胚胎小鼠16三体心脏成纤维细胞与细胞外基质组分的异常相互作用。

W Carver
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引用次数: 6

摘要

16三体小鼠的心血管异常被认为是由心脏垫的发育和成熟改变引起的。细胞-细胞和细胞-细胞外基质(ECM)相互作用在心脏形态发生中起关键作用。为了开始研究细胞- ecm相互作用在异常16三体心脏发育中的潜在参与,从正常和16三体胚胎小鼠心脏中分离成纤维细胞。这些细胞的行为在涉及细胞- ecm相互作用的生物测定中进行了比较,包括细胞附着和胶原凝胶收缩。从正常和16三体胚胎心脏分离的成纤维细胞之间发现细胞- ecm相互作用的显著差异。与正常成纤维细胞相比,16三体细胞对胶原蛋白和层粘连蛋白的附着较差。16三体心脏成纤维细胞收缩胶原凝胶的效率也低于正常心脏成纤维细胞。细胞-ECM相互作用主要由整合素家族的ECM受体介导。在正常和16三体成纤维细胞的mRNA和蛋白水平上检测β 1整合素的表达。整合素表达分析表明,正常和16三体成纤维细胞产生的整合素的模式相似。这些结果表明,从胚胎16三体小鼠心脏分离的成纤维细胞与包括胶原和层粘连蛋白在内的几种ECM成分的相互作用效率低于正常小鼠胚胎的成纤维细胞。由于细胞- ecm相互作用在心脏缓冲层发育中起着重要作用,异常的相互作用可能导致16三体小鼠房室间隔形态发生缺陷。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Abnormal interactions of embryonic mouse trisomy 16 heart fibroblasts with extracellular matrix components in vitro.

Trisomy 16 mice have cardiovascular abnormalities thought to arise from altered development and maturation of the cardiac cushions. Cell-cell and cell-extracellular matrix (ECM) interactions play critical roles in heart morphogenesis. To begin to examine the potential involvement of cell-ECM interactions in abnormal trisomy 16 heart development, fibroblasts were isolated from normal and trisomy 16 embryonic mouse hearts. Behavior of these cells was compared in bioassays involving cell-ECM interactions including cell attachment and collagen gel contraction. Significant differences in cell-ECM interactions were found between fibroblasts isolated from normal and trisomy 16 embryonic hearts. Trisomy 16 cells attached poorly to collagen and laminin compared to normal fibroblasts. Trisomy 16 heart fibroblasts also contracted collagen gels less effectively than normal heart fibroblasts. Cell-ECM interactions are largely mediated by ECM receptors of the integrin family. Expression of beta 1 integrins was examined at the mRNA and protein levels in normal and trisomy 16 fibroblasts. Analyses of integrin expression indicated the pattern of integrins produced by normal and trisomy 16 fibroblasts to be similar. These results indicate that fibroblasts isolated from embryonic trisomy 16 mouse hearts interact with several ECM components including collagen and laminin less efficiently than fibroblasts from normal mouse embryos. As cell-ECM interactions play significant roles in cardiac cushion development, abnormal interactions may contribute to defective atrioventricular septal morphogenesis in the trisomy 16 mouse.

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