direct therapeutic effects.

Gene therapy was conceptualized in 1972, by authors who urged caution before commencing human gene therapy studies.

The first attempt, an unsuccessful one, at gene therapy (as well as the first case of medical transfer of foreign genes into humans not counting organ transplantation) was performed by Martin Cline on 10 July 1980.[5][6] Cline claimed that one of the genes in his patients was active six months later, though he never published this data or had it verified[7] and even if he is correct, it's unlikely it produced any significant beneficial effects treating beta-thalassemia.[8]

After extensive research on animals throughout the 1980s and a 1989 bacterial gene tagging trial on humans, the first gene therapy widely accepted as a success was demonstrated in a trial that started on September 14, 1990, when Ashi DeSilva was treated for ADA-SCID.[9]

The first somatic treatment that produced a permanent genetic change was performed in 1993.[10]

This procedure was referred to sensationally and somewhat inaccurately in the media as a "three parent baby", though mtDNA is not the primary human genome and has little effect on an organism's individual characteristics beyond powering their cells.

Gene therapy is a way to fix a genetic problem at its source. The polymers are either translated into proteins, interfere with target gene expression, or possibly correct genetic mutations.

The most common form uses DNA that encodes a functional, therapeutic gene to replace a mutated gene. The polymer molecule is packaged within a "vector", which carries the molecule inside cells.

Early clinical failures led to dismissals of gene therapy. Clinical successes since 2006 regained researchers' attention, although as of 2014, it was still largely an experimental technique.[11] These include treatment of retinal diseases Leber's congenital amaurosis[12][13][14][15] and choroideremia,[16]X-linked SCID,[17] ADA-SCID,[18][19]adrenoleukodystrophy,[20]chronic lymphocytic leukemia (CLL),[21]acute lymphocytic leukemia (ALL),[22]multiple myeloma,[23]haemophilia[19] and Parkinson's disease.[24] Between 2013 and April 2014, US companies invested over $600 million in the field.[25]

The first commercial gene therapy, Gendicine, was approved in China in 2003 for the treatment of certain cancers.[26] In 2011 Neovasculgen was registered in Russia as the first-in-class gene-therapy drug for treatment of peripheral artery disease, including critical limb ischemia.[27] In 2012 Glybera, a treatment for a rare inherited disorder, became the first treatment to be approved for clinical use in either Europe or the United States after its endorsement by the European Commission.[11][28]

Following early advances in genetic engineering of bacteria, cells, and small animals, scientists started considering how to apply it to medicine. Two main approaches were considered replacing or disrupting defective genes.[29] Scientists focused on diseases caused by single-gene defects, such as cystic fibrosis, haemophilia, muscular dystrophy, thalassemia and sickle cell anemia. Glybera treats one such disease, caused by a defect in lipoprotein lipase.[28]

DNA must be administered, reach the damaged cells, enter the cell and express/disrupt a protein.[30] Multiple delivery techniques have been explored. The initial approach incorporated DNA into an engineered virus to deliver the DNA into a chromosome.[31][32]Naked DNA approaches have also been explored, especially in the context of vaccine development.[33]

Generally, efforts focused on administering a gene that causes a needed protein to be expressed. More recently, increased understanding of nuclease function has led to more direct DNA editing, using techniques such as zinc finger nucleases and CRISPR. The vector incorporates genes into chromosomes. The expressed nucleases then knock out and replace genes in the chromosome. As of 2014 these approaches involve removing cells from patients, editing a chromosome and returning the transformed cells to patients.[34]

Gene editing is a potential approach to alter the human genome to treat genetic diseases,[35] viral diseases,[36] and cancer.[37] As of 2016 these approaches were still years from being medicine.[38][39]

Gene therapy may be classified into two types:

In somatic cell gene therapy (SCGT), the therapeutic genes are transferred into any cell other than a gamete, germ cell, gametocyte or undifferentiated stem cell. Any such modifications affect the individual patient only, and are not inherited by offspring. Somatic gene therapy represents mainstream basic and clinical research, in which therapeutic DNA (either integrated in the genome or as an external episome or plasmid) is used to treat disease.

