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在具有间质流动的三维血管内皮生长因子-纤维蛋白-胶原蛋白基质中构建的血液和淋巴管毛细血管。

Engineered blood and lymphatic capillaries in 3-D VEGF-fibrin-collagen matrices with interstitial flow.

作者信息

Helm Cara-Lynn E, Zisch Andreas, Swartz Melody A

机构信息

Chemical and Biological Engineering Department, Northwestern University, Evanston, IL, USA.

出版信息

Biotechnol Bioeng. 2007 Jan 1;96(1):167-76. doi: 10.1002/bit.21185.

Abstract

In vitro endothelial cell organization into capillaries is a long standing challenge of tissue engineering. We recently showed the utility of low level interstitial flow in guiding the organization of endothelial cells through a 3-D fibrin matrix-containing covalently bound vascular endothelial growth factor (VEGF). Here this synergistic phenomenon was extended to explore the effects of matrix composition on in vitro capillary morphogenesis of human blood versus lymphatic endothelial cells (BECs and LECs). Different mixtures of fibrin and collagen were used in conjunction with constant concentrations of matrix-bound VEGF and slow interstitial flow over 10 days. Interestingly, the BECs and LECs each showed a distinct preference in terms of organization for matrix composition: LECs organized the most extensively in a fibrin-only matrix, while BEC organization was optimized in the compliant collagen-containing matrices. Furthermore, the BECs and LECs produced architecturally different structures; while BECs organized in thick, branched networks containing wide lumen, the LECs were elongated into slender, overlapping networks with fine lumen. These data demonstrate the importance of the 3-D matrix composition in facilitating and coordinating BEC and LEC capillary morphogenesis, which is important for in vitro vascularization of engineered tissues.

摘要

体外将内皮细胞组织成毛细血管是组织工程领域长期面临的一项挑战。我们最近展示了低水平的间质流在引导内皮细胞通过含有共价结合血管内皮生长因子(VEGF)的三维纤维蛋白基质进行组织构建方面的效用。在此,这种协同现象得到扩展,以探究基质组成对人血液内皮细胞和淋巴管内皮细胞(BECs和LECs)体外毛细血管形态发生的影响。在10天内,将不同比例的纤维蛋白和胶原蛋白混合物与恒定浓度的基质结合VEGF以及缓慢的间质流结合使用。有趣的是,BECs和LECs在基质组成的组织构建方面各自表现出明显的偏好:LECs在仅含纤维蛋白的基质中组织构建最为广泛,而BECs在含有胶原蛋白的柔性基质中组织构建最为优化。此外,BECs和LECs产生了结构上不同的结构;BECs组织成含有宽管腔的厚分支网络,而LECs则伸长形成具有细管腔的细长、重叠网络。这些数据证明了三维基质组成在促进和协调BECs和LECs毛细血管形态发生中的重要性,这对于工程组织的体外血管化至关重要。

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