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层粘连蛋白通过调节 VEGF 的摄取促进 3D 体外胶原支架中的血管网络形成。

Laminin promotes vascular network formation in 3D in vitro collagen scaffolds by regulating VEGF uptake.

机构信息

University College London Tissue Repair and Engineering Centre, Institute of Orthopaedics and Musculoskeletal Sciences, Division of Surgery and Interventional Science, Stanmore Campus HA7 4LP, United Kingdom.

Centre for Neuroscience & Trauma, Blizard Institute of Cell and Molecular Science Barts and The London School of Medicine and Dentistry, 4 Newark Street Whitechapel London E1 2AT, United Kingdom.

出版信息

Exp Cell Res. 2014 Sep 10;327(1):68-77. doi: 10.1016/j.yexcr.2014.05.012. Epub 2014 Jun 5.

Abstract

Angiogenesis is an essential neovascularisation process, which if recapitulated in 3D in vitro, will provide better understanding of endothelial cell (EC) behaviour. Various cell types and growth factors are involved, with vascular endothelial growth factor (VEGF) and its receptors VEGFR1 and VEGFR2 key components. We were able to control the aggregation pattern of ECs in 3D collagen hydrogels, by varying the matrix composition and/or having a source of cells signalling angiogenic proteins. These aggregation patterns reflect the different developmental pathways that ECs take to form different sized tubular structures. Cultures with added laminin and thus increased expression of α6 integrin showed a significant increase (p<0.05) in VEGFR2 positive ECs and increased VEGF uptake. This resulted in the end-to-end network aggregation of ECs. In cultures without laminin and therefore low α6 integrin expression, VEGFR2 levels and VEGF uptake were significantly lower (p<0.05). These ECs formed contiguous sheets, analogous to the 'wrapping' pathway in development. We have identified a key linkage between integrin expression on ECs and their uptake of VEGF, regulated by VEGFR2, resulting in different aggregation patterns in 3D.

摘要

血管生成是一种基本的新血管生成过程,如果在 3D 体外重现,将有助于更好地了解内皮细胞 (EC) 的行为。涉及各种细胞类型和生长因子,其中血管内皮生长因子 (VEGF) 及其受体 VEGFR1 和 VEGFR2 是关键组成部分。我们能够通过改变基质组成或提供细胞信号血管生成蛋白的来源,控制 3D 胶原水凝胶中 EC 的聚集模式。这些聚集模式反映了 EC 形成不同大小管状结构的不同发育途径。添加层粘连蛋白的培养物,从而增加 α6 整合素的表达,显示出 VEGFR2 阳性 EC 的显著增加 (p<0.05) 和 VEGF 摄取的增加。这导致 EC 的末端到末端网络聚集。在没有层粘连蛋白且 α6 整合素表达水平较低的培养物中,VEGFR2 水平和 VEGF 摄取显著降低 (p<0.05)。这些 EC 形成连续的薄片,类似于发育过程中的“包裹”途径。我们已经确定了 EC 上整合素表达与其摄取 VEGF 的关键联系,这受 VEGFR2 调节,从而导致 3D 中不同的聚集模式。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/50ae/4155934/fb678e851323/gr1.jpg

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