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利用诱导多能干细胞作为供体核建立猪核移植胚胎干细胞。

Establishment of porcine nuclear transfer-derived embryonic stem cells using induced pluripotent stem cells as donor nuclei.

机构信息

Animal Biotechnology Unit, Institute of Agrobiological Sciences, NARO, Ibaraki 305-0901, Japan.

Reproductive Biology Unit, Institute of Agrobiological Sciences, NARO, Ibaraki 305-0901, Japan.

出版信息

J Reprod Dev. 2020 Apr 10;66(2):163-174. doi: 10.1262/jrd.2019-137. Epub 2020 Jan 26.

Abstract

We investigated whether sequential reprogramming via porcine induced pluripotent stem cells (piPSCs) or exposure to oocyte cytoplasm following nuclear transfer could generate nuclear transfer-derived ESCs (piPSCs-ntESCs). Nuclear transfer embryos were reconstructed with piPSCs possessing a ZsGreen fluorescent marker for expression of exogenous Nanog and Lin28. Reconstructed oocytes developed to morphologically normal 8-cell/morulae (35/93, 37.6%) and blastocysts (12/93, 12.9%). Although most green fluorescent protein-positive blastocysts showed efficient outgrowth (8/10, 80%), none formed primary colonies and all cultures degenerated. Conversely, 15% of fluorescent positive 8-cell/morula stage embryos showed outgrowth (6/40), with three forming primary colonies (7.5%). All three were expanded and maintained as piPSC-ntESC lines. These cell lines expressed stem cell marker genes and proteins. Despite inactivation of one X chromosome, all piPSC-ntESC lines formed teratomas comprising derivatives from all three embryonic germ layers. Strong SSEA1, 3, and 4 expression was detected at the 8-cell/morula stage in embryos reconstructed from both piPSCs and porcine embryonic fibroblasts (PEFs). SSEA3 was notably absent from IVF controls at pre-implantation embryo stages. Finally, we attempted to establish ntESCs from 8-cell/morulae reconstructed with PEFs using the same culture conditions as those for piPSC-ntESC derivation. Although eight primary colonies arose from 107 embryos (7.5%), they all degenerated after the first passage culture. Early and sustained expression of key reprogramming regulatory factors may be critical for pluripotent stem cell derivation to derive piPSC-ntESCs from 8-cell/morula stages, while the expression of SSEAs may be involved in the initial stem cell colony formation phases.

摘要

我们研究了通过猪诱导多能干细胞(piPSCs)的顺序重编程或核移植后暴露于卵母细胞质是否可以产生核移植衍生的胚胎干细胞(piPSCs-ntESCs)。核移植胚胎通过具有ZsGreen 荧光标记的 piPSCs 进行重建,用于表达外源性 Nanog 和 Lin28。重建的卵母细胞发育成形态正常的 8 细胞/桑椹胚(35/93,37.6%)和囊胚(12/93,12.9%)。尽管大多数绿色荧光蛋白阳性囊胚显示出有效的外生(8/10,80%),但没有一个形成初级集落,所有培养物都退化了。相反,15%的荧光阳性 8 细胞/桑椹胚期胚胎显示出外生(6/40),其中 3 个形成初级集落(7.5%)。所有三个均被扩展并维持为 piPSC-ntESC 系。这些细胞系表达干细胞标记基因和蛋白。尽管一个 X 染色体失活,但所有 piPSC-ntESC 系均形成包含来自三个胚胎生殖层的衍生物的畸胎瘤。在从 piPSCs 和猪胚胎成纤维细胞(PEFs)重建的胚胎中,在 8 细胞/桑椹胚阶段检测到强烈的 SSEA1、3 和 4 表达。在植入前胚胎阶段,IVF 对照中明显没有 SSEA3。最后,我们试图使用与 piPSC-ntESC 衍生相同的培养条件,从用 PEFs 重建的 8 细胞/桑椹胚中建立 ntESC。尽管从 107 个胚胎中出现了 8 个初级集落(7.5%),但它们在第一传代培养后均退化。关键重编程调节因子的早期和持续表达对于从 8 细胞/桑椹胚阶段衍生 piPSC-ntESCs 可能至关重要,而 SSEA 的表达可能参与初始干细胞集落形成阶段。

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