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2D and 3D collagen and fibrin biopolymers promote specific ECM and integrin gene expression by vascular smooth muscle cells

机译:2D和3D胶原蛋白和纤维蛋白生物聚合物通过血管平滑肌细胞促进特异性ECM和整联蛋白基因表达

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摘要

Collagen Type I and fibrin are polymeric proteins commonly used in the field of regenerative medicine as the foundational matrix of engineered tissues. We examined the response of vascular smooth muscle cells (VSMC) to both two-dimensional (2D) substrates as well as three-dimensional (3D) matrices of these biopolymers. Pure collagen Type I, pure fibrin and composite matrices consisting of 1: 1 mixtures of collagen and fibrin were studied. Relative gene expression of three ECM molecules (collagen Type I and III, and tropoelastin) and three integrin subunits (integrins alpha 1, beta 1 and beta 3) was determined over 7 days in culture using quantitative RT-PCR. Expression of all of these marker genes was up-regulated in 3D matrices, relative to 2D substrates. Tropoelastin, integrin alpha 1 and integrin beta 1 were highest in collagen matrices, while collagen III and integrin beta 3 expression were highest in pure fibrin, and collagen I expression was highest in the collagen -fibrin composite materials. Both the compositional and temporal expression patterns of these specific ECM-related genes were suggestive of a wound healing response. These results illuminate the short-term responses of VSMC to 2D and 3D biopolymer matrices, and have relevance to tissue engineering and cardiovascular biology.
机译:I型胶原蛋白和纤维蛋白是聚合医学领域中常用的聚合蛋白,是工程组织的基础基质。我们检查了血管平滑肌细胞(VSMC)对这些生物聚合物的二维(2D)基质以及三维(3D)基质的反应。研究了I型纯胶原蛋白,纯纤维蛋白和由胶原蛋白和纤维蛋白的1:1混合物组成的复合基质。使用定量RT-PCR,在培养的7天中确定了三个ECM分子(I型和III型胶原,原弹性蛋白)和三个整联蛋白亚基(整联蛋白α1,β1和β3)的相对基因表达。相对于2D底物,所有这些标记基因的表达在3D矩阵中上调。弹性蛋白,整联蛋白α1和整联蛋白β1在胶原蛋白基质中最高,而胶原蛋白III和整联蛋白β3的表达在纯纤维蛋白中最高,而胶原蛋白I的表达在胶原蛋白纤维蛋白复合材料中最高。这些特定的ECM相关基因的组成和时间表达模式都暗示了伤口愈合反应。这些结果阐明了VSMC对2D和3D生物聚合物基质的短期反应,并与组织工程和心血管生物学有关。

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