What I didn’t expect was that in this country, home of “Truth, Justice and the American way,” hope would be determined by politics. - Christopher Reeve

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What I didn’t expect was that in this country, home of “Truth, Justice and the American way,” hope would be determined by politics.

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About Christopher Reeve

Christopher D'Olier Reeve (25 September 1952 – 10 October 2004) was an American actor, director, producer, writer, lobbyist, and husband of actress Dana Reeve. He is most famous for playing the role of Superman in the film Superman (1978) and its three sequels.

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Birth Name: Christopher D'Olier Reeve
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Additional quotes by Christopher Reeve

[N]ever in the history of science have we been given such a gift of being able to use cells that can become any tissue or cell type in the body for the purpose of healing. I think that if you do not have the combination of therapeutic cloning and embryonic stem cells, you are going to be condemning a lot of people to unnecessary and death. If I look around at what else is going on, for years just in the spinal cord community, there has been research on growth factors and Schwann cells, and there have been efforts to stop protein inhibitor, but they have not yet shown the same promise that the embryonic stem cells do, and at the moment, in two places, Washington University in St. Louis and the University of California at Irvine, researchers have been conducting very successful experiments using human embryonic stem cells in animal models in both the acute and chronic phases and getting recovery. Of course, they are going to have to move to the higher animal forms before humans, but the promise is absolutely extraordinary, and I cannot think of any other kind of therapy that would be as effective and as promising as this is. And when I read articles or hear people say that the promise of human embryonic stem cells is dubious, I am very disturbed, because the only reason they get to say that is because the NIH has not been allowed to spend a single dollar on embryonic stem cell research. They have a budget now of $25 billion, and yet, because of lack of guidelines and because of the restrictions that have been imposed on the NIH so far, not one human embryonic stem cell project has been federally funded. That is why you are seeing such slow progress. And if we continue that way, I am going to be in this wheelchair for a long time that I do not need to be, and others like me.

I've always been a practical person, not one to waste time pursuing unrealistic goals or dreams. But today's dreams can soon become tomorrow's reality in biomedical research. Scientists studying how the brain's cells and chemicals develop, interact, and communicate with the rest of the body have been making strides in alleviating the suffering of patients with Alzheimer's, strokes, Parkinson's, and MS, as well as brain and spinal cord injuries. Only recently researchers have dis-covered that stem cells, which have the ability to adapt to any environmentt in the body, will probably be the most important factor in curing all of these conditions. For example, in order to repair the damaged spinal cord, stem cells can be extracted from the ventricles of the brain or from bone marrow and genetically engineered to become nerve tissue. Highly successful experiments on mice have shown that when these transformed stem cells are transferred into the site of the injury, they apparently understand that their mission is to replace the damaged circuitry, which causes significant functional recovery. Mice that have had their spinal cords completely transected have been able to walk confidently across tightropes and climb rope ladders after this treatment. You would think that these breakthroughs would be a cause for celebration throughout the disabled community. In scientific terms, we are very close to achieving the impossible; in practical terms, we have a long way to go. But it is very disheartening to hear a leading researcher announce, "give us a hundred million dollars and we can cure Parkinson's"; or, "if we raise 300 million dollars, we can find a cure for paralysis in 5 years instead of 15." The idea of spending 15 more years in a wheelchair being fed, dressed, and washed by others would be tolerable if the scientists were still in the dark and there was no hope of recovery. I think most disabled people would agree with me that it is very difficult to cope psychologically with the stark reality that our future now depends mostly on money.

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Today, 100 million Americans suffer from serious or currently incurable diseases. Fifty-four million Americans are disabled. Our Government is supposed to do the greatest good for the greatest number of people. Beyond that, we have a moral responsibility to help others. Time is absolutely critical. If the Government forces scientists' attempt to make adult stem cells behave like embryonic stem cells, they might waste 5 years or more and fail. In the meantime, hundreds of thousands will have died. Why do we need therapeutic cloning? As a layman, several important reasons come to mind. One, implantation of human embryonic stem cells is not safe unless they contain the patient's own DNA. Two, efforts, to repair central nervous system disorders may need to recapitulate the process of fetal development, and that could only be accomplished by human embryonic stem cells. Three, therapeutic cloning is done without fertilizing an egg. It can be strictly regulated. If we also enforce an absolute ban on reproductive cloning, we will not slide down the dreaded slippery slope into moral and ethical chaos. Any powerful new technology comes with the possibility for abuse. But when we decide that the benefit to society is worth the risk, we take every possible precaution and go forward. The unfertilized eggs that will be used for nucleus transplantation will never leave the laboratory and will never be implanted in a womb. But if we do not make this research legal, if we do not use Government funding and oversight, it will happen privately, dangerous, unregulated and uncontrolled. And our country is about to lose its preeminence in science and medicine. We took a giant step backward in the 1970's when the NIH was not allowed to fund its in vitro research until an advisory commission could be formed to consider the issue. In the meantime, there was rapid progress in England, and the first test tube baby was born in 1978. For purely political reasons, we did not succeed and so far, 177,000 children have been conceived in 400 facilities around the country.

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