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Nuclear transfer technologies: Between successes and doubts

机译:核转让技术:成功与怀疑之间

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Cloning of mammals by nuclear transfer can lead to the birth of healthy adult animals but more often compromises the development of the reconstructed embryos. A high incidence of fetal and postnatal losses has been observed in several species, revealing the existence of longlasting effects induced by the nuclear transfer procedures. Remodeling of donor chromatin by the recipient cytoplasm after nuclear transfer is frequently associated with the deregulation of specific genes, and recent observations point to the potential importance of time-dependent DNA methylation events in the occurrence of these alterations. Screening strategies to design nuclear transfer procedures that would mimic the epigenetic remodeling occurring in normal embryos are being designed, and improvement in the efficiency of procedures could imply a pre-conditioning of donor cells. Early mammalian development appears to be rather tolerant to epigenetic abnormalities, raising the possibility that even a fully functional reprogrammed genome may have been subjected to some epigenetic alterations. Bringing nuclear transfer to routine practice requires greater knowledge and understanding of the basic biological processes underlying epigenetic controls of nuclear activities. An important issue at present is to limit the production of those aberrant phenotypes that may result in significant insult to the nature and welfare of animals.
机译:通过核转移克隆哺乳动物可以导致健康的成年动物出生,但更多情况下会损害重建胚胎的发育。在几个物种中已经观察到胎儿和产后损失的高发生率,表明存在由核移植程序引起的持久作用。核转移后受体细胞质对供体染色质的重塑通常与特定基因的失调有关,最近的观察表明,在这些改变的发生中,时间依赖性DNA甲基化事件的潜在重要性。正在设计筛选策略,以设计可模拟正常胚胎中发生的表观遗传重塑的核移植程序,而程序效率的提高可能暗示了供体细胞的预处理。早期哺乳动物的发育似乎对表观遗传异常具有宽容性,从而增加了即使是功能齐全的重新编程基因组也可能受到某些表观遗传改变的可能性。将核移植带入常规实践需要对核活动的表观遗传控制基础的基本生物过程有更多的了解和理解。当前的重要问题是限制那些可能严重损害动物的自然和福祉的异常表型的产生。

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