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Reprogramming and development in vertebrate somatic cell nuclear transfer embryos and in interspecific systems

机译:脊椎动物细胞核转移胚胎和三种体系中的重新编程和发展

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摘要

Nuclear transfer (NT) remains the most effective method to reprogram somatic cells to totipotency. Somatic cell nuclear transfer (SCNT) efficiency however remains low, but recurrent problems occurring in partially reprogrammed cloned embryos have recently been identified and some remedied. In particular, the trophectoderm has been identified as a lineage whose reprogramming success has a large influence on SCNT embryo development. Several interspecific hybrid and cybrid reprogramming systems have been developed as they offer various technical advantages and potential applications, and together with SCNT, they have led to the identification of a series of reprogramming events and responsible reprogramming factors. Interspecific incompatibilities hinder full exploitation of cross-species reprogramming systems, yet recent findings suggest that these may not constitute insurmountable obstacles.
机译:核移植(NT)仍然是将体细胞重编程为全能的最有效方法。然而,体细胞核转移(SCNT)的效率仍然很低,但是最近已经确定并纠正了部分重新编程的克隆胚胎中反复出现的问题。特别地,滋养外胚层已被鉴定为其重编程成功对SCNT胚胎发育有很大影响的血统。已经开发了几种种间杂种和杂种重编程系统,因为它们具有各种技术优势和潜在的应用,并且与SCNT一起,导致了一系列重编程事件和负责的重编程因素的识别。种间不兼容阻碍了跨物种重编程系统的充分利用,但是最近的发现表明这些可能并不构成不可逾越的障碍。

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