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" "[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.
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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When the first Superman movie came out, I gave dozens of interviews to promote it. The most frequent question was: What is a hero? My answer was that a hero is someone who commits a courageous action without considering the consequences. Now my definition is completely different. I think a hero is an ordinary individual who finds the strength to persevere and endure in spite of overwhelming obstacles. They are the real heroes, and so are the families and friends who have stood by them.
Somewhere in Time, while it errs on the side of pretentiousness, is an absolutely honest attempt to create an old-fashioned romance. It's based on love rather than on sex or X-rated bedroom scenes. I don't know how to talk about a love story without getting all gooey about it, but the script excited me because of the situation of the leading character... His problem struck me as that of many people. They've got everything going for them, or so they say, except for a real commitment, a real love.
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[Y]ou have to understand that therapeutic cloning is a very nascent technology that's not ready for use in humans. But knowing that it will not . . . provided our scientists are allowed to go ahead with the research, it really shouldn't take that long before they're ready for humans. However, knowing that there is a better technology out there than just using embryonic stemcells, he as a doctor feels, given the immune rejection problem for people with spinal cord injuries, he's not going to go ahead, as he had planned to. There was a plan to actually use embryonic stem cells as soon as it would be allowed by the FDA. He is not going to do that until therapeutic cloning gets to the point where it could be applied to humans. And I just want to make one other very quick comment and that is in England, just a month ago, Dr. Ann Bishop, who works with the tissue engineering corporation over there, was able to take mouse embryonic stem cells that derived . . . had been made obviously therapeutic cloning, and they turned those cells into tissue that is applied to the lungs, to deficient cell types or cell tissues in the lungs, and said, have already reported, I guess it's public knowledge, that they feel they are now ready to do it in humans, so the idea that it would be decades before you could get to human application, I think that is one example I'm giving you right now of the fact that that's not true. I can give you another example. Doctor Oswald Stewart, of the Reeve Research Center, UC Irvine has said that you could probably get to the use of therapeutic cloning in humans within about three to five years. So I absolutely dispute the time line that's been put up before.