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Generation of pig induced pluripotent stem cells using an extended pluripotent stem cell culture system

机译:使用延伸的多能干细胞培养系统产生猪诱导的多能干细胞

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Pigs have emerged as one of the most popular large animal models in biomedical research, which in many cases is considered as a superior choice over rodent models. In addition, transplantation studies using pig pluripotent stem (PS) cell derivatives may serve as a testbed for safety and efficacy prior to human trials. Recently, it has been shown that mouse and human PS cells cultured in LCDM (recombinant human LIF, CHIR 99021, (S)-(+)-dimethindene maleate, minocycline hydrochloride) medium exhibited extended developmental potential (designated as extended pluripotent stem cells, or EPS cells), which could generate both embryonic and extraembryonic tissues in chimeric mouse conceptus. Whether stable pig induced pluripotent stem (iPS) cells can be generated in LCDM medium and their chimeric competency remains unknown. iPS cells were generated by infecting pig pericytes (PC) and embryonic fibroblasts (PEFs) with a retroviral vector encoding Oct4, Sox2, Klf4, and cMyc reprogramming factors and subsequently cultured in a modified LCDM medium. The pluripotency of PC-iPS and PEF-iPS cells was characterized by examining the expression of pluripotency-related transcription factors and surface markers, transcriptome analysis, and in vitro and in vivo differentiation capabilities. Chimeric contribution of PC-iPS cells to mouse and pig conceptus was also evaluated with fluorescence microscopy, flow cytometry, and PCR analysis. In this study, using a modified version of the LCDM medium, we successfully generated iPS cells from both PCs and PEFs. Both PC-iPS and PEF-iPS cells maintained the stable "dome-shaped" morphology and genome stability after long-term culture. The immunocytochemistry analyses revealed that both PC-iPS and PEF-iPS cells expressed OCT4, SOX2, and SALL4, but only PC-iPS cells expressed NANOG and TRA-1-81 (faint). PC-iPS and PEF-iPS cells could be differentiated into cell derivatives of all three primary germ layers in vitro. The transcriptome analysis showed that PEF-iPS and PC-iPS cells clustered with pig ICM, Heatmap and volcano plot showed that there were 1475 differentially expressed genes (DEGs) between PC-iPS and PEF-iPS cells (adjusted p value ?0.1), and the numbers of upregulated genes and downregulated genes in PC-iPS cells were 755 and 720, respectively. Upregulated genes were enriched with GO terms including regulation of stem cell differentiation, proliferation, development, and maintenance. And KEGG pathway enrichment in upregulated genes revealed Wnt, Jak-STAT, TGF-β, P53, and MAPK stem cell signaling pathways. Fluorescence microscopy and genomic PCR analyses using pig mtDNA-specific and GFP primers showed that the PC-iPS cell derivatives could be detected in both mouse and pig pre-implantation blastocysts and post-implantation conceptuses. Quantitative analysis via flow cytometry revealed that the chimeric contribution of pig PC-iPS cells in mouse conceptus was up to 0.04%. Our findings demonstrate that stable iPS cells could be generated in LCDM medium, which could give rise to both embryonic and extraembryonic cells in vivo. However, the efficiency and level of chimeric contribution of pig LCDM-iPS cells were found low.
机译:猪已经出现为生物医学研究中最受欢迎的大型动物模型之一,在许多情况下被认为是啮齿动物模型的优越选择。此外,使用猪多能茎(PS)细胞衍生物的移植研究可以用作人类试验之前的安全性和功效的试验表。最近,已经表明,在LCDM(重组人LiF,Chir 99021,(S) - (+) - 二甲茚,Malide,盐酸盐水)培养基中培养的小鼠和人PS细胞表现出延长的发育潜力(指定为延伸的多能干细胞,或eps细胞),其可以在嵌合小鼠概念中产生胚胎和胚胎组织。是否可以在LCDM培养基中产生稳定的猪诱导的多能干(IPS)细胞,并且它们的嵌合竞争力仍然未知。通过用逆转录病毒载体感染猪周细胞(PC)和胚胎成纤维细胞(PEFS)产生IPS细胞,用逆转录病毒载体编码OCT4,SOX2,KLF4和CMYC重编程因子,随后在改性的LCDM培养基中培养。通过检查多能性相关的转录因子和表面标志物,转录组分析和体外以及体内分化能力的表达来表征PC-IP和PEF-IPS细胞的多能性。还通过荧光显微镜,流式细胞术和PCR分析评估了PC-IPS细胞对小鼠和猪概念的嵌合贡献。在本研究中,使用LCDM媒体的修改版本,我们成功地从PC和PEF中生成了IPS单元格。 PC-IPS和PEF-IPS细胞两者均保持稳定的“圆顶形态”形态和长期培养后的基因组稳定性。免疫细胞化学分析表明,PC-IP和PEF-IPS细胞表达了OCT4,SOX2和SALL4,但只有PC-IPS细胞表达纳米和TRA-1-81(微弱)。 PC-IPS和PEF-IPS细胞可以在体外分化为所有三种原发性胚层的细胞衍生物。转录组分析表明,与猪ICM聚集的PEF-IPS和PC-IPS细胞,Heatmap和Volcano图聚集在一起,PC-IPS和PEF-IPS细胞之间存在1475个差异表达基因(DEGS)(调节的P值<0.1)并且PC-IPS细胞中的上调基因和下调基因的数量分别为755和720。上调基因富含GO术语,包括调节干细胞分化,增殖,发育和维护。在上调基因中富集的Kegg途径浓缩揭示了WNT,JAK-STAT,TGF-β,P53和MAPK干细胞信号传导途径。使用猪MTDNA特异性和GFP引物分析荧光显微镜和基因组PCR分析表明,可以在小鼠和猪预注入胚泡和植入后概念中检测PC-IPS细胞衍生物。通过流式细胞的定量分析显示,小鼠截止猪PC-IPS细胞的嵌合贡献高达0.04%。我们的研究结果表明,可以在LCDM培养基中产生稳定的IPS细胞,这可能导致体内胚胎和胚胎细胞。然而,发现猪LCDM-IPS细胞的嵌合贡献的效率和水平低。

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