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压力超负荷下仓鼠心脏中糜酶和血管紧张素转换酶的时间依赖性表达

Time-dependent expression of chymase and angiotensin converting enzyme in the hamster heart under pressure overload.

作者信息

Li Peng, Chen Peng-Ming, Wang Shi-Wen, Chen Lan-Ying

机构信息

Cardiovascular Institute and Fu Wai Hospital, Chinese Academy of Medical Sciences and Peking Union Medical College, Beijing, PR China.

出版信息

Hypertens Res. 2002 Sep;25(5):757-62. doi: 10.1291/hypres.25.757.

Abstract

The role of a dual angiotensin (Ang) II-forming pathway from the local renin angiotensin system (RAS) of the cardiac tissue was determined in a hamster model of cardiac hypertrophy. Time-dependent expressions of chymase and angiotensin converting enzyme (ACE) genes and their enzymes activities, and Ang II levels were measured in the hamster heart at 3 days, and at 4 and 8 weeks after pressure overload. Cardiac hypertrophy was induced by an operation to constrict the abdominal aorta. Compared to the sham-operated group, the cardiomyocyte diameters of hamster hearts at 3 days after overload underwent no obvious changes, while those at 4 and 8 weeks after overload increased markedly (p<0.01), and both transcriptional expressions of chymase and ACE genes gradually increased in the hamster hearts at 3 days, and at 4 and 8 weeks after overload, but the transcriptional expressions of angiotensin II type 1 receptor (AT1R) gene gradually decreased. Chymase and ACE activities (U/mg) (0.441+/-0.040 vs. 0.175+/-0.014, 0.446+/-0.036 vs. 0.160+/-0.016 and 0.522+/-0.014 vs. 0.148+/-0.038) (p<0.01) and (0.142+/-0.023 vs. 0.056+/-0.038, 0.317+/-0.017 vs. 0.079+/-0.016 and 0.466+/-0.010 vs. 0.098+/-0.003) (p<0.01), respectively and Ang II levels (pg/g) (98.7+/-4.5 vs. 71.2+/-4.9, 134.4+/-7.8 vs. 71.9+/-12.8 and 151.6+/-10.1 vs. 80.7+/-3.0) gradually increased in the hamster hearts, vs. sham treatment, respectively, at 3 days, and at 4 and 8 weeks after overload. However, the increases in chymase and ACE activities were much higher than those in their respective mRNA levels, and the levels of chymase activities were also higher than those of ACE activities during the development of cardiac hypertrophy. The results suggested that the increase in Ang II levels via the dual pathway of Ang II formation by chymase and ACE plays an important role in the cardiac hypertrophy of hamsters caused by the overloaded state. Importantly, in the non-hypertrophied hamster heart in the early stage after overload (at 3 days), chymase could be activated by mechanical stress in advance of an increase in its mRNA, and the Ang II level increased significantly.

摘要

在心脏肥大的仓鼠模型中,确定了心脏组织局部肾素血管紧张素系统(RAS)的双血管紧张素(Ang)II生成途径的作用。在压力超负荷后3天、4周和8周,测量仓鼠心脏中糜酶和血管紧张素转换酶(ACE)基因的时间依赖性表达及其酶活性以及Ang II水平。通过缩窄腹主动脉的手术诱导心脏肥大。与假手术组相比,超负荷后3天仓鼠心脏的心肌细胞直径无明显变化,而超负荷后4周和8周心肌细胞直径显著增加(p<0.01),并且在超负荷后3天、4周和8周,仓鼠心脏中糜酶和ACE基因的转录表达均逐渐增加,但血管紧张素II 1型受体(AT1R)基因的转录表达逐渐降低。与假手术组相比,在超负荷后3天、4周和8周,仓鼠心脏中糜酶和ACE的活性(U/mg)(分别为0.441±0.040对0.175±0.014、0.446±0.036对0.160±0.016和0.522±0.014对0.148±0.038)(p<0.01)以及(0.142±0.023对0.056±0.038、0.317±0.017对0.079±0.016和0.466±0.010对0.098±0.003)(p<0.01)以及Ang II水平(pg/g)(分别为98.7±4.5对71.2±4.9、134.4±7.8对71.9±12.8和151.6±10.1对80.7±3.0)均逐渐升高。然而,在心脏肥大发展过程中,糜酶和ACE活性的增加远高于其各自mRNA水平的增加,并且糜酶活性水平也高于ACE活性水平。结果表明,通过糜酶和ACE形成Ang II的双途径导致的Ang II水平升高在超负荷状态引起的仓鼠心脏肥大中起重要作用。重要的是,在超负荷后早期(3天)未发生肥大的仓鼠心脏中,糜酶可在其mRNA增加之前被机械应力激活,并且Ang II水平显著升高。

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