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首页> 外文期刊>Stem cells and development >Activation of the Wnt/-Catenin Pathway by an Inflammatory Microenvironment Affects the Myogenic Differentiation Capacity of Human Laryngeal Mucosa Mesenchymal Stromal Cells
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Activation of the Wnt/-Catenin Pathway by an Inflammatory Microenvironment Affects the Myogenic Differentiation Capacity of Human Laryngeal Mucosa Mesenchymal Stromal Cells

机译:通过炎性微环境激活Wnt / -catenin途径影响人喉粘膜间充质细胞的肌遗传分化能力

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摘要

Various microenvironments influence the multiple differentiation potential of mesenchymal stromal cells. For example, inflammatory microenvironment can suppress the myogenic differentiation capability of laryngeal mucosa mesenchymal stromal cells (LM-MSCs). The present study therefore sought to identify the underlying molecular mechanisms regulating these processes. We isolated a novel population of MSCs, LM-MSCs, from the laryngeal mucosa tissues. The cells were cultured in osteogenic, adipogenic, and myogenic differentiation media in the presence or absence of interleukin-1 and tumor necrosis factor (to simulate inflammatory microenvironment). The expression of active -catenin, p-GSK3, and GSK3 were detected by western blot and real-time polymerase chain reaction. The myogenic differentiation of LM-MSCs in inflammatory microenvironment and the regulation by Dickkopf-1 (DKK1) were tested both in vivo and in vitro. Inflammatory microenvironment could suppress the osteogenesis, adipogenesis, and myogenesis of LM-MSCs. The Wnt/-catenin signaling pathway was activated during myogenesis in inflammatory microenvironment. The suppressed myogenic differentiation capability of LM-MSCs in inflammatory microenvironment was reversed by DKK1. By regulating the Wnt/-catenin signaling pathway, DKK1 can improve the myogenic differentiation of LM-MSCs in inflammatory microenvironment. Thus, the results of this study may help improve the efficacy of LM-MSCs injection therapy for vocal fold regeneration.
机译:各种微环境影响间充质基质细胞的多分分势。例如,炎症微环境可以抑制喉粘膜间充质基质细胞(LM-MSCs)的肌遗传分化能力。因此,本研究试图确定调节这些过程的潜在的分子机制。我们从喉粘膜组织中孤立新的MSCs,LM-MSCs群体。在白细胞介素-1和肿瘤坏死因子(以模拟炎性微环境)的存在或不存在下,将细胞培养。通过蛋白质印迹和实时聚合酶链反应检测活性-Catenin,P-GSK3和GSK3的表达。在体内和体外测试LM-MSCs对炎症微环境中LM-MSCs和Dickkopf-1(DKK1)的调节。炎症微环境可以抑制LM-MSCs的骨质发生,脂肪组织和肌肌发素。在炎症微环境中的肌发育过程中激活Wnt / -catenin信号传导途径。 DKK1逆转了炎症微环境中LM-MSCs的抑制肌遗传学性分化能力。通过调节Wnt / -catenin信号传导途径,DKK1可以改善炎性微环境中LM-MSCs的肌遗传学分化。因此,该研究的结果可能有助于提高LM-MSCS注射治疗对声带再生的功效。

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