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Trichostatin a enhances vascular repair by injected human endothelial progenitors through increasing the expression of TAL1-dependent genes

机译:Trichostatin a通过增加人类TAL1依赖基因的表达来增强人类血管内皮祖细胞的血管修复作用

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A major goal of cell therapy for vascular diseases is to promote revascularization through the injection of endothelial stem/progenitor cells. The gene regulatory mechanisms that underlie endothelial progenitor-mediated vascular repair, however, remain elusive. Here, we identify the transcription factor TAL1/SCL as a key mediator of the vascular repair function of primary human endothelial colony-forming cells (ECFCs). Genome-wide analyses in ECFCs demonstrate that TAL1 activates a transcriptional program that promotes cell adhesion and migration. At the mechanistic level, we show that TAL1 upregulates the expression of migratory and adhesion genes through recruitment of the histone acetyltransferase p300. Based on these findings, we establish a strategy that enhances the revascularization efficiency of ECFCs after ischemia through ex vivo priming with the histone deacetylase inhibitor TSA. Thus, small molecule epigenetics drugs are effective tools for modifying the epigenome of stem/progenitor cells prior to transplantation as a means to enhance their therapeutic potential.
机译:用于血管疾病的细胞疗法的主要目标是通过注射内皮干/祖细胞来促进血运重建。然而,内皮祖细胞介导的血管修复基础的基因调控机制仍然难以捉摸。在这里,我们确定转录因子TAL1 / SCL是主要的人内皮细胞集落形成细胞(ECFCs)的血管修复功能的关键介质。 ECFC中的全基因组分析表明,TAL1激活了促进细胞粘附和迁移的转录程序。在机制水平上,我们表明TAL1通过募集组蛋白乙酰转移酶p300上调迁移和粘附基因的表达。基于这些发现,我们建立了一种策略,可通过用组蛋白脱乙酰基酶抑制剂TSA进行体外引发来增强缺血后ECFC的血运重建效率。因此,小分子表观遗传学药物是在移植前修饰干/祖细胞表观基因组的有效工具,以此作为增强其治疗潜力的手段。

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