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心脏中的牵张激活通道:对长度依赖性和心肌病的作用。

Stretch-activated channels in the heart: contributions to length-dependence and to cardiomyopathy.

作者信息

Ward Marie-Louise, Williams Iwan A, Chu Yi, Cooper Patricia J, Ju Yue-Kun, Allen David G

机构信息

Department of Physiology, Faculty of Medicine and Health Sciences, University of Auckland, Private Bag 92019, Auckland, New Zealand.

出版信息

Prog Biophys Mol Biol. 2008 Jun-Jul;97(2-3):232-49. doi: 10.1016/j.pbiomolbio.2008.02.009. Epub 2008 Feb 13.

Abstract

The stretch-induced increase in force production of ventricular muscle is biphasic. An abrupt increase in force coincides with the stretch, which is then followed by a slower response that develops over minutes (the slow force response or SFR). The SFR is accompanied by a slow increase in the magnitude of the intracellular Ca2+ transient, but the stretch-dependent mechanisms that give rise to this remain controversial. We characterized the SFR using right ventricular trabeculae from mouse hearts. Application of three different blockers of stretch-activated non-selective cation channels (SAC NSC) reduced the magnitude of the SFR 60s after stretch (400 microM streptomycin: from 86+/-25% to 38+/-14%, P<0.01, n=9; 10 microM GdCl3: from 65+/-21%, to 12+/-7%, P<0.01, n=7; 10 microM GsMTx-4 from 122+/-40% to 15+/-8%, P<0.05, n=6). Streptomycin also decreased the increase in Ca2+ transient amplitude 60s after the stretch from 43.5+/-12.7% to 5.7+/-3.5% (P<0.05, n=4), and reduced the stretch-dependent increase in intracellular Ca2+ in quiescent muscles when stretched. The transient receptor potential, canonical channels TRPC1 and TRPC6 are mechano-sensitive, non-selective cation channels. They are expressed in mouse ventricular muscle, and could therefore be responsible for stretch-dependent influx of Na+ and/or Ca2+ during the SFR. Expression of TRPC1 was investigated in the mdx heart, a mouse model of Duchenne's muscular dystrophy. Resting Ca2+ was raised in isolated myocytes from old mdx animals, which was blocked by application of SAC blockers. Expression of TRPC1 was increased in the older mdx animals, which have developed a dilated cardiomyopathy, and might therefore contribute to the dilated cardiomyopathy.

摘要

心室肌因拉伸而导致的力产生增加是双相的。力的突然增加与拉伸同时发生,随后是在数分钟内逐渐发展的较慢反应(慢力反应或SFR)。SFR伴随着细胞内Ca2+瞬变幅度的缓慢增加,但其产生的拉伸依赖性机制仍存在争议。我们使用来自小鼠心脏的右心室小梁来表征SFR。应用三种不同的拉伸激活非选择性阳离子通道(SAC NSC)阻滞剂可降低拉伸后60秒时SFR的幅度(400 microM链霉素:从86±25%降至38±14%,P<0.01,n = 9;10 microM GdCl3:从65±21%降至12±7%,P<0.01,n = 7;10 microM GsMTx-4从122±40%降至15±8%,P<0.05,n = 6)。链霉素还将拉伸后60秒时Ca2+瞬变幅度的增加从43.5±12.7%降至5.7±3.5%(P<0.05,n = 4),并减少了静息肌肉在拉伸时细胞内Ca2+的拉伸依赖性增加。瞬时受体电位、经典通道TRPC1和TRPC6是机械敏感的非选择性阳离子通道。它们在小鼠心室肌中表达,因此可能是SFR期间拉伸依赖性Na+和/或Ca2+内流的原因。在杜兴氏肌营养不良的小鼠模型mdx心脏中研究了TRPC1的表达。老年mdx动物分离的心肌细胞中的静息Ca2+升高,应用SAC阻滞剂可将其阻断。老年mdx动物中TRPC1的表达增加,这些动物已发展为扩张型心肌病,因此可能导致扩张型心肌病。

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