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Early Growth Response Genes Signaling Supports Strong Paracrine Capability of Mesenchymal Stem Cells

机译:早期生长反应基因信号支持间充质干细胞强大的旁分泌能力。

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MSCs provide a promising method for cell therapy through their wound healing and tissue regenerative properties. Originally, MSCs' role in wound healing was thought to be tied to their multipotency, but it is now accepted that MSCs mediate the healing process through their strong paracrine capability. EGF was shown to facilitatein vitroexpansion of MSCs without altering multipotency. Our previous data suggest that the molecular machinery underlying MSCs' strong paracrine capability lies downstream of EGFR signaling, and we focus on transcription factors EGR1 and EGR2. Evidence suggests that EGR1 regulates angiogenic and fibrogenic factor production in MSCs, and an EGFR-EGR1-EGFR ligands autocrine loop is one of the underlying mechanisms supporting their strong paracrine machinery through EGR1. EGR2 appears to regulate the expression of immunomodulatory molecules. Chronic nonhealing wounds are ischemic, inflammatory, and often fibrotic, and the hypoxic micro-environment of these wounds may compromise MSCs' wound healing propertiesin vivoby upregulating the EGR1's fibrogenic effects and downregulating the EGR2's immuno-modulatory effects. Thus, these transcription factors can be potential targets in the optimization of cell-based therapies. Further studyin vitrois required to understand MSCs' paracrine machinery and to optimize it as a tool for effective cell-based therapies.
机译:MSC通过其伤口愈合和组织再生特性提供了一种有前途的细胞疗法方法。最初,MSC在伤口愈合中的作用被认为与它们的多能性有关,但是现在人们公认,MSC通过其强大的旁分泌能力来介导愈合过程。 EGF已显示在不改变多能性的情况下促进了MSC的体外扩增。我们以前的数据表明,MSC具有强大的旁分泌能力的分子机制位于EGFR信号传导的下游,我们关注的是转录因子EGR1和EGR2。有证据表明,EGR1调节MSC中血管生成和纤维生成因子的产生,而EGFR-EGR1-EGFR配体自分泌环是通过EGR1支持其强大的旁分泌机制的潜在机制之一。 EGR2似乎调节免疫调节分子的表达。慢性不愈合伤口是缺血性,发炎性的,通常是纤维化的,这些伤口的低氧微环境可能通过上调EGR1的纤维化作用和下调EGR2的免疫调节作用而损害MSC在体内的伤口愈合特性。因此,这些转录因子可能是优化基于细胞疗法的潜在靶标。需要进一步的体外研究来了解MSC的旁分泌机制,并将其优化为有效的基于细胞的疗法的工具。

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