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Patient-specific cardiovascular progenitor cells derived from integration-free induced pluripotent stem cells for vascular tissue regeneration

机译:源自患者无特异性诱导的多能干细胞用于血管组织再生的患者特异性心血管祖细胞

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Tissue-engineered blood vessels (TEBVs) are promising in regenerating a live vascular replacement. However, the vascular cell source is limited, and it is crucial to develop a scaffold that accommodates new type of vascular progenitor cells and facilitates in vivo lineage specification of the cells into functional vascular smooth muscle cells (VSMCs) to regenerate vascular tissue. In the present study, integration-free human induced pluripotent stem cells (hiPSCs) were established from patient peripheral blood mononuclear cells through episomal vector nucleofection of reprogramming factors. The established hiPSCs were then induced into mesoderm-originated cardiovascular progenitor cells (CVPCs) with a highly efficient directed lineage specification method. The derived CVPCs were demonstrated to be able to differentiate into functional VSMCs. Subcutaneous implantation of CVPCs seeded on macroporous nanofibrous poly(t-lactide) scaffolds led to in vivo VSMC lineage specification and matrix deposition inside the scaffolds. In summary, we established integration-free patient-specific hiPSCs from peripheral blood mononuclear cells, derived CVPCs through directed lineage specification, and developed an advanced scaffold for these progenitor cells to further differentiate in vivo into VSMCs and regenerate vascular tissue in a subcutaneous implantation model. This study has established an efficient patient-specific approach towards in vivo regeneration of vascular tissue. (C) 2015 Elsevier Ltd. All rights reserved.
机译:组织工程血管(TEBV)在再生活体血管替代中很有希望。然而,血管细胞的来源是有限的,开发一种能够容纳新型血管祖细胞并促进体内细胞谱系分化为功能性血管平滑肌细胞(VSMC)以再生血管组织的支架至关重要。在本研究中,通过重编程因子的游离载体核转染,从患者外周血单核细胞建立了无整合的人类诱导多能干细胞(hiPSC)。然后使用高效的定向谱系指定方法将已建立的hiPSC诱导入中胚层起源的心血管祖细胞(CVPC)。证明衍生的CVPC能够分化为功能性VSMC。皮下植入接种在大孔纳米纤维聚(t-丙交酯)支架上的CVPC导致体内VSMC谱系规格和基质在支架内的沉积。总而言之,我们从外周血单核细胞建立了无整合的患者特异性hiPSC,通过定向谱系规范获得了CVPC,并为这些祖细胞开发了先进的支架,以进一步在体内分化为VSMC,并在皮下植入模型中再生血管组织。 。这项研究建立了一种有效的针对患者的血管组织体内再生方法。 (C)2015 Elsevier Ltd.保留所有权利。

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