Over 600 clinical trials utilizing SCGT are underway in the US. Most focus on severe genetic disorders, including immunodeficiencies, haemophilia, thalassaemia and cystic fibrosis. Such single gene disorders are good candidates for somatic cell therapy. The complete correction of a genetic disorder or the replacement of multiple genes is not yet possible. Only a few of the trials are in the advanced stages.[40]

In germline gene therapy (GGT), germ cells (sperm or eggs) are modified by the introduction of functional genes into their genomes. Modifying a germ cell causes all the organism's cells to contain the modified gene. The change is therefore heritable and passed on to later generations. Australia, Canada, Germany, Israel, Switzerland and the Netherlands[41] prohibit GGT for application in human beings, for technical and ethical reasons, including insufficient knowledge about possible risks to future generations[41] and higher risks versus SCGT.[42] The US has no federal controls specifically addressing human genetic modification (beyond FDA regulations for therapies in general).[41][43][44][45]

The delivery of DNA into cells can be accomplished by multiple methods. The two major classes are recombinant viruses (sometimes called biological nanoparticles or viral vectors) and naked DNA or DNA complexes (non-viral methods).

In order to replicate, viruses introduce their genetic material into the host cell, tricking the host's cellular machinery into using it as blueprints for viral proteins. Scientists exploit this by substituting a virus's genetic material with therapeutic DNA. (The term 'DNA' may be an oversimplification, as some viruses contain RNA, and gene therapy could take this form as well.) A number of viruses have been used for human gene therapy, including retrovirus, adenovirus, lentivirus, herpes simplex, vaccinia and adeno-associated virus.[3] Like the genetic material (DNA or RNA) in viruses, therapeutic DNA can be designed to simply serve as a temporary blueprint that is degraded naturally or (at least theoretically) to enter the host's genome, becoming a permanent part of the host's DNA in infected cells.

Non-viral methods present certain advantages over viral methods, such as large scale production and low host immunogenicity. However, non-viral methods initially produced lower levels of transfection and gene expression, and thus lower therapeutic efficacy. Later technology remedied this deficiency[citation needed].

Methods for non-viral gene therapy include the injection of naked DNA, electroporation, the gene gun, sonoporation, magnetofection, the use of oligonucleotides, lipoplexes, dendrimers, and inorganic nanoparticles.

Some of the unsolved problems include:

Three patients' deaths have been reported in gene therapy trials, putting the field under close scrutiny. The first was that of Jesse Gelsinger in 1999.[52] One X-SCID patient died of leukemia in 2003.[9] In 2007, a rheumatoid arthritis patient died from an infection; the subsequent investigation concluded that the death was not related to gene therapy.[53]

In 1972 Friedmann and Roblin authored a paper in Science titled "Gene therapy for human genetic disease?"[54] Rogers (1970) was cited for proposing that exogenous good DNA be used to replace the defective DNA in those who suffer from genetic defects.[55]

In 1984 a retrovirus vector system was designed that could efficiently insert foreign genes into mammalian chromosomes.[56]

The first approved gene therapy clinical research in the US took place on 14 September 1990, at the National Institutes of Health (NIH), under the direction of William French Anderson.[57] Four-year-old Ashanti DeSilva received treatment for a genetic defect that left her with ADA-SCID, a severe immune system deficiency. The effects were temporary, but successful.[58]

Cancer gene therapy was introduced in 1992/93 (Trojan et al. 1993).[59] The treatment of glioblastoma multiforme, the malignant brain tumor whose outcome is always fatal, was done using a vector expressing antisense IGF-I RNA (clinical trial approved by NIH n 1602, and FDA in 1994). This therapy also represents the beginning of cancer immunogene therapy, a treatment which proves to be effective due to the anti-tumor mechanism of IGF-I antisense, which is related to strong immune and apoptotic phenomena.

