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首页> 外文期刊>Arteriosclerosis, thrombosis, and vascular biology >Differentiation and Application of Induced Pluripotent Stem Cell-Derived Vascular Smooth Muscle Cells
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Differentiation and Application of Induced Pluripotent Stem Cell-Derived Vascular Smooth Muscle Cells

机译:诱导多能干细胞衍生血管平滑肌细胞的分化与应用

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Vascular smooth muscle cells (VSMCs) play a role in the development of vascular disease, for example, neointimal formation, arterial aneurysm, and Marfan syndrome caused by genetic mutations in VSMCs, but little is known about the mechanisms of the disease process. Advances in induced pluripotent stem cell technology have now made it possible to derive VSMCs from several different somatic cells using a selection of protocols. As such, researchers have set out to delineate key signaling processes involved in triggering VSMC gene expression to grasp the extent of gene regulatory networks involved in phenotype commitment. This technology has also paved the way for investigations into diseases affecting VSMC behavior and function, which may be treatable once an identifiable culprit molecule or gene has been repaired. Moreover, induced pluripotent stem cell-derived VSMCs are also being considered for their use in tissue-engineered blood vessels as they may prove more beneficial than using autologous vessels. Finally, while several issues remains to be clarified before induced pluripotent stem cell-derived VSMCs can become used in regenerative medicine, they do offer both clinicians and researchers hope for both treating and understanding vascular disease. In this review, we aim to update the recent progress on VSMC generation from stem cells and the underlying molecular mechanisms of VSMC differentiation. We will also explore how the use of induced pluripotent stem cell-derived VSMCs has changed the game for regenerative medicine by offering new therapeutic avenues to clinicians, as well as providing researchers with a new platform for modeling of vascular disease.
机译:血管平滑肌细胞(VSMC)在血管疾病的发展中发挥作用,例如由VSMC中的遗传突变引起的新内膜形成,动脉动脉瘤和Marfan综合征,但对疾病过程的机制知之甚少。诱导多能干电池技术的进步现在已经使得可以使用各种协议从几种不同的体细胞中衍生VSMC。因此,研究人员已经开始描绘触发VSMC基因表达的关键信令过程,以掌握表型承诺中涉及的基因调节网络的程度。该技术还铺平了对影响VSMC行为和功能的疾病的疾病的方法,这可能是可治疗的可识别的罪魁祸首分子或基因已经修复。此外,诱导多能干细胞衍生的VSMC也被认为是它们在组织工程血管中使用,因为它们可能比使用自体血管更有益。最后,虽然在诱导多能干细胞衍生的VSMC中可能在再生医学中使用了几个问题仍有待澄清,但他们确实提供临床医生和研究人员希望治疗和理解血管疾病。在本综述中,我们的目标是更新从干细胞和VSMC分化的潜在分子机制的VSMC生成的最新进展。我们还将探讨诱导多能干细胞衍生的VSMC的使用如何通过向临床医生提供新的治疗途径,以及为血管疾病建模的新平台提供研究人员来改变了再生医学的游戏。

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