Haudek Sandra B, Gupta Damon, Dewald Oliver, Schwartz Robert J, Wei Lei, Trial JoAnn, Entman Mark L
DeBakey Heart Center, Baylor College of Medicine and The Methodist Hospital, One Baylor Plaza F620, Houston TX 77030, USA.
Cardiovasc Res. 2009 Aug 1;83(3):511-8. doi: 10.1093/cvr/cvp135. Epub 2009 Apr 30.
Highly proliferative, CD34+/CD45+ fibroblasts derived from monocytic, blood-borne precursor cells play a critical role in the development of fibrosis in a murine ischaemic/reperfusion cardiomyopathy (I/RC) model. The differentiation of human monocytes into fibroblasts in vitro occurs after transendothelial migration (TEM) induced by monocyte chemoattractant protein 1 (MCP-1). Because Rho-associated kinase-1 (ROCK-1) has been implicated in fibrosis and leukocyte TEM, we investigated its involvement in I/RC.
We subjected mice with genetic deletion of ROCK-1 to I/RC. We found that ROCK-1(-/-) mice did not develop the fibrosis and cardiac dysfunction characteristic for I/RC: compared with wild-type, ROCK-1(-/-) hearts showed markedly lower numbers of I/RC-induced alpha-smooth muscle actin+ fibroblasts and CD34+/CD45+ fibroblast precursors. Isolated cardiac fibroblasts from ROCK-1(-/-) mice undergoing I/RC were large and slowly proliferating, similar to fibroblasts isolated from sham-treated hearts. We also performed in vitro assays in which human peripheral blood mononuclear cells (PBMC) migrated through endothelial cells in response to MCP-1. Prior to migration, PBMC were incubated with ROCK-1-targeting small interfering RNA to silence ROCK-1 expression. We found that an 80% reduction of ROCK-1 protein did not inhibit TEM, but significantly reduced the amount of mononuclear cells that differentiated into fibroblasts by >20-fold.
Our data implicate an important role for ROCK-1 in the differentiation, but not in the TEM of monocytes that mature into cardiac fibroblasts. These cells mediate non-adaptive fibrosis.
源自单核细胞、血源前体细胞的高增殖性CD34+/CD45+成纤维细胞在小鼠缺血/再灌注心肌病(I/RC)模型的纤维化发展中起关键作用。人单核细胞在单核细胞趋化蛋白1(MCP-1)诱导的跨内皮迁移(TEM)后在体外分化为成纤维细胞。由于Rho相关激酶-1(ROCK-1)与纤维化和白细胞TEM有关,我们研究了其在I/RC中的作用。
我们对ROCK-1基因缺失的小鼠进行I/RC处理。我们发现ROCK-1(-/-)小鼠未出现I/RC特有的纤维化和心脏功能障碍:与野生型相比,ROCK-1(-/-)心脏中I/RC诱导的α-平滑肌肌动蛋白阳性成纤维细胞和CD34+/CD45+成纤维细胞前体数量明显减少。从经历I/RC的ROCK-1(-/-)小鼠分离的心脏成纤维细胞体积大且增殖缓慢,类似于从假手术处理心脏分离的成纤维细胞。我们还进行了体外试验,其中人外周血单核细胞(PBMC)响应MCP-1穿过内皮细胞迁移。在迁移之前,将PBMC与靶向ROCK-1的小干扰RNA孵育以沉默ROCK-1表达。我们发现ROCK-1蛋白减少80%并不抑制TEM,但显著减少分化为成纤维细胞的单核细胞数量>20倍。
我们的数据表明ROCK-1在成熟为心脏成纤维细胞的单核细胞的分化中起重要作用,但在TEM中不起作用。这些细胞介导非适应性纤维化。