The heart forming region of early chick embryo is an alternative source of embryonic stem cells.

S. Borgave, Kirti Ghodke, S. Ghaskadbi
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引用次数: 4

Abstract

In early chick embryo, the precardiac cells reside within distinct groups of mesodermal cells known as presumptive heart forming regions (HFRs). HFRs are located on the lateral sides of the Hensens node. In an effort to study fate of HFRs in isolation, HFRs were excised from early gastrulating chick embryos and cultured in vitro. A very small proportion of HFRs from 18 h incubated embryos differentiated into beating cardiomyocytes whereas about 43% of HFRs from embryos incubated for longer durations (20, 23 and 28 h) showed beating activity. The potential of HFRs, from 18 h incubated embryos, to differentiate into cardiomyocytes increased significantly in presence of Hensens node. About one third of the HFR cells underwent spontaneous differentiation into adipocytes in culture. Simultaneously, some of the cells derived from HFRs exhibited alkaline phosphatase (AP) activity indicating presence of stem cells in the culture. HFR cells were positive for vimentin indicating their mesenchymal origin. FGF supplement increased the proportion of AP-positive cells in a dose dependent manner. The present study demonstrates that HFRs can serve as a source of mesenchymal stem cells which can be gainfully employed for various purposes. The results also suggest that even though the in vitro cultured HFRs from 18 h incubated HH stage 4 chick embryo retain the potential to undergo cardiac differentiation, certain instructive signals from Hensens node may reinforce the fate.
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早期鸡胚心脏形成区是胚胎干细胞的另一来源。
在早期的鸡胚胎中,心前细胞位于被称为假定心脏形成区(HFRs)的不同的中胚层细胞群中。HFRs位于Hensens淋巴结的外侧。为了研究分离的HFRs的命运,从早期原肠萌发的鸡胚胎中切除HFRs并在体外培养。从胚胎培养18小时的HFRs中分化成跳动心肌细胞的比例非常小,而从胚胎培养更长时间(20,23和28小时)的HFRs中约有43%显示跳动活性。HFRs在胚胎培养18 h后分化为心肌细胞的可能性在Hensens淋巴结存在时显著增加。约三分之一的HFR细胞在培养过程中自发分化为脂肪细胞。同时,来自HFRs的一些细胞表现出碱性磷酸酶(AP)活性,表明培养中存在干细胞。HFR细胞呈波形蛋白阳性,表明其为间充质细胞。补充FGF增加ap阳性细胞比例呈剂量依赖性。目前的研究表明,HFRs可以作为间充质干细胞的来源,可以有效地用于各种目的。结果还表明,尽管体外培养的HH期4胚HFRs保留了心脏分化的潜力,但来自Hensens结的某些指示信号可能加强了这一命运。
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