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细胞间相互作用和TGF-β/ALK5信号通路对主动脉外膜成纤维细胞与微血管内皮细胞共培养中新血管生成的调控

Regulation of neovasculogenesis in co-cultures of aortic adventitial fibroblasts and microvascular endothelial cells by cell-cell interactions and TGF-β/ALK5 signaling.

作者信息

Scott Rebecca A, Fowler Eric W, Jia Xinqiao, Kiick Kristi L, Akins Robert E

机构信息

Department of Materials Science and Engineering, University of Delaware, Newark, Delaware, United States of America.

Nemours-Alfred I. duPont Hospital for Children, Wilmington, Delaware, United States of America.

出版信息

PLoS One. 2020 Dec 28;15(12):e0244243. doi: 10.1371/journal.pone.0244243. eCollection 2020.

Abstract

Adventitial fibroblasts (AFs) are critical mediators of vascular remodeling. However, the contributions of AFs towards development of vasculature and the specific mechanisms by which these cells regulate physiological expansion of the vasa vasorum, the specialized microvasculature that supplies nutrients to the vascular wall, are not well understood. To determine the regulatory role of AFs in microvascular endothelial cell (MVEC) neovasculogenesis and to investigate the regulatory pathways utilized for communication between the two cell types, AFs and MVECs were cultured together in poly(ethylene glycol)-based hydrogels. Following preliminary evaluation of a set of cell adhesion peptides (AG10, AG73, A2G78, YIGSR, RGD), 7.5wt% hydrogels containing 3 mM RGD were selected as these substrates did not initiate primitive tubule structures in 3D MVEC monocultures, thus providing a passive platform to study AF-MVEC interaction. The addition of AFs to hydrogels promoted MVEC viability; however, increasing AF density within hydrogels stimulated MVEC proliferation, increased microvessel density and size, and enhanced deposition of basement membrane proteins, collagen IV and laminin. Importantly, AF-MVEC communication through the transforming growth factor beta (TGF-β)/activin receptor-like kinase 5 (ALK5) signaling pathway was observed to mediate microvessel formation, as inhibition of ALK5 significantly decreased MVEC proliferation, microvessel formation, mural cell recruitment, and basement membrane production. These data indicate that AFs regulate MVEC neovasculogenesis and suggest that therapeutics targeting the TGF-β/ALK5 pathway may be useful for regulation of vasculogenic and anti-vasculogenic responses.

摘要

外膜成纤维细胞(AFs)是血管重塑的关键介质。然而,AFs对血管系统发育的贡献以及这些细胞调节血管滋养管(为血管壁提供营养的特殊微血管)生理扩张的具体机制尚不清楚。为了确定AFs在微血管内皮细胞(MVEC)新生血管形成中的调节作用,并研究两种细胞类型之间用于通讯的调节途径,将AFs和MVECs在基于聚乙二醇的水凝胶中共同培养。在对一组细胞粘附肽(AG10、AG73、A2G78、YIGSR、RGD)进行初步评估后,选择含有3 mM RGD的7.5wt%水凝胶,因为这些底物在3D MVEC单培养中不会引发原始小管结构,从而提供了一个被动平台来研究AF-MVEC相互作用。向水凝胶中添加AFs可促进MVEC的活力;然而,增加水凝胶中AF的密度会刺激MVEC增殖,增加微血管密度和大小,并增强基底膜蛋白、IV型胶原蛋白和层粘连蛋白的沉积。重要的是,观察到通过转化生长因子β(TGF-β)/激活素受体样激酶5(ALK5)信号通路的AF-MVEC通讯介导了微血管形成,因为抑制ALK5会显著降低MVEC增殖、微血管形成、壁细胞募集和基底膜产生。这些数据表明AFs调节MVEC新生血管形成,并表明靶向TGF-β/ALK5途径的治疗方法可能有助于调节血管生成和抗血管生成反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1b20/7769260/16ca3ac6806b/pone.0244243.g001.jpg

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