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不同高血压肥大模型中完整乳头肌和化学去表皮小梁等长张力的钙敏感性

Calcium sensitivity of isometric tension in intact papillary muscles and chemically skinned trabeculae in different models of hypertensive hypertrophy.

作者信息

Pedroni P, Perez G N, Mattiazzi A

机构信息

Centro de Investigaciones Cardiovasculares, Facultad de Ciencias Medicas, La Plata, Argentina.

出版信息

Cardiovasc Res. 1990 Jul;24(7):584-90. doi: 10.1093/cvr/24.7.584.

Abstract

STUDY OBJECTIVE - The aim was to examine the contractile state, the inotropic response to [Ca2+]e and the Ca2+ sensitivity of the contractile proteins in different models of hypertensive hypertrophy in an early stage of evolution (3-4 weeks). DESIGN - Renal hypertension was induced by placing a silver clip around the left renal artery. The contralateral kidney was either removed (1K-1C) or left untouched (2K-1C). Hypertension through sodium overload was produced by administration of deoxycorticosterone and 1% NaCl drinking water. (DOCA rats). Active and passive length-tension curves were performed to evaluate basal contractility at Lmax and passive stiffness of cardiac muscle. The inotropic responsiveness to [Ca2+]e and the Ca2+ sensitivity of the contractile proteins were also evaluated. EXPERIMENTAL MATERIAL - Papillary muscles and skinned trabeculae from the left ventricle of male Wistar hypertensive and age matched normotensive rats were used. MEASUREMENTS AND RESULTS - Cardiac hypertrophy was similar in all hypertensive groups. In 2K-1C and 1K-1C rats, basal contractility was not significantly different from controls. In DOCA rats, developed tension and time to peak tension (TTP) were significantly greater than controls. The inotropic response to [Ca2+]e was depressed in 2K-1C and increased in DOCA rats. In DOCA rats, increasing [Ca2+]e produced an increase in TTP greater than in controls. No differences were detected in muscle passive stiffness or in Ca2+ sensitivity of the contractility proteins among the different groups. CONCLUSIONS - In the earlier stages of hypertensive hypertrophy, differences in basal contractile state and/or inotropic responsiveness appear to be more related to the initiating cause of hypertensive hypertrophy than to the degree of hypertrophy itself. These differences cannot be attributed to changes in Ca2+ sensitivity of the contractile system.

摘要

研究目的——本研究旨在探究处于高血压性心肌肥厚早期(3 - 4周)的不同模型中,心肌的收缩状态、对细胞外钙离子浓度([Ca2+]e)的变力性反应以及收缩蛋白对钙离子的敏感性。设计——通过环绕左肾动脉放置银夹来诱发肾性高血压。对侧肾脏要么被切除(1K - 1C),要么保持不动(2K - 1C)。通过给予脱氧皮质酮和1%氯化钠饮用水来制造钠超载型高血压(DOCA大鼠)。进行主动和被动长度 - 张力曲线实验,以评估在最大张力(Lmax)时的基础收缩性以及心肌的被动僵硬度。同时也评估了对[Ca2+]e的变力性反应以及收缩蛋白对钙离子的敏感性。实验材料——使用雄性Wistar高血压大鼠和年龄匹配的正常血压大鼠左心室的乳头肌和脱膜小梁。测量与结果——所有高血压组的心肌肥厚程度相似。在2K - 1C和1K - 1C大鼠中,基础收缩性与对照组无显著差异。在DOCA大鼠中,舒张期张力和达到张力峰值的时间(TTP)显著大于对照组。2K - 1C大鼠对[Ca2+]e的变力性反应降低,而DOCA大鼠则升高。在DOCA大鼠中,增加[Ca2+]e导致TTP的增加幅度大于对照组。不同组之间在肌肉被动僵硬度或收缩蛋白对钙离子的敏感性方面未检测到差异。结论——在高血压性心肌肥厚的早期阶段,基础收缩状态和/或变力性反应的差异似乎更多地与高血压性心肌肥厚的起始原因有关,而非与肥厚程度本身相关。这些差异不能归因于收缩系统对钙离子敏感性的变化。

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