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成纤维细胞生长因子(FGF)-4可在早期瓣膜小叶形成过程中诱导心脏垫间充质细胞增殖。

Fibroblast growth factor (FGF)-4 can induce proliferation of cardiac cushion mesenchymal cells during early valve leaflet formation.

作者信息

Sugi Yukiko, Ito Naoki, Szebenyi Györgyi, Myers Kioina, Fallon John F, Mikawa Takashi, Markwald Roger R

机构信息

Department of Cell Biology and Anatomy and Cardiovascular Developmental Biology Center, Medical University of South Carolina, 171 Ashley Avenue, Charleston, SC 29425, USA.

出版信息

Dev Biol. 2003 Jun 15;258(2):252-63. doi: 10.1016/s0012-1606(03)00099-x.

Abstract

While much has been learned about how endothelial cells transform to mesenchyme during cardiac cushion formation, there remain fundamental questions about the developmental fate of cushions. In the present work, we focus on the growth and development of cushion mesenchyme. We hypothesize that proliferative expansion and distal elongation of cushion mesenchyme mediated by growth factors are the basis of early valve leaflet formation. As a first step to test this hypothesis, we have localized fibroblast growth factor (FGF)-4 protein in cushion mesenchymal cells at the onset of prevalve leaflet formation in chick embryos (Hamburger and Hamilton stage 20-25). Ligand distribution was correlated with FGF receptor (FGFR) expression. In situ hybridization data indicated that FGFR3 mRNA was confined to the endocardial rim of the atrioventricular (AV) cushion pads, whereas FGFR2 was expressed exclusively in cushion mesenchymal cells. FGFR1 expression was detected in both endocardium and cushion mesenchyme as well as in myocardium. To determine whether the FGF pathways play regulatory roles in cushion mesenchymal cell proliferation and elongation into prevalvular structure, FGF-4 protein was added to the cushion mesenchymal cells explanted from stage 24-25 chick embryos. A significant increase in proliferative ability was strongly suggested in FGF-4-treated mesenchymal cells as judged by the incorporation of 5'-bromodeoxyuridine (BrdU). To determine whether cushion cells responded similarly in vivo, a replication-defective retrovirus encoding FGF-4 with the reporter, bacterial beta-galactosidase was microinjected into stage 18 chick cardiac cushion mesenchyme along the inner curvature where AV and outflow cushions converge. As compared with vector controls, overexpression of FGF-4 clearly induced expansion of cushion mesenchyme toward the lumen. To further test the proliferative effect of FGF-4 in cardiac cushion expansion in vivo (ovo), FGF-4 protein was microinjected into stage 18 chick inner curvature. An assay for BrdU incorporation indicated a significant increase in proliferative ability in FGF-4 microinjected cardiac cushion mesenchyme as compared with BSA-microinjected controls. Together, these results suggest a role of FGF-4 for cardiac valve leaflet formation through proliferative expansion of cushion mesenchyme.

摘要

虽然在心脏心垫形成过程中内皮细胞如何转变为间充质方面已经有了很多了解,但关于心垫的发育命运仍存在一些基本问题。在本研究中,我们聚焦于心垫间充质的生长和发育。我们假设生长因子介导的心垫间充质的增殖性扩张和远端延伸是早期瓣膜小叶形成的基础。作为验证这一假设的第一步,我们在鸡胚(汉伯格和汉密尔顿第20 - 25期)瓣膜小叶形成开始时,在心垫间充质细胞中定位了成纤维细胞生长因子(FGF)-4蛋白。配体分布与FGF受体(FGFR)表达相关。原位杂交数据表明,FGFR3 mRNA局限于房室(AV)心垫垫的心内膜边缘,而FGFR2仅在心垫间充质细胞中表达。FGFR1表达在心内膜、心垫间充质以及心肌中均有检测到。为了确定FGF信号通路是否在心垫间充质细胞增殖以及向瓣膜前结构延伸中发挥调节作用,将FGF - 4蛋白添加到从第24 - 25期鸡胚分离出的心垫间充质细胞中。通过5'-溴脱氧尿苷(BrdU)掺入判断,FGF - 4处理的间充质细胞增殖能力显著增强。为了确定心垫细胞在体内是否有类似反应,将携带报告基因细菌β - 半乳糖苷酶的编码FGF - 4的复制缺陷型逆转录病毒显微注射到第18期鸡心脏心垫间充质中,沿着房室和流出道心垫汇合处的内曲率。与载体对照相比,FGF - 4的过表达明显诱导心垫间充质向管腔扩张。为了进一步测试FGF - 4在体内(卵内)心脏心垫扩张中的增殖作用,将FGF - 4蛋白显微注射到第18期鸡的内曲率处。BrdU掺入检测表明,与注射牛血清白蛋白(BSA)的对照相比,FGF - 4显微注射的心脏心垫间充质增殖能力显著增强。总之,这些结果表明FGF - 4通过心垫间充质的增殖性扩张在心脏瓣膜小叶形成中发挥作用。

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