In 1992 Claudio Bordignon, working at the Vita-Salute San Raffaele University, performed the first gene therapy procedure using hematopoietic stem cells as vectors to deliver genes intended to correct hereditary diseases.[60] In 2002 this work led to the publication of the first successful gene therapy treatment for adenosine deaminase-deficiency (SCID). The success of a multi-center trial for treating children with SCID (severe combined immune deficiency or "bubble boy" disease) from 2000 and 2002, was questioned when two of the ten children treated at the trial's Paris center developed a leukemia-like condition. Clinical trials were halted temporarily in 2002, but resumed after regulatory review of the protocol in the US, the United Kingdom, France, Italy and Germany.[61]

In 1993 Andrew Gobea was born with SCID following prenatal genetic screening. Blood was removed from his mother's placenta and umbilical cord immediately after birth, to acquire stem cells. The allele that codes for adenosine deaminase (ADA) was obtained and inserted into a retrovirus. Retroviruses and stem cells were mixed, after which the viruses inserted the gene into the stem cell chromosomes. Stem cells containing the working ADA gene were injected into Andrew's blood. Injections of the ADA enzyme were also given weekly. For four years T cells (white blood cells), produced by stem cells, made ADA enzymes using the ADA gene. After four years more treatment was needed.[citation needed]

Jesse Gelsinger's death in 1999 impeded gene therapy research in the US.[62][63] As a result, the FDA suspended several clinical trials pending the reevaluation of ethical and procedural practices.[64]

The modified cancer gene therapy strategy of antisense IGF-I RNA (NIH n 1602)[65] using antisense / triple helix anti IGF-I approach was registered in 2002 by Wiley gene therapy clinical trial - n 635 and 636. The approach has shown promising results in the treatment of six different malignant tumors: glioblastoma, cancers of liver, colon, prostate, uterus and ovary (Collaborative NATO Science Programme on Gene Therapy USA, France, Poland n LST 980517 conducted by J. Trojan) (Trojan et al., 2012). This antigene antisense/triple helix therapy has proven to be efficient, due to the mechanism stopping simultaneously IGF-I expression on translation and transcription levels, strengthening anti-tumor immune and apoptotic phenomena.

Sickle-cell disease can be treated in mice.[66] The mice which have essentially the same defect that causes human cases used a viral vector to induce production of fetal hemoglobin (HbF), which normally ceases to be produced shortly after birth. In humans, the use of hydroxyurea to stimulate the production of HbF temporarily alleviates sickle cell symptoms. The researchers demonstrated this treatment to be a more permanent means to increase therapeutic HbF production.[67]

A new gene therapy approach repaired errors in messenger RNA derived from defective genes. This technique has the potential to treat thalassaemia, cystic fibrosis and some cancers.[68]

Researchers created liposomes 25 nanometers across that can carry therapeutic DNA through pores in the nuclear membrane.[69]

In 2003 a research team inserted genes into the brain for the first time. They used liposomes coated in a polymer called polyethylene glycol, which, unlike viral vectors, are small enough to cross the bloodbrain barrier.[70]

Short pieces of double-stranded RNA (short, interfering RNAs or siRNAs) are used by cells to degrade RNA of a particular sequence. If a siRNA is designed to match the RNA copied from a faulty gene, then the abnormal protein product of that gene will not be produced.[71]

Gendicine is a cancer gene therapy that delivers the tumor suppressor gene p53 using an engineered adenovirus. In 2003, it was approved in China for the treatment of head and neck squamous cell carcinoma.[26]

In March researchers announced the successful use of gene therapy to treat two adult patients for X-linked chronic granulomatous disease, a disease which affects myeloid cells and damages the immune system. The study is the first to show that gene therapy can treat the myeloid system.[72]

In May a team reported a way to prevent the immune system from rejecting a newly delivered gene.[73] Similar to organ transplantation, gene therapy has been plagued by this problem. The immune system normally recognizes the new gene as foreign and rejects the cells carrying it. The research utilized a newly uncovered network of genes regulated by molecules known as microRNAs. This natural function selectively obscured their therapeutic gene in immune system cells and protected it from discovery. Mice infected with the gene containing an immune-cell microRNA target sequence did not reject the gene.

