Hori Yasutomo, Touei Daisuke, Saitoh Ryuta, Yamagishi Maki, Kanai Kazutaka, Hoshi Fumio, Itoh Naoyuki
Laboratory of Small Animal Internal Medicine, School of Veterinary Medicine, Kitasato University.
Biol Pharm Bull. 2017;40(10):1716-1723. doi: 10.1248/bpb.b17-00291.
β-Adrenergic receptor (β-AR)-induction of collagen-I synthesis is partially mediated by the cardiac mineralocorticoid receptor (MR) system. However, it remains unclear whether the selective MR antagonist, eplerenone, inhibits collagen-I synthesis induced by β-AR stimulation. We investigated the effects of eplerenone on the responses to a non-selective β-AR agonist, isoproterenol, which induced collagen-I synthesis in primary cardiac fibroblasts (CFs) and the left ventricle. mRNAs encoding the MR and 11β-hydroxysteroid dehydrogenase type I (11β-HSD1) were evident in the left ventricle and primary CFs. mRNAs encoding the CYP family 11 subfamily B member 2 (CYP11-B2) were not detected, even after isoproterenol treatment. In vivo, isoproterenol induced collagenous fiber accumulation in the left ventricle. The phosphorylation of extracellular signal-regulated kinase 1/2 (ERK1/2), 11β-HSD1 levels, and mRNA/protein levels of collagen-I increased upon exposure to isoproterenol, but these increases were inhibited by eplerenone co-treatment. In primary CFs, isoproterenol increased the phosphorylation of ERK1/2 and the expression levels of both 11β-HSD1 and collagen-I; these isoproterenol-attributable effects were inhibited by co-treatment with eplerenone and PD98059, a specific inhibitor of mitogen-activated protein kinase/ERK kinase activity. The results suggest that 11β-HSD1 but not CYP11-B2 is expressed in primary CFs. Eplerenone inhibited isoproterenol-induced ERK1/2 phosphorylation and expression of 11β-HSD1 and collagen-I in primary CFs, as well as the progression of cardiac fibrosis in the left ventricle. Therefore, eplerenone inhibited the isoproterenol-induced increases in 11β-HSD1 and collagen-I expression in primary CFs, and progression of cardiac fibrosis in the left ventricle.
β-肾上腺素能受体(β-AR)诱导的Ⅰ型胶原蛋白合成部分由心脏盐皮质激素受体(MR)系统介导。然而,选择性MR拮抗剂依普利酮是否能抑制β-AR刺激诱导的Ⅰ型胶原蛋白合成仍不清楚。我们研究了依普利酮对原发性心脏成纤维细胞(CFs)和左心室中由非选择性β-AR激动剂异丙肾上腺素诱导的反应的影响,异丙肾上腺素可诱导Ⅰ型胶原蛋白合成。编码MR和Ⅰ型11β-羟基类固醇脱氢酶(11β-HSD1)的mRNA在左心室和原发性CFs中明显表达。即使在异丙肾上腺素处理后,也未检测到编码细胞色素P450家族11亚家族B成员2(CYP11-B2)的mRNA。在体内,异丙肾上腺素诱导左心室胶原纤维积聚。暴露于异丙肾上腺素后,细胞外信号调节激酶1/2(ERK1/2)的磷酸化、11β-HSD1水平以及Ⅰ型胶原蛋白的mRNA/蛋白水平均升高,但依普利酮联合处理可抑制这些升高。在原发性CFs中,异丙肾上腺素增加了ERK1/2的磷酸化以及11β-HSD1和Ⅰ型胶原蛋白的表达水平;异丙肾上腺素引起的这些效应被依普利酮和PD98059(一种丝裂原活化蛋白激酶/ERK激酶活性的特异性抑制剂)联合处理所抑制。结果表明,原发性CFs中表达的是11β-HSD1而非CYP11-B2。依普利酮抑制了原发性CFs中异丙肾上腺素诱导的ERK1/2磷酸化以及11β-HSD1和Ⅰ型胶原蛋白的表达,以及左心室心脏纤维化的进展。因此,依普利酮抑制了原发性CFs中异丙肾上腺素诱导的11β-HSD1和Ⅰ型胶原蛋白表达的增加,以及左心室心脏纤维化的进展。