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首页> 外文期刊>The Journal of Urology >Role of mitochondria in the generation of spontaneous activity in detrusor smooth muscles of the Guinea pig bladder.
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Role of mitochondria in the generation of spontaneous activity in detrusor smooth muscles of the Guinea pig bladder.

机译:线粒体在豚鼠膀胱逼尿肌平滑肌自发活动中的作用。

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PURPOSE: The rhythmic electrical activity of gastrointestinal smooth muscles is associated with mitochondrial Ca2+ handling. We examined the role of mitochondria in the generation of spontaneous activity in detrusor smooth muscles. MATERIALS AND METHODS: Changes in the membrane potential and intracellular Ca2+ concentration ([Ca2+]i) were measured in detrusor smooth muscles of the guinea pig using conventional microelectrode techniques and Fura-PE3 (Calbiochem, San Diego, California) fluorescence, respectively. RESULTS: Detrusor smooth muscle cells showed spontaneous action potentials and associated transient increases in [Ca2+]i (Ca transients). The mitochondrial protonophore CCCP (carbonyl cyanide m-chlorophenyl hydrazone) (10 microM) depolarized the membrane, increased [Ca2+]i and caused activation followed by suppression of action potentials and Ca transients. High K solution potassium concentration ([K+]o = 30 mM) depolarized the membrane and increased [Ca2+]i to levels similar to those produced by 10 microM CCCP but this depolarization did not suppress action potentials. Nifedipine (10 microM) decreased the amplitude of CCCP induced increases in [Ca2+]i by about 50%. CCCP induced increases in [Ca2+]i were further reduced by about 70% in Ca2+-free solution and by about 30% in the presence of 10 microM SKF96365, a blocker for store operated Ca entry. In the presence of 10 microM nifedipine and 10 microM cyclopiazonic acid, CCCP induced [Ca2+]i responses were suppressed to about 25% of control values. Under these conditions repetitive applications of 10 microM acetylcholine chloride successively decreased [Ca2+]i responses and finally failed to increase [Ca2+]i. Subsequent CCCP failed to elevate [Ca2+]i. CONCLUSIONS: These results suggest that mitochondria have an important role in Ca2+ buffering in bladder smooth muscles. Mitochondrial Ca2+ is presumably supplied by Ca2+ transport from internal stores and also by capacitative calcium entry through nonselective cation channels. Mitochondrial Ca2+ handling may also be critical for the generation of spontaneous activity in detrusor smooth muscle.
机译:目的:胃肠平滑肌的节律性电活动与线粒体Ca2 +处理有关。我们检查了线粒体在逼尿肌平滑肌自发活动产生中的作用。材料与方法:使用常规微电极技术和Fura-PE3(Calbiochem,圣地亚哥,加利福尼亚)荧光法分别测定豚鼠逼尿肌的膜电位和细胞内Ca2 +浓度([Ca2 +] i)的变化。结果:逼尿肌平滑肌细胞表现出自发的动作电位,并在[Ca2 +] i(钙瞬变)中相关的瞬时增加。线粒体质子CCCP(羰基氰化物间氯苯基)(10 microM)使膜去极化,增加[Ca2 +] i并引起活化,随后抑制动作电位和Ca瞬变。高钾溶液钾浓度([K +] o = 30 mM)使膜去极化并使[Ca2 +] i升高至类似于10 microM CCCP产生的水平,但这种去极化并未抑制动作电位。硝苯地平(10 microM)使CCCP诱导的[Ca2 +] i升高幅度降低了约50%。在无Ca2 +的溶液中,CCCP诱导的[Ca2 +] i的增加进一步降低了约70%,在10 microM SKF96365(一种用于储存操作的Ca进入的阻滞剂)的存在下,其进一步降低了约30%。在10 microM硝苯地平和10 microM环吡嗪酸的存在下,CCCP诱导的[Ca2 +] i反应被抑制至对照值的25%。在这些条件下,重复应用10 microM乙酰胆碱氯化物会依次降低[Ca2 +] i反应,最终无法增加[Ca2 +] i。随后的CCCP无法提升[Ca2 +] i。结论:这些结果表明线粒体在膀胱平滑肌的Ca 2+缓冲中具有重要作用。线粒体Ca2 +可能是由内部存储中的Ca2 +转运提供的,也可能是通过非选择性阳离子通道的电容性钙进入而提供的。线粒体Ca2 +处理对于逼尿肌平滑肌自发活动的产生也可能至关重要。

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