In August scientists successfully treated metastatic melanoma in two patients using killer T cells genetically retargeted to attack the cancer cells.[74]

In November researchers reported on the use of VRX496, a gene-based immunotherapy for the treatment of HIV that uses a lentiviral vector to deliver an antisense gene against the HIV envelope. In a phase I clinical trial, five subjects with chronic HIV infection who had failed to respond to at least two antiretroviral regimens were treated. A single intravenous infusion of autologous CD4 T cells genetically modified with VRX496 was well tolerated. All patients had stable or decreased viral load; four of the five patients had stable or increased CD4 T cell counts. All five patients had stable or increased immune response to HIV antigens and other pathogens. This was the first evaluation of a lentiviral vector administered in a US human clinical trial.[75][76]

In May researchers announced the first gene therapy trial for inherited retinal disease. The first operation was carried out on a 23-year-old British male, Robert Johnson, in early 2007.[77]

Leber's congenital amaurosis is an inherited blinding disease caused by mutations in the RPE65 gene. The results of a small clinical trial in children were published in April.[12] Delivery of recombinant adeno-associated virus (AAV) carrying RPE65 yielded positive results. In May two more groups reported positive results in independent clinical trials using gene therapy to treat the condition. In all three clinical trials, patients recovered functional vision without apparent side-effects.[12][13][14][15]

In September researchers were able to give trichromatic vision to squirrel monkeys.[78] In November 2009, researchers halted a fatal genetic disorder called adrenoleukodystrophy in two children using a lentivirus vector to deliver a functioning version of ABCD1, the gene that is mutated in the disorder.[79]

An April paper reported that gene therapy addressed achromatopsia (color blindness) in dogs by targeting cone photoreceptors. Cone function and day vision were restored for at least 33 months in two young specimens. The therapy was less efficient for older dogs.[80]

In September it was announced that an 18-year-old male patient in France with beta-thalassemia major had been successfully treated.[81] Beta-thalassemia major is an inherited blood disease in which beta haemoglobin is missing and patients are dependent on regular lifelong blood transfusions.[82] The technique used a lentiviral vector to transduce the human -globin gene into purified blood and marrow cells obtained from the patient in June 2007.[83] The patient's haemoglobin levels were stable at 9 to 10 g/dL. About a third of the hemoglobin contained the form introduced by the viral vector and blood transfusions were not needed.[83][84] Further clinical trials were planned.[85]Bone marrow transplants are the only cure for thalassemia, but 75% of patients do not find a matching donor.[84]

Cancer immunogene therapy using modified anti gene, antisense / triple helix approach was introduced in South America in 2010/11 in La Sabana University, Bogota (Ethical Committee 14.12.2010, no P-004-10). Considering the ethical aspect of gene diagnostic and gene therapy targeting IGF-I, the IGF-I expressing tumors i.e. lung and epidermis cancers, were treated (Trojan et al. 2016). [86][87]

In 2007 and 2008, a man was cured of HIV by repeated Hematopoietic stem cell transplantation (see also Allogeneic stem cell transplantation, Allogeneic bone marrow transplantation, Allotransplantation) with double-delta-32 mutation which disables the CCR5 receptor. This cure was accepted by the medical community in 2011.[88] It required complete ablation of existing bone marrow, which is very debilitating.

