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通过在胶原蛋白基质上进行内皮-间充质转分化(EnMT)获得的用于血管组织工程的血管平滑肌细胞。

Vascular smooth muscle cells for use in vascular tissue engineering obtained by endothelial-to-mesenchymal transdifferentiation (EnMT) on collagen matrices.

作者信息

Krenning Guido, Moonen Jan-Renier A J, van Luyn Marja J A, Harmsen Martin C

机构信息

Stem Cell and Tissue Engineering Research Group, Department of Pathology and Medical Biology, University Medical Center Groningen, University of Groningen, Groningen, The Netherlands.

出版信息

Biomaterials. 2008 Sep;29(27):3703-3711. doi: 10.1016/j.biomaterials.2008.05.034. Epub 2008 Jun 16.

Abstract

The discovery of the endothelial progenitor cell (EPC) has led to an intensive research effort into progenitor cell-based tissue engineering of (small-diameter) blood vessels. Herein, EPC are differentiated to vascular endothelial cells and serve as the inner lining of bioartificial vessels. As yet, a reliable source of vascular smooth muscle progenitor cells has not been identified. Currently, smooth muscle cells (SMC) are obtained from vascular tissue biopsies and introduce new vascular pathologies to the patient. However, since SMC are mesenchymal cells, endothelial-to-mesenchymal transdifferentiation (EnMT) may be a novel source of SMC. Here we describe the differentiation of smooth muscle-like cells through EnMT. Human umbilical cord endothelial cells (HUVEC) were cultured either under conditions favoring endothelial cell growth or under conditions favoring mesenchymal differentiation (TGF-beta and PDGF-BB). Expression of smooth muscle protein 22alpha and alpha-smooth muscle actin was induced in HUVEC cultured in mesenchymal differentiation media, whereas hardly any expression of these markers was found on genuine HUVEC. Transdifferentiated endothelial cells lost the ability to prevent thrombin formation in an in vitro coagulation assay, had increased migratory capacity towards PDGF-BB and gained contractile behavior similar to genuine vascular smooth muscle cells. Furthermore, we showed that EnMT could be induced in three-dimensional (3D) collagen sponges. In conclusion, we show that HUVEC can efficiently transdifferentiate into smooth muscle-like cells through endothelial-to-mesenchymal transdifferentiation. Therefore, EnMT might be used in future progenitor cell-based vascular tissue engineering approaches to obtain vascular smooth muscle cells, and circumvent a number of limitations encountered in current vascular tissue engineering strategies.

摘要

内皮祖细胞(EPC)的发现引发了对基于祖细胞的(小直径)血管组织工程的深入研究。在此,EPC分化为血管内皮细胞,并作为生物人工血管的内膜。迄今为止,尚未确定血管平滑肌祖细胞的可靠来源。目前,平滑肌细胞(SMC)是从血管组织活检中获得的,这会给患者带来新的血管病变。然而,由于SMC是间充质细胞,内皮-间充质转分化(EnMT)可能是SMC的一种新来源。在此我们描述通过EnMT分化出平滑肌样细胞的过程。人脐静脉内皮细胞(HUVEC)在有利于内皮细胞生长的条件下或在有利于间充质分化的条件下(转化生长因子-β和血小板衍生生长因子-BB)培养。在间充质分化培养基中培养的HUVEC中诱导了平滑肌蛋白22α和α-平滑肌肌动蛋白的表达,而在真正的HUVEC上几乎未发现这些标志物的任何表达。转分化的内皮细胞在体外凝血试验中失去了防止凝血酶形成的能力,对血小板衍生生长因子-BB的迁移能力增强,并获得了与真正血管平滑肌细胞相似的收缩行为。此外,我们表明EnMT可以在三维(3D)胶原海绵中诱导。总之,我们表明HUVEC可以通过内皮-间充质转分化有效地转分化为平滑肌样细胞。因此,EnMT可能在未来基于祖细胞的血管组织工程方法中用于获得血管平滑肌细胞,并规避当前血管组织工程策略中遇到的一些限制。

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