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An Insight on Small Molecule Induced Foot-Print Free Naive Pluripotent Stem Cells in Livestock

机译:家畜中小分子诱导的足印免费幼稚多能干细胞的见解。

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Bona fide embryonic stem cell (ESC) lines from livestock species have been challenging to derive and maintain, contrasting mouse and human ESCs. However, induced pluripotent stem cells (iPSC) generated by reprogramming somatic cells tender an option, as they display characteristic features of ESC. The comprehension that induced pluripotent stem cells (iPSC) could be created with in no time also holds the potential of allowing pluripotent cells to be derived from animal models vital in biomedical research. Endeavors to produce bona fide pluripotent stem cells (PSC) from livestock have been going on for more than two decades. But, attempts to derive bona fide livestock iPS cells have met with limited success. Recently it’s been reported that small molecules can augment reprogramming efficiency and may be used to substitute few or all transcription factors used for reprogramming. It is assumed that the reprogramming factors are conserved among species, and this small molecule reprogramming approach will probably apply to livestock species as well. So this review will focus mainly on the accomplishments of small molecules on accelerating cell reprogramming and obtaining naive pluripotency, and raise a new insight on, exogenous genes free, livestock naive iPSC generation with a new bullet, small molecule.
机译:与小鼠和人类胚胎干细胞相反,来自牲畜物种的善意胚胎干细胞(ESC)系很难获得和维持。然而,通过对体细胞进行重编程而产生的诱导性多能干细胞(iPSC)具有选择权,因为它们显示了ESC的特征。可以立即创建诱导多能干细胞(iPSC)的理解也具有使多能细胞从对生物医学研究至关重要的动物模型中衍生的潜力。从牲畜生产真正的多能干细胞(PSC)的努力已经进行了二十多年。但是,尝试获得真正的家畜iPS细胞的尝试取得了有限的成功。最近有报道说,小分子可以提高重新编程的效率,并可以用来替代用于重新编程的部分或全部转录因子。假定重编程因子在物种之间是保守的,并且这种小分子重编程方法也可能适用于牲畜物种。因此,本综述将主要关注小分子在加速细胞重编程和获得幼稚多能性方面的成就,并通过新的子弹小分子对无外源基因的家畜幼稚iPSC产生提出新的见解。

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