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犬类钙处理的跨壁异质性。

Transmural heterogeneity of calcium handling in canine.

作者信息

Laurita Kenneth R, Katra Rodolphe, Wible Barbara, Wan Xiaoping, Koo Michael H

机构信息

Heart and Vascular Research Center, Case Western Reserve University, 2500 MetroHealth Dr, Rammelkamp, 6th Floor, Cleveland, Ohio 44109-1998, USA.

出版信息

Circ Res. 2003 Apr 4;92(6):668-75. doi: 10.1161/01.RES.0000062468.25308.27. Epub 2003 Feb 20.

Abstract

Spatial heterogeneity of the action potential and its influence on arrhythmia vulnerability is known. However, heterogeneity of intracellular calcium handling and, in particular, its effect on the electrophysiological substrate is less clear. Using optical mapping techniques, calcium transients and action potentials were recorded simultaneously from ventricular sites across the transmural wall of the arterially perfused canine left ventricular wedge preparation during steady-state baseline pacing and rapid pacing. During baseline pacing, the decay of intracellular calcium to diastolic levels and calcium transient duration were slower (70%, P<0.005) and longer (20%, P<0.005), respectively, closer to the endocardial surface compared with the epicardial surface. Tissue samples isolated from the left ventricular wall demonstrate that sarcoplasmic reticulum Ca2+ ATPase (SERCA2a) expression was significantly less in the subendocardial and midmyocardial layers compared with the subepicardial layer. In contrast, no significant difference in the transmural expression of Na+-Ca2+ exchanger was observed. During rapid pacing, calcium transient alternans and increased levels of diastolic intracellular calcium were significantly greater (P<0.01) closer to the endocardium (101%+/-62% and 41%+/-15%, respectively) compared with the epicardium (12%+/-7% and 12%+/-14%, respectively). In conclusion, cells closer to the endocardium exhibit a slower decay of intracellular calcium compared with cells near the epicardium, which may be due in part to reduced expression of SERCA2a. As a possible consequence, calcium transient alternans and increased diastolic levels of intracellular calcium may occur preferentially closer to the endocardial surface.

摘要

动作电位的空间异质性及其对心律失常易感性的影响是已知的。然而,细胞内钙处理的异质性,尤其是其对电生理基质的影响尚不清楚。使用光学映射技术,在稳态基线起搏和快速起搏期间,从动脉灌注犬左心室楔形标本跨壁心肌的心室部位同时记录钙瞬变和动作电位。在基线起搏期间,与心外膜表面相比,靠近心内膜表面的细胞内钙衰减至舒张期水平的速度较慢(70%,P<0.005),钙瞬变持续时间较长(20%,P<0.005)。从左心室壁分离的组织样本表明,与心外膜下层相比,心内膜下层和中层心肌中肌浆网Ca2+ATP酶(SERCA2a)的表达明显减少。相反,未观察到钠钙交换体跨壁表达的显著差异。在快速起搏期间,与心外膜相比,靠近心内膜处的钙瞬变交替和舒张期细胞内钙水平的增加明显更大(P<0.01)(分别为101%±62%和41%±15%)(心外膜分别为12%±7%和12%±14%)。总之,与靠近心外膜的细胞相比,靠近心内膜的细胞表现出较慢的细胞内钙衰减,这可能部分归因于SERCA2a表达的减少。作为一个可能的结果,钙瞬变交替和细胞内钙舒张期水平的增加可能优先发生在靠近心内膜表面的地方。

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