首页> 外文期刊>Stem Cells >TWIST1 Silencing Enhances In Vitro and In Vivo Osteogenic Differentiation of Human Adipose-Derived Stem Cells by Triggering Activation of BMP-ERK/FGF Signaling and TAZ Upregulation
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TWIST1 Silencing Enhances In Vitro and In Vivo Osteogenic Differentiation of Human Adipose-Derived Stem Cells by Triggering Activation of BMP-ERK/FGF Signaling and TAZ Upregulation

机译:Twist1沉默在体外增强,通过触发BMP-ERK / FGF信号传导和TAZ上调的激活来增强人脂肪衍生的干细胞的体内成骨分化

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Mesenchymal stem cells (MSCs) show promise for cellular therapy and regenerative medicine. Human adipose tissue-derived stem cells (hASCs) represent an attractive source of seed cells in bone regeneration. How to effectively improve osteogenic differentiation of hASCs in the bone tissue engineering has become a very important question with profound translational implications. Numerous regulatory pathways dominate osteogenic differentiation of hASCs involving transcriptional factors and signaling molecules. However, how these factors combine with each other to regulate hASCs osteogenic differentiation still remains to be illustrated. The highly conserved developmental proteins TWIST play key roles for transcriptional regulation in mesenchymal cell lineages. This study investigates TWIST1 function in hASCs osteogenesis. Our results show that TWIST1 shRNA silencing increased the osteogenic potential of hASCs in vitro and their skeletal regenerative ability when applied in vivo. We demonstrate that the increased osteogenic capacity observed with TWIST1 knockdown in hASCs is mediated through endogenous activation of BMP and ERK/FGF signaling leading, in turn, to upregulation of TAZ, a transcriptional modulator of MSCs differentiation along the osteoblast lineage. Inhibition either of BMP or ERK/FGF signaling suppressed TAZ upregulation and the enhanced osteogenesis in shTWIST1 hASCs. Cosilencing of both TWIST1 and TAZ abrogated the effect elicited by TWIST1 knockdown thus, identifying TAZ as a downstream mediator through which TWIST1 knockdown enhanced osteogenic differentiation in hASCs. Our functional study contributes to a better knowledge of molecular mechanisms governing the osteogenic ability of hASCs, and highlights TWIST1 as a potential target to facilitate in vivo bone healing.
机译:间充质干细胞(MSCs)显示细胞疗法和再生医学的承诺。人脂肪组织组织衍生的干细胞(HASC)代表骨再生中的种子细胞有吸引力的来源。如何有效地改善骨组织工程中HASC的成骨分化已成为具有深刻翻译含义的重要问题。许多调节途径占据涉及转录因子和信号分子的哈氏的骨质发生分化。然而,这些因素如何彼此结合以调节HASCS osteogenic分化仍有待说明。高度保守的发育蛋白扭曲起到间充质细胞谱系中转录调节的关键作用。本研究研究了HASCS骨发生中的Twist1功能。我们的研究结果表明,随着体内施用时,Twist1 shRNA沉默的沉默增加了哈氏的成骨潜力及其骨骼再生能力。我们证明,通过对哈姆斯的扭曲1敲低观察到的成骨内发生容量通过内源性活化的BMP和ERK / FGF信号传导导致TAZ的上调,MSCS沿着成骨细胞谱系的转录调节剂分化。 BMP或ERK / FGF信号传导的抑制抑制了TAZ上调和SHTWIST1 HASC中的增强骨质发生。 Twist1和Taz两种击败的效果,因此,击败Twing1敲低的效果,鉴定TAZ作为下游介质,通过Twist1敲低敲击哈姆斯的骨质骨质分化。我们的功能性研究有助于更好地了解有助于哈氏的成骨的分子机制,并突出Twist1作为促进体内骨愈合的潜在目标。

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