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大鼠肺静脉和左心房心肌细胞的离子流、动作电位和去甲肾上腺素反应。

Ion currents, action potentials, and noradrenergic responses in rat pulmonary vein and left atrial cardiomyocytes.

机构信息

Cardiovascular Research Laboratories, School of Physiology, Biomedical Sciences Building, University of Bristol, Bristol, UK.

出版信息

Physiol Rep. 2020 May;8(9):e14432. doi: 10.14814/phy2.14432.

Abstract

The electrophysiological properties of pulmonary vein (PV)-cardiomyocytes, and their responses to the sympathetic neurotransmitter, noradrenaline (NA), are thought to differ from those of the left atrium (LA) and contribute to atrial ectopy. The aim of this study was to examine rat PV cardiomyocyte electrophysiology and responses to NA in comparison with LA cells. LA and PV cardiomyocytes were isolated from adult male Wistar rat hearts, and membrane potentials and ion currents recorded at 36°C using whole-cell patch-clamp techniques. PV and LA cardiomyocytes did not differ in size. In control, there were no differences between the two cell-types in zero-current potential or action potential duration (APD) at 1 Hz, although the incidence of early afterdepolarizations (EADs) was greater in PV than LA cardiomyocytes. The L-type Ca current (I ) was ~×1.5 smaller (p = .0029, Student's t test) and the steady-state K current (I ) was ~×1.4 larger (p = .0028, Student's t test) in PV than in LA cardiomyocytes. PV cardiomyocyte inward-rectifier current (I ) was slightly smaller than LA cardiomyocyte I . In LA cardiomyocytes, NA significantly prolonged APD . In PV cells, APD responses to 1 μM NA were heterogeneous: while the mean percentage change in APD was not different from 0 (16.5 ± 9.7%, n cells/N animals = 12/10, p = .1177, one-sample t test), three cells showed shortening (-18.8 ± 6.0%) whereas nine showed prolongation (28.3 ± 10.1%, p = .008, Student's t test). NA had no effect on I in either cell-type but inhibited PV I by 41.9 ± 4.1% (n/N = 23/11 p < .0001), similar to LA cells. NA increased I in most PV cardiomyocytes (median × 2.2-increase, p < .0001, n/N = 32/14, Wilcoxon-signed-rank test), although in 7/32 PV cells I was decreased following NA. PV cardiomyocytes differ from LA cells and respond heterogeneously to NA.

摘要

肺静脉(PV)-心肌细胞的电生理特性及其对去甲肾上腺素(NA)的反应被认为与左心房(LA)不同,并有助于房性异位。本研究旨在比较大鼠 PV 心肌细胞电生理特性和对 NA 的反应与 LA 细胞的反应。LA 和 PV 心肌细胞从成年雄性 Wistar 大鼠心脏中分离出来,使用全细胞膜片钳技术在 36°C 下记录膜电位和离子电流。在对照条件下,两种细胞类型的零电流电位或 1 Hz 时的动作电位时程(APD)没有差异,尽管 PV 心肌细胞中早期后除极(EAD)的发生率高于 LA 心肌细胞。L 型钙电流(I )小约×1.5(p=0.0029,Student's t 检验),而稳态 K 电流(I )大约×1.4(p=0.0028,Student's t 检验)在 PV 比 LA 心肌细胞中。PV 心肌细胞内向整流电流(I )略小于 LA 心肌细胞 I 。在 LA 心肌细胞中,NA 显著延长了 APD。在 PV 细胞中,NA 对 APD 的反应是异质的:虽然 APD 的平均百分比变化与 0 没有差异(16.5±9.7%,n 细胞/N 动物=12/10,p=0.1177,单样本 t 检验),但有 3 个细胞表现出缩短(-18.8±6.0%),而 9 个细胞表现出延长(28.3±10.1%,p=0.008,Student's t 检验)。NA 对两种细胞类型的 I 均无影响,但抑制 PV I 为 41.9±4.1%(n/N=23/11,p<0.0001),与 LA 细胞相似。NA 增加了大多数 PV 心肌细胞的 I(中位数×2.2 增加,p<0.0001,n/N=32/14,Wilcoxon 符号秩检验),尽管在 7/32 个 PV 细胞中,NA 后 I 降低。PV 心肌细胞与 LA 细胞不同,对 NA 反应异质。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c3f8/7219272/910dcc5aab8f/PHY2-8-e14432-g001.jpg

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