In August two of three subjects of a pilot study were confirmed to have been cured from chronic lymphocytic leukemia (CLL). The therapy used genetically modified T cells to attack cells that expressed the CD19 protein to fight the disease.[21] In 2013, the researchers announced that 26 of 59 patients had achieved complete remission and the original patient had remained tumor-free.[89]

Human HGF plasmid DNA therapy of cardiomyocytes is being examined as a potential treatment for coronary artery disease as well as treatment for the damage that occurs to the heart after myocardial infarction.[90][91]

In 2011 Neovasculgen was registered in Russia as the first-in-class gene-therapy drug for treatment of peripheral artery disease, including critical limb ischemia; it delivers the gene encoding for VEGF.[92][27] Neovasculogen is a plasmid encoding the CMV promoter and the 165 amino acid form of VEGF.[93][94]

The FDA approved Phase 1 clinical trials on thalassemia major patients in the US for 10 participants in July.[95] The study was expected to continue until 2015.[96]

In July 2012, the European Medicines Agency recommended approval of a gene therapy treatment for the first time in either Europe or the United States. The treatment used Alipogene tiparvovec (Glybera) to compensate for lipoprotein lipase deficiency, which can cause severe pancreatitis.[97] The recommendation was endorsed by the European Commission in November 2012[11][28][98][99] and commercial rollout began in late 2014.[100]

In December 2012, it was reported that 10 of 13 patients with multiple myeloma were in remission "or very close to it" three months after being injected with a treatment involving genetically engineered T cells to target proteins NY-ESO-1 and LAGE-1, which exist only on cancerous myeloma cells.[23]

In March researchers reported that three of five subjects who had acute lymphocytic leukemia (ALL) had been in remission for five months to two years after being treated with genetically modified T cells which attacked cells with CD19 genes on their surface, i.e. all B-cells, cancerous or not. The researchers believed that the patients' immune systems would make normal T-cells and B-cells after a couple of months. They were also given bone marrow. One patient relapsed and died and one died of a blood clot unrelated to the disease.[22]

Following encouraging Phase 1 trials, in April, researchers announced they were starting Phase 2 clinical trials (called CUPID2 and SERCA-LVAD) on 250 patients[101] at several hospitals to combat heart disease. The therapy was designed to increase the levels of SERCA2, a protein in heart muscles, improving muscle function.[102] The FDA granted this a Breakthrough Therapy Designation to accelerate the trial and approval process.[103] In 2016 it was reported that no improvement was found from the CUPID 2 trial.[104]

In July researchers reported promising results for six children with two severe hereditary diseases had been treated with a partially deactivated lentivirus to replace a faulty gene and after 732 months. Three of the children had metachromatic leukodystrophy, which causes children to lose cognitive and motor skills.[105] The other children had Wiskott-Aldrich syndrome, which leaves them to open to infection, autoimmune diseases and cancer.[106] Follow up trials with gene therapy on another six children with Wiskott-Aldrich syndrome were also reported as promising.[107][108]

In October researchers reported that two children born with adenosine deaminase severe combined immunodeficiency disease (ADA-SCID) had been treated with genetically engineered stem cells 18 months previously and that their immune systems were showing signs of full recovery. Another three children were making progress.[19] In 2014 a further 18 children with ADA-SCID were cured by gene therapy.[109] ADA-SCID children have no functioning immune system and are sometimes known as "bubble children."[19]

Also in October researchers reported that they had treated six haemophilia sufferers in early 2011 using an adeno-associated virus. Over two years later all six were producing clotting factor.[19][110]

Data from three trials on Topical cystic fibrosis transmembrane conductance regulator gene therapy were reported to not support its clinical use as a mist inhaled into the lungs to treat cystic fibrosis patients with lung infections.[111]

In January researchers reported that six choroideremia patients had been treated with adeno-associated virus with a copy of REP1. Over a six-month to two-year period all had improved their sight.[112][113] By 2016, 32 patients had been treated with positive results and researchers were hopeful the treatment would be long-lasting.[16] Choroideremia is an inherited genetic eye disease with no approved treatment, leading to loss of sight.

