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Commentary: 're-Programming or Selecting Adult Stem Cells?'

机译:评论:“是重新编程还是选择成人干细胞?”

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The recent observations that embryonic stemness-associated genes could assist in the "de-differentiation" of adult skin fibroblast cells to "embryonic-like stem cells", using the "somatic cell nuclear transfer" techniques, have been interpreted as indicating a "re-programming" of genes. These reports have demonstrated a "proof of principle" approach to by-pass many, but not all, of the ethical, scientific and medical limitations of the "therapeutic cloning" of embryonic stem cells from embryos. However, while the interpretation that real "re-programming" of all those somatic fibroblastic differentiation genes might be correct, there does exists an alternative hypothesis of these exciting results. Based on the fact that multipotent adult stem cells exist in most, if not all, adult organs, the possibility exists that all these recent "re-programming" results, using the somatic nuclear transfer techniques, actually were the results of transferred rare nuclear material from the adult stem cells residing in the skin of the mouse, monkey and human samples. An examination of the rationale for this challenging hypothesis has been drawn from the hypothesis of the "stem cell theory of cancer", as well as from the field of human adult stem cells research.
机译:使用“体细胞核转移”技术,胚胎干性相关基因可以协助成年皮肤成纤维细胞“去分化”为“胚胎样干细胞”的最新发现被解释为表明“重新分化”。 -编程”。这些报告证明了一种“原理验证”方法,可以绕过许多但不是全部的胚胎干细胞“治疗性克隆”的伦理,科学和医学限制。然而,尽管所有这些体细胞分化基因的真正“重编程”解释可能是正确的,但确实存在这些令人兴奋的结果的另一种假设。基于多数(甚至不是全部)成年器官中都存在多能成年干细胞的事实,有可能所有这些最近使用体细胞核移植技术进行的“重新编程”结果实际上都是已转移的稀有核物质的结果来源于老鼠,猴子和人类样品皮肤中的成年干细胞。已经从“癌症干细胞理论”的假设以及人类成人干细胞研究领域对这一具有挑战性的假设的理论基础进行了研究。

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