首页> 外文期刊>Hypertension: An Official Journal of the American Heart Association >Chronic AT(1) blockade stimulates extracellular collagen type I degradation and reverses myocardial fibrosis in spontaneously hypertensive rats.
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Chronic AT(1) blockade stimulates extracellular collagen type I degradation and reverses myocardial fibrosis in spontaneously hypertensive rats.

机译:慢性AT(1)阻断刺激自发性高血压大鼠的细胞外I型胶原降解并逆转心肌纤维化。

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It has been suggested that left ventricular fibrosis in spontaneously hypertensive rats (SHR) is the result of both exaggerated collagen synthesis and insufficient collagen degradation. We have shown previously that chronic treatment with the angiotensin II type 1 receptor antagonist losartan results in diminished synthesis of collagen type I molecules and reversal of myocardial fibrosis in SHR. This study was designed to investigate whether losartan also affects the extracellular degradation of collagen type I fibers in the left ventricle of SHR. The study was performed in 30-week-old normotensive Wistar-Kyoto rats (WKY), untreated SHR, and SHR treated with orally administered losartan (20 mg/kg per day) for 14 weeks before they were killed. Ventricular collagenase activity was determined by degradation of [(14)C]collagen with tissue extracts. Ventricular expression of tissue inhibitor of metalloproteinases 1 (TIMP-1) mRNA was analyzed by Northern blot. A histomorphometric study of the left ventricle was performed in all rats. Compared with WKY, SHR exhibited left ventricular hypertrophy, increased (P<0.05) blood pressure, left ventricular collagen volume fraction and TIMP-1 mRNA, and diminished (P<0.05) collagenase activity. After the treatment period, blood pressure was higher (P<0.05) in losartan-treated SHR than in WKY, and no significant differences were noted in the remaining parameters between the 2 strains of rats. Compared with untreated SHR, treated SHR showed no left ventricular hypertrophy, diminished (P<0.05) blood pressure, left ventricular collagen volume fraction and TIMP-1 mRNA, and increased (P<0.05) collagenase activity. These results suggest that the transcription of the TIMP-1 gene is upregulated in the hypertrophied and fibrotic left ventricle of adult SHR. Upregulation of TIMP-1 may account for diminished collagenase activity in the myocardium of those rats. Chronic angiotensin II type 1 receptor blockade with losartan resulted in inhibition of TIMP-1 expression and stimulation of collagenase activity in the left ventricle of SHR. It is proposed that angiotensin II may facilitate myocardial fibrosis in SHR by depressing the collagenase-mediated extracellular degradation of collagen fibers.
机译:已经提出,自发性高血压大鼠(SHR)的左心室纤维化是胶原合成过度和胶原降解不足的结果。先前我们已经表明,用血管紧张素II 1型受体拮抗剂洛沙坦进行长期治疗会导致I型胶原分子合成减少以及SHR中心肌纤维化的逆转。这项研究旨在调查氯沙坦是否也影响SHR左心室中I型胶原纤维的细胞外降解。这项研究是在30周大的血压正常的Wistar-Kyoto大鼠(WKY),未经治疗的SHR和经口服氯沙坦(每天20 mg / kg)治疗的SHR处死前进行的,历时14周。心室胶原酶活性是通过组织提取物降解[(14)C]胶原蛋白来确定的。通过Northern印迹分析金属蛋白酶1(TIMP-1)mRNA组织抑制剂的心室表达。在所有大鼠中进行左心室的组织形态计量学研究。与WKY相比,SHR表现出左心室肥大,血压升高(P <0.05),左心室胶原蛋白体积分数和TIMP-1 mRNA降低,并且胶原酶活性降低(P <0.05)。在治疗期之后,氯沙坦治疗的SHR的血压高于WKY(P <0.05),并且在两个大鼠品系之间的其余参数中未发现显着差异。与未治疗的SHR相比,治疗的SHR无左心室肥大,血压降低(P <0.05),左心室胶原蛋白体积分数和TIMP-1 mRNA升高,胶原酶活性增加(P <0.05)。这些结果表明,成年SHR的肥大和纤维化左心室中TIMP-1基因的转录上调。 TIMP-1的上调可能解释了这些大鼠心肌中胶原酶活性的降低。氯沙坦对慢性血管紧张素II 1型受体的阻滞导致SHR左心室TIMP-1表达的抑制和胶原酶活性的刺激。有人提出,血管紧张素II可以通过抑制胶原酶介导的胶原纤维细胞外降解来促进SHR中的心肌纤维化。

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