In March researchers reported that 12 HIV patients had been treated since 2009 in a trial with a genetically engineered virus with a rare mutation (CCR5 deficiency) known to protect against HIV with promising results.[114][115]

Clinical trials of gene therapy for sickle cell disease were started in 2014[116][117] although one review failed to find any such trials.[118]

In February LentiGlobin BB305, a gene therapy treatment undergoing clinical trials for treatment of beta thalassemia gained FDA "breakthrough" status after several patients were able to forgo the frequent blood transfusions usually required to treat the disease.[119]

In March researchers delivered a recombinant gene encoding a broadly neutralizing antibody into monkeys infected with simian HIV; the monkeys' cells produced the antibody, which cleared them of HIV. The technique is named immunoprophylaxis by gene transfer (IGT). Animal tests for antibodies to ebola, malaria, influenza and hepatitis are underway.[120][121]

In March scientists, including an inventor of CRISPR, urged a worldwide moratorium on germline gene therapy, writing scientists should avoid even attempting, in lax jurisdictions, germline genome modification for clinical application in humans until the full implications are discussed among scientific and governmental organizations.[122][123][124][125]

Also in 2015 Glybera was approved for the German market.[126]

In October, researchers announced that they had treated a baby girl, Layla Richards, with an experimental treatment using donor T-cells genetically engineered to attack cancer cells. Two months after the treatment she was still free of her cancer (a highly aggressive form of acute lymphoblastic leukaemia [ALL]). Children with highly aggressive ALL normally have a very poor prognosis and Layla's disease had been regarded as terminal before the treatment.[127]

In December, scientists of major world academies called for a moratorium on inheritable human genome edits, including those related to CRISPR-Cas9 technologies[128] but that basic research including embryo gene editing should continue.[129]

In April the Committee for Medicinal Products for Human Use of the European Medicines Agency endorsed a gene therapy treatment called Strimvelis and recommended it be approved.[130][131] This treats children born with ADA-SCID and who have no functioning immune system - sometimes called the "bubble baby" disease. This would be the second gene therapy treatment to be approved in Europe.[132]

Speculated uses for gene therapy include:

Gene Therapy techniques have the potential to provide alternative treatments for those with infertility. Recently, successful experimentation on mice has proven that fertility can be restored by using the gene therapy method, CRISPR.[133] Spermatogenical stem cells from another organism were transplanted into the testes of an infertile male mouse. The stem cells re-established spermatogenesis and fertility.[134]

Athletes might adopt gene therapy technologies to improve their performance.[135]Gene doping is not known to occur, but multiple gene therapies may have such effects. Kayser et al. argue that gene doping could level the playing field if all athletes receive equal access. Critics claim that any therapeutic intervention for non-therapeutic/enhancement purposes compromises the ethical foundations of medicine and sports.[136]

Genetic engineering could be used to change physical appearance, metabolism, and even improve physical capabilities and mental faculties such as memory and intelligence. Ethical claims about germline engineering include beliefs that every fetus has a right to remain genetically unmodified, that parents hold the right to genetically modify their offspring, and that every child has the right to be born free of preventable diseases.[137][138][139] For adults, genetic engineering could be seen as another enhancement technique to add to diet, exercise, education, cosmetics and plastic surgery.[140][141] Another theorist claims that moral concerns limit but do not prohibit germline engineering.[142]

Possible regulatory schemes include a complete ban, provision to everyone, or professional self-regulation. The American Medical Associations Council on Ethical and Judicial Affairs stated that "genetic interventions to enhance traits should be considered permissible only in severely restricted situations: (1) clear and meaningful benefits to the fetus or child; (2) no trade-off with other characteristics or traits; and (3) equal access to the genetic technology, irrespective of income or other socioeconomic characteristics."[143]

As early in the history of biotechnology as 1990, there have been scientists opposed to attempts to modify the human germline using these new tools,[144] and such concerns have continued as technology progressed.[145] With the advent of new techniques like CRISPR, in March 2015 a group of scientists urged a worldwide moratorium on clinical use of gene editing technologies to edit the human genome in a way that can be inherited.[122][123][124][125] In April 2015, researchers sparked controversy when they reported results of basic research to edit the DNA of non-viable human embryos using CRISPR.[133][146]

Regulations covering genetic modification are part of general guidelines about human-involved biomedical research.

