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完整平滑肌中膜电位、胞质Ca2+和张力的同步测量。

Simultaneous measurement of membrane potential, cytosolic Ca2+, and tension in intact smooth muscles.

作者信息

Ozaki H, Stevens R J, Blondfield D P, Publicover N G, Sanders K M

机构信息

Department of Physiology, University of Nevada School of Medicine, Reno 89557.

出版信息

Am J Physiol. 1991 May;260(5 Pt 1):C917-25. doi: 10.1152/ajpcell.1991.260.5.C917.

Abstract

Microelectrode techniques and the fluorescent Ca2+ indicator indo-1 were used to measure membrane potential, cytosolic Ca2+ ([Ca2+]cyt), and muscle tension simultaneously in canine antral smooth muscles. Responses of muscles from the myenteric and submucosal regions were compared, since electrical activity and excitation-contraction coupling in these regions differ. The upstroke phase of electrical slow waves in both regions induced an increase in [Ca2+]cyt. In myenteric muscles the plateau phase of slow waves often caused either a further rise in [Ca2+]cyt or maintenance of the level reached during the upstroke event. In submucosal muscles, the plateau phase was significantly smaller and did not induce a second phase in the Ca2+ transient. Contractions were related to the amplitudes of Ca2+ transients. Acetylcholine (ACh; 3 x 10(-8)-10(-6) M) increased the amplitude and duration of the plateau phase of slow waves in a concentration-dependent manner. ACh also increased the second phase of Ca2+ transients and contractile responses associated with the plateau potential. In submucosal muscles ACh induced a significant increase in the plateau phase of the slow wave and increased the corresponding phase of Ca2+ transient. Nicardipine (10(-6) M) inhibited plateau phase of slow waves and the associated increases in [Ca2+]cyt and muscle tension. BAY K 8644 (10(-7) M) augmented the plateau potential and increased [Ca2+]cyt and muscle tension. These results suggest that dihydropyridine-sensitive Ca2+ currents participate in the plateau potential. Cholinergic stimulation modulates [Ca2+]cyt and therefore force by regulating the amount of Ca2+ entering cells through these channels.

摘要

采用微电极技术和荧光Ca2+指示剂indo-1,同时测量犬胃窦平滑肌的膜电位、胞质Ca2+([Ca2+]cyt)和肌肉张力。比较了肌间和黏膜下区域肌肉的反应,因为这些区域的电活动和兴奋-收缩偶联有所不同。两个区域电慢波的上升期均引起[Ca2+]cyt升高。在肌间肌肉中,慢波的平台期常导致[Ca2+]cyt进一步升高或维持上升期达到的水平。在黏膜下肌肉中,平台期明显较小,且未诱导Ca2+瞬变的第二阶段。收缩与Ca2+瞬变的幅度相关。乙酰胆碱(ACh;3×10(-8)-10(-6)M)以浓度依赖的方式增加慢波平台期的幅度和持续时间。ACh还增加了Ca2+瞬变的第二阶段以及与平台电位相关的收缩反应。在黏膜下肌肉中,ACh诱导慢波平台期显著增加,并增加了Ca2+瞬变的相应阶段。硝苯地平(10(-6)M)抑制慢波平台期以及相关的[Ca2+]cyt和肌肉张力增加。BAY K 8644(10(-7)M)增强平台电位,并增加[Ca2+]cyt和肌肉张力。这些结果表明,二氢吡啶敏感的Ca2+电流参与平台电位。胆碱能刺激通过调节通过这些通道进入细胞的Ca2+量来调节[Ca2+]cyt,从而调节力量。

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