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甲状腺素对单个兔心肌细胞离子电流温度依赖性的影响。

Thyroxine effects on temperature dependence of ionic currents in single rabbit cardiac myocytes.

作者信息

Shimoni Y, Banno H

机构信息

Department of Medical Physiology, University of Calgary Health Sciences Centre, Alberta, Canada.

出版信息

Am J Physiol. 1993 Dec;265(6 Pt 2):H1875-83. doi: 10.1152/ajpheart.1993.265.6.H1875.

Abstract

Macroscopic whole cell currents were measured from single rabbit cardiac myocytes, using the suction electrode voltage-clamp technique, under euthyroid, hyperthyroid, and hypothyroid conditions. In ventricular myocytes, the temperature dependence of the transient outward current (I(t)) was greatly reduced in hyperthyroid conditions, with Q10 values (between 22 and 32 degrees C) reduced from normal values of 6.14 +/- 0.93 (SE, n = 8) to 2.14 +/- 0.14 (n = 6). In contrast, two of the other major currents in these cells were relatively unaffected. Under hyperthyroid conditions, there was very little change in the amplitudes or temperature dependence of L-type calcium currents and of steady-state currents, which reflect mainly the inwardly rectifying potassium current. In atrial cells no changes in the temperature dependence of I(t) were observed, with virtually identical Q10 values (close to 4) in eu- and hyperthyroid conditions. Under hypothyroid conditions, there was no change in the temperature dependence of I(t) in either ventricular or atrial cells. We conclude that the regulation of I(t) in ventricular cells is unique, rendering it extremely sensitive to temperature changes and to elevations in thyroxine levels. These results are discussed in the context of long-term regulation of ionic channels.

摘要

采用吸入电极电压钳技术,在甲状腺功能正常、甲状腺功能亢进和甲状腺功能减退的条件下,对单个兔心肌细胞的宏观全细胞电流进行了测量。在心室肌细胞中,甲状腺功能亢进时,瞬时外向电流(I(t))的温度依赖性大大降低,Q10值(22至32摄氏度之间)从正常值6.14±0.93(标准误,n = 8)降至2.14±0.14(n = 6)。相比之下,这些细胞中的其他两种主要电流相对未受影响。在甲状腺功能亢进条件下,L型钙电流和稳态电流(主要反映内向整流钾电流)的幅度或温度依赖性变化很小。在心房细胞中,未观察到I(t)温度依赖性的变化,在甲状腺功能正常和亢进条件下,Q10值几乎相同(接近4)。在甲状腺功能减退条件下,心室或心房细胞中I(t)的温度依赖性均无变化。我们得出结论,心室细胞中I(t)的调节是独特的,使其对温度变化和甲状腺素水平升高极为敏感。在离子通道的长期调节背景下讨论了这些结果。

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