The Helsinki Declaration (Ethical Principles for Medical Research Involving Human Subjects) was amended by the World Medical Association's General Assembly in 2008. This document provides principles physicians and researchers must consider when involving humans as research subjects. The Statement on Gene Therapy Research initiated by the Human Genome Organization (HUGO) in 2001 provides a legal baseline for all countries. HUGOs document emphasizes human freedom and adherence to human rights, and offers recommendations for somatic gene therapy, including the importance of recognizing public concerns about such research.[147]

No federal legislation lays out protocols or restrictions about human genetic engineering. This subject is governed by overlapping regulations from local and federal agencies, including the Department of Health and Human Services, the FDA and NIH's Recombinant DNA Advisory Committee. Researchers seeking federal funds for an investigational new drug application, (commonly the case for somatic human genetic engineering), must obey international and federal guidelines for the protection of human subjects.[148]

NIH serves as the main gene therapy regulator for federally funded research. Privately funded research is advised to follow these regulations. NIH provides funding for research that develops or enhances genetic engineering techniques and to evaluate the ethics and quality in current research. The NIH maintains a mandatory registry of human genetic engineering research protocols that includes all federally funded projects.

An NIH advisory committee published a set of guidelines on gene manipulation.[149] The guidelines discuss lab safety as well as human test subjects and various experimental types that involve genetic changes. Several sections specifically pertain to human genetic engineering, including Section III-C-1. This section describes required review processes and other aspects when seeking approval to begin clinical research involving genetic transfer into a human patient.[150] The protocol for a gene therapy clinical trial must be approved by the NIH's Recombinant DNA Advisory Committee prior to any clinical trial beginning; this is different from any other kind of clinical trial.[149]

As with other kinds of drugs, the FDA regulates the quality and safety of gene therapy products and supervises how these products are used clinically. Therapeutic alteration of the human genome falls under the same regulatory requirements as any other medical treatment. Research involving human subjects, such as clinical trials, must be reviewed and approved by the FDA and an Institutional Review Board.[151][152]

Gene therapy is the basis for the plotline of the film I Am Legend[153] and the TV show Will Gene Therapy Change the Human Race?.[154]

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Gene therapy - Wikipedia

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NSA Can Access More Phone Data Than Ever – ABC News

Posted: at 7:35 am

One of the reforms designed to rein in the surveillance authorities of the National Security Agency has perhaps inadvertently solved a technical problem for the spy outfit and granted it potential access to much more data than before, a former top official told ABC News.

Before the signing of the USA Freedom Act in June 2015, one of the NSA's most controversial programs was the mass collection of telephonic metadata from millions of Americans the information about calls, including the telephone numbers involved, the time and the duration but not the calls' content under a broad interpretation of the Patriot Act's Section 215. From this large "haystack," as officials have called it, NSA analysts could get approval to run queries on specific numbers purportedly linked to international terrorism investigations.

The problem for the NSA was that the haystack was only about 30 percent as big as it should've been; the NSA database was missing a lot of data. As The Washington Post reported in 2014, the agency was not getting information from all wireless carriers and it also couldn't handle the deluge of data that was coming in.

On the technical side, Chris Inglis, who served as the NSA's deputy director until January 2014, recently told ABC News that when major telecommunications companies previously handed over customer records, the NSA "just didn't ingest all of it."

"[NSA officials] were trying to make sure they were doing it exactly right," he said, meaning making sure that the data was being pulled in according to existing privacy policies. The metadata also came in various forms from the different companies, so the NSA had to reformat much of it before loading it into a searchable database.

