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Sertoli cell-mediated differentiation of bovine fetal mesenchymal stem cells into germ cell lineage using an in vitro co-culture system

机译:使用体外共培养系统将牛胎儿间充质干细胞介导的牛胎儿间充质干细胞分化为胚芽细胞谱系

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摘要

In vitro gamete derivation based on differentiation of germ cells (GC) from stem cells has emerged as a potential new strategy for the treatment of male infertility. This technology also has potential applications in animal reproduction as an alternative method for dissemination of elite animal genetics, production of transgenic animals, and conservation of endangered species. Mesenchymal stem cells (MSC) are multipotent progenitor cells defined by their ability to differentiate into mesodermal lineages. Under the effect of selected bioactive factors, MSC upregulate expression of pluripotent and GC specific-markers revealing their potential for GC differentiation. In addition to the effect of trophic factors, cell-to-cell interaction with Sertoli cells (SC) may be required to guide the sequential differentiation of MSC into GC. Thus, the aim of the present study was to investigate the effect of coculture with SC on the potential for in vitro GC differentiation of bovine fetal MSC (bfMSC) derived from bone marrow (BM-MSC) and adipose tissue (AT-MSC). bfMSC were isolated from male bovine fetuses and SC were collected from adult bull testes. The effect of SC interaction with BM-MSC or AT-MSC was analyzed on the expression of pluripotent factors OCT4 and NANOG, GC genes FRAGILLIS, STELLA and VASA and male GC markers DAZL, PIWIL2, STRA8 and SCP3 at Day 14 of coculture. Flow cytometry analyses detected that the majority (95,5% +/- 2.5; P 0.05) of the isolated population of SC cultures were positive for SC-specific marker WTI. Levels of mRNA of WTI in BM-MSC and AT-MSC were lower (P 0.05) compared to SC; whereas, WTI expression was not detected in bovine fetal fibroblasts (FB). Cocultures of BM-MSC and AT-MSC with SC had higher (P 0.05) OCT4 mRNA levels compared to monocultures of BM-MSC, AT-MSC and SC. Moreover, cocultures of BM-MSC with SC had higher (P 0.05) proportion of cells positive for Oct4 and Nanog compared to monocultures of BM-MSC and SC. Levels of mRNA of DAZL, PIWIL2 and SCP3 were upregulated in cocultures of AT-MSC with SC compared to monocultures of AT-MSC and SC. Accordingly, the proportion of cells positive for Dazl were higher (P 0.05) in cocultures of AT-MSC with SC compared to monocultures of AT-MSC and SC. Changes in gene expression profiles during coculture of SC with AT MSC suggest that cell-to-cell interaction or bioactive factors provided by SC may induce progression of AT-MSC into early stages of GC differentiation. (C) 2019 Elsevier Inc. All rights reserved.
机译:基于干细胞的生殖细胞(GC)分化的体外配子衍生出现为治疗男性不孕症的潜在新策略。该技术还具有动物繁殖的潜在应用,作为传播精英动物遗传学,转基因动物的生产和濒危物种的保护方法。间充质干细胞(MSC)是通过它们分化成中胚层谱系的能力而定义的多能祖祖细胞。在所选生物活性因子的影响下,MSC上调了多能和GC特异性标记的表达,揭示了它们对GC分化的潜力。除了营养因素的影响之外,可能需要与血清细胞(SC)的细胞对细胞相互作用引导MSC的顺序分化为GC。因此,本研究的目的是探讨共培养物与SC对源自骨髓(BM-MSC)和脂肪组织(AT-MSC)衍生的牛胎儿MSC(BFMSC)的体外GC分化的潜力的影响。 BFMSC从雄性牛胎儿中分离出来,从成年公牛睾丸中收集SC。对BM-MSC或AT-MSC的SC相互作用的影响是对多能因因子的表达,GC基因Fragillis,Stella和Vasa和雄性GC标志物Dazl,Piwil2,STRA8和SCP3在共培养的第14天。流式细胞术分析检测到SC培养物的分离群体的大多数(95,5%+/- 2.5; p <0.05)对于SC特异性标记WTI是阳性的。与SC相比,BM-MSC和MSC中WTI和MSC的MRNA的水平降低(P <0.05);然而,在牛胎成纤维细胞(FB)中未检测到WTI表达。与BM-MSC,AT-MSC和SC的单一培养物相比,BM-MSC和AT-MSC的POOGULLURE具有更高的(P <0.05)oct4 mRNA水平。此外,与BM-MSC和SC的单一培养物相比,BM-MSC的BM-MSC与SC的比例呈阳性较高(P <0.05)个细胞比例较高。与MSC和SC的单一栽培相比,DazL,PiWil2和SCP3的mRNA水平上调在AT-MSC的可培养物中。因此,与AT-MSC和SC的单一栽培相比,DazL阳性的细胞的比例较高(P <0.05)。在MSC的SC共培养过程中基因表达谱的变化表明,SC提供的细胞对细胞相互作用或生物活性因子可以诱导在GC分化的早期阶段的进展。 (c)2019 Elsevier Inc.保留所有权利。

著录项

  • 来源
    《Theriogenology》 |2019年第2019期|共11页
  • 作者单位

    Univ Chile Fac Vet &

    Anim Sci Dept Anim Prod Sci Santiago 11735 Chile;

    Univ Chile Fac Vet &

    Anim Sci Dept Anim Prod Sci Santiago 11735 Chile;

    Univ Chile Fac Vet &

    Anim Sci Dept Anim Prod Sci Santiago 11735 Chile;

    Univ Chile Fac Vet &

    Anim Sci Dept Anim Prod Sci Santiago 11735 Chile;

    Univ Chile Fac Vet &

    Anim Sci Dept Anim Prod Sci Santiago 11735 Chile;

    Univ Chile Fac Vet &

    Anim Sci Dept Anim Prod Sci Santiago 11735 Chile;

    Univ Chile Fac Vet &

    Anim Sci Dept Anim Prod Sci Santiago 11735 Chile;

    Univ Chile Fac Vet &

    Anim Sci Dept Clin Sci Santiago 11735 Chile;

    Univ Chile Fac Vet &

    Anim Sci Dept Anim Prod Sci Santiago 11735 Chile;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 动物学;
  • 关键词

    Mesenchymal stem cell; Sertoli cell coculture; Germ cell; Gamete derivation;

    机译:间充质干细胞;血清细胞共培育;生殖细胞;配子衍生;

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