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首页> 外文期刊>Journal of molecular cell biology >FGF8 signaling sustains progenitor status and multipotency of cranial neural crest-derived mesenchymal cells in vivo and in vitro.
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FGF8 signaling sustains progenitor status and multipotency of cranial neural crest-derived mesenchymal cells in vivo and in vitro.

机译:FGF8信号传导维持体内和体内颅神经嵴衍生间充质细胞的祖细胞状态和多因素。

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The cranial neural crest (CNC) cells play a vital role in craniofacial development and regeneration. They are multi-potent progenitors, being able to differentiate into various types of tissues. Both pre-migratory and post-migratory CNC cells are plastic, taking on diverse fates by responding to different inductive signals. However, what sustains the multipotency of CNC cells and derivatives remains largely unknown. In this study, we present evidence that FGF8 signaling is able to sustain progenitor status and multipotency of CNC-derived mesenchymal cells both in vivo and in vitro. We show that augmented FGF8 signaling in pre-migratory CNC cells prevents cell differentiation and organogenesis in the craniofacial region by maintaining their progenitor status. CNC-derived mesenchymal cells with Fgf8 overexpression or control cells in the presence of exogenous FGF8 exhibit prolonged survival, proliferation, and multi-potent differentiation capability in cell cultures. Remarkably, exogenous FGF8 also sustains the capability of CNC-derived mesenchymal cells to participate in organogenesis such as odontogenesis. Furthermore, FGF8-mediated signaling strongly promotes adipogenesis but inhibits osteogenesis of CNC-derived mesenchymal cells in vitro. Our results reveal a specific role for FGF8 in the maintenance of progenitor status and in fate determination of CNC cells, implicating a potential application in expansion and fate manipulation of CNC-derived cells in stem cell-based craniofacial regeneration.
机译:颅神经嵴(CNC)细胞在颅面发育和再生中发挥着至关重要的作用。它们是多效祖细胞,能够区分各种类型的组织。迁移前和迁移后的CNC细胞都是塑料,通过响应不同的电感信号来占用不同的粘性。然而,维持CNC细胞和衍生物的多种性的是在很大程度上未知。在这项研究中,我们提出了证据表明FGF8信号传导能够在体内和体外维持CNC衍生的间充质细胞的祖细胞状态和多种性。我们表明,通过维持其祖细胞状态,预防迁移的CNC细胞中的增强FGF8信号传导可防止细胞分化和颅面区域中的有机组织。在外源FGF8存在下,具有FGF8过表达或对照细胞的CNC衍生的间充质细胞表现出长期的存活,增殖和细胞培养物中的多效分化能力。值得注意的是,外源FGF8也维持CNC衍生的间充质细胞的能力,以参与偶联异构发生的子组织。此外,FGF8介导的信号传导强烈促进脂肪发生,但抑制体外中数量衍生的间充质细胞的骨质发生。我们的结果揭示了FGF8在维持祖母地位和CNC细胞的法定测定中的特定作用,暗示了在干细胞基颅面再生中CNC衍生细胞的膨胀和命运操纵潜在应用。

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