首页> 外文期刊>In Vitro Cellular and Developmental Biology. Animal: Journal of the Tissues Culture Association >Modulation of activin A-induced differentiation in vitro by vascular endothelial growth factor in Xenopus presumptive ectodermal cells
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Modulation of activin A-induced differentiation in vitro by vascular endothelial growth factor in Xenopus presumptive ectodermal cells

机译:非洲爪蟾推测外胚层细胞中血管内皮生长因子对激活素A诱导的分化的调节

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We have previously demonstrated that activin A at low concentrations induced ventral mesoderm including blood-like cells from Xenopus animal caps and that beating heart could be also induced from animal caps treated with 100 ng/ml activin A, suggesting that activin A might be involved in cardiac vasculogenesis. A vascular endothelial growth factor (VEGF) is a powerful mitogen for endothelial cells and is an inducer and regulator of angiogenesis. However, VEGF function in Xenopus development is not clearly identified. In this study, we determined the effect of VEGF on activin A-induced differentiation of animal cap. The VEGF induced duct-like structure composed of Flk-1-positive cells together with the induction of nonvascular tissues, such as neural tissues. This histological result was coincident with our reverse transcriptase-polymerase,chain reaction analysis that VEGF together with activin A promoted the expression of Xenopus N-CAM and Xenopus brachyury. This study suggests that VEGF has additional biological activities besides angiogenesis, and arises a different function that VEGF induces stroma cell migration or recruitment that are required for blood vessel formation. This differentiation system will aid in the understanding of angiogenesis during early development.
机译:先前我们已经证明,低浓度的激活素A可以诱导腹膜中皮,包括非洲爪蟾动物帽的血样细胞,用100 ng / ml激活素A处理的动物帽也可以诱导跳动的心脏,这表明激活素A可能参与了心脏血管生成。血管内皮生长因子(VEGF)是内皮细胞的强大促分裂原,是血管生成的诱导剂和调节剂。然而,尚不清楚在非洲爪蟾发育中的VEGF功能。在这项研究中,我们确定了VEGF对激活素A诱导的动物帽分化的影响。 VEGF诱导的由Flk-1阳性细胞组成的导管样结构以及非血管组织(如神经组织)的诱导。该组织学结果与我们的逆转录酶-聚合酶,链反应分析相吻合,即VEGF与激活素A共同促进非洲爪蟾N-CAM和非洲爪蟾的表达。这项研究表明,VEGF除了具有血管生成作用外,还具有其他生物学活性,并且具有与VEGF诱导血管形成所需的基质细胞迁移或募集不同的功能。这种分化系统将有助于早期发育过程中对血管生成的了解。

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