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Zebrafish Primordial Germ Cell Cultures Derived from vasa::RFP Transgenic Embryos

机译:源自vasa :: RFP转基因胚胎的斑马鱼原始生殖细胞培养

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摘要

Although embryonic germ (EG) cell-mediated gene transfer has been successful in the mouse for more than a decade, this approach is limited in other species due to the difficulty of isolating the small numbers of progenitors of germ cell lineage (PGCs) from early-stage embryos and the lack of information on the in vitro culture requirements of the cells. In this study, methods were established for the culture of PGCs obtained from zebrafish embryos. Transgenic embryos that express the red fluorescent protein (RFP) under the control of the PGC-specific vasa promoter were used, making it possible to isolate pure populations of PGCs by fluorescence-activated cell sorting (FACS) and to optimize the culture conditions by counting the number of fluorescent PGC colonies produced in different media. Cultures initiated from 26-somite-stage embryos contained the highest percentage of PGCs that proliferated in vitro to generate colonies. The effect of growth factors, including Kit ligand a and b (Kitlga and Kitlgb) and stromal cell-derived factor 1a and 1b (Sdf-1a and Sdf-1b), on PGC proliferation was studied. Optimal in vitro growth and survival of the zebrafish PGCs was achieved when recombinant Kitlga and Sdf-1b were added to the culture medium through transfected feeder cells, resulting in a doubling of the number of PGC colonies. Results from RT-PCR and in situ hybridization analysis demonstrated that PGCs maintained in culture expressed the kita receptor, even though receptor expression was not detected in PGCs isolated by FACS directly from dissociated embryos. In optimal growth conditions, the PGCs continued to proliferate for at least 4 months in culture. The capacity to establish long-term PGC cultures from zebrafish will make it possible to conduct in vitro studies of germ cell differentiation and EG cell pluripotency in this model species and may be valuable for the development of a cell-mediated gene transfer approach.
机译:尽管胚胎生殖(EG)细胞介导的基因转移已在小鼠中成功应用了十多年,但由于难以从早期分离出少量生殖细胞谱系(PGC)祖细胞,因此该方法在其他物种中受到限制期胚胎和缺乏有关细胞体外培养要求的信息。在这项研究中,建立了从斑马鱼胚胎中获得的PGCs的培养方法。使用了在PGC特异性瓦萨启动子控制下表达红色荧光蛋白(RFP)的转基因胚胎,从而可以通过荧光激活细胞分选(FACS)分离纯的PGC种群,并通过计数优化培养条件在不同培养基中产生的荧光PGC菌落的数量。从26个阶段的胚胎开始的培养物中,PGC的百分比最高,在体外增殖产生菌落。研究了包括Kit配体a和b(Kitlga和Kitlgb)以及基质细胞衍生因子1a和1b(Sdf-1a和Sdf-1b)在内的生长因子对PGC增殖的影响。当通过转染的饲养细胞将重组Kitlga和Sdf-1b添加到培养基中时,斑马鱼PGC的最佳体外生长和存活得以实现,从而使PGC菌落的数量增加了一倍。 RT-PCR和原位杂交分析的结果表明,即使在FACS直接从离体胚胎中分离出的PGC中未检测到受体表达,在培养物中维持的PGC也表达了kita受体。在最佳生长条件下,PGCs在培养物中持续增殖至少4个月。从斑马鱼建立长期PGC培养物的能力将使在该模型物种中进行生殖细胞分化和EG细胞多能性的体外研究成为可能,并且对于开发细胞介导的基因转移方法可能有价值。

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