Both hurdles meant that the NSA couldn't keep up, and of all the metadata the agency wanted to be available for specific searches internally, only about a third of it actually was.

But then the USA Freedom Act was signed into law, and now Inglis said, all that is "somebody else's problem."

The USA Freedom Act ended the NSA's bulk collection of metadata but charged the telecommunications companies with keeping the data on hand. The NSA and other U.S. government agencies now must request information about specific phone numbers or other identifying elements from the telecommunications companies after going through the Foreign Intelligence Surveillance Act (FISA) court and arguing that there is a "reasonable, articulable suspicion" that the number is associated with international terrorism.

As a result, the NSA no longer has to worry about keeping up its own database and, according to Inglis, the percentage of available records has shot up from 30 percent to virtually 100. Rather than one internal, incomplete database, the NSA can now query any of several complete ones.

The new system "guarantees that the NSA can have access to all of it," Inglis said.

NSA general counsel Glenn Gerstell made a brief reference to the increased capacity in a post for the Lawfare blog in January after terrorist attacks at home and abroad.

"Largely overlooked in the debate that has ensued in the wake of recent attacks is the fact that under the new arrangement, our national security professionals will have access to a greater volume of call records subject to query in a way that is consistent with our regard for civil liberties," he wrote.

Mark Rumold, a senior staff attorney at the Electronic Frontier Foundation, told ABC News he doesn't have much of a problem with the NSA's wider access to telephone data, since now the agency has to go through a "legitimate" system with "procedural protections" before jumping into the databases.

"Their ability to obtain records has broadened, but by all accounts, they're collecting a far narrower pool of data than they were initially," he said, referring to returns on specific searches. "They can use a type of legal process with a broader spectrum of providers than earlier. To me, that isn't like a strike against it. That's almost something in favor of it, because we've gone through this public process, we've had this debate, and this is where we settled on the scope of the authority we were going to give them."

Rumold said he's still concerned about the NSA's ability to get information on phone numbers linked to a number in question up to two "hops" away but he said the USA Freedom Act "remains a step in the right direction."

The trade-off of the new system, according to Inglis, is in the efficiency of the searches. Whereas in the past the NSA could instantaneously run approved searches of its database, now the agency must approach each telecommunications company to ask about a number and then wait for a response.

In his January post Gerstell acknowledged concerns that the new approach could be "too cumbersome to be effective" and said the NSA will report to Congress on how the arrangement is working. A representative for the NSA declined to tell ABC News if any problems have been encountered so far, and Rumold noted there has been no public evidence of any issues.

Inglis said he isn't terribly concerned if the searches are a little slower. It's a small price to pay, he said, for what he called an "additional safeguard" that could increase the public's confidence in what the NSA is and how it operates.

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NSA Can Access More Phone Data Than Ever - ABC News

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Transhuman (album) – Wikipedia

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Transhuman is the fifth full-length album by the American technical thrash metal band Believer, released on April 11, 2011 on Metal Blade Records.

A concept album, the band stated that the lyrics deal with transhumanism, "The study of the ramifications, promises, and potential dangers of technologies that will enable us to overcome fundamental human limitations, and the related study of the ethical matters involved in developing and using such technologies." The band stated that the source of inspiration was Dr. Ginger Campbells Brain Science Podcast, which explores recent discoveries in neuroscience, as well as Dr. Thomas Metzingers scientific research and philosophical study of consciousness and the self.[10]

Musically, the band stated that they "focused more on the overall musicality which included more instrumental layers than we used before."[11] Sputnik Music noted that the band dropped most of the aggressive thrash metal elements in favor of more melodic, modern, mid-tempo and mechanical style.[10] About.com reviewer wrote that the album's genre is difficult to pigeon hole, featuring elements of industrial, psychedelic and soundtrack music among technical metal.[12]

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Transhuman (album) - Wikipedia

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