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猪和人膀胱逼尿肌的电特性

Electrical properties of detrusor smooth muscles from the pig and human urinary bladder.

作者信息

Hashitani Hikaru, Brading Alison F

机构信息

University Department of Pharmacology, Mansfield Road, Oxford OX1 3QT.

出版信息

Br J Pharmacol. 2003 Sep;140(1):146-58. doi: 10.1038/sj.bjp.0705319. Epub 2003 Jun 9.

Abstract

(1) The electrophysiological properties of detrusor smooth muscles have been studied almost exclusively in small mammals and the relevance of the information to the human bladder has been questioned. In the present study, electrical properties of detrusor smooth muscles of the pig and human were investigated using intracellular recording techniques. (2) Bladder smooth muscles of the pig and human exhibited nifedipine (10 microm)-sensitive spontaneous action potentials, and their frequency was highly sensitive to membrane polarization. (3) During bursts of action potentials, each action potential was followed by a fast after-hyperpolarization (fast AHP). Charybdotoxin (CTX, 50 nm) increased the amplitude and duration of action potentials but failed to inhibit the fast AHPs, while apamin (0.1 microm) blocked the fast AHPs and induced action potential complexes, which were followed by slow AHPs. 4-Aminopyridine (4-AP, 1 mm) suppressed the slow AHP and increased action potential frequency. (4) In the human bladder, transmural stimuli initiated inhibitory junction potential-like hyperpolarizations, which were followed by action potential discharges. The hyperpolarizations were blocked by atropine (1 microm) and by apamin (0.1 microm) but not by CTX (50 nm). In the pig bladder, transmural stimuli evoked excitatory junction potentials (EJPs), which triggered action potentials. After desensitizing P2x receptors with alpha,beta methylene-ATP (10 microm), nerve-evoked responses were similar to those of human bladder. (5) These results indicate that detrusor smooth muscles of the pig share many features of electrical properties with those of the human. In addition to large conductance (BK) and small conductance (SK) Ca2+-activated K+ channels, voltage-dependent K+ (VK) channels may play an important role in the regulation of electrical activity of detrusor smooth muscles.

摘要

(1)逼尿肌平滑肌的电生理特性几乎仅在小型哺乳动物中进行了研究,且这些信息与人类膀胱的相关性受到了质疑。在本研究中,使用细胞内记录技术对猪和人类逼尿肌平滑肌的电特性进行了研究。(2)猪和人类的膀胱平滑肌表现出对硝苯地平(10微摩尔)敏感的自发动作电位,其频率对膜极化高度敏感。(3)在动作电位爆发期间,每个动作电位之后都跟随一个快速超极化后电位(快速AHP)。大蝎毒素(CTX,50纳米)增加了动作电位的幅度和持续时间,但未能抑制快速AHP,而蜂毒明肽(0.1微摩尔)阻断了快速AHP并诱导了动作电位复合体,随后是缓慢AHP。4-氨基吡啶(4-AP,1毫摩尔)抑制了缓慢AHP并增加了动作电位频率。(4)在人类膀胱中,经壁刺激引发了抑制性突触后电位样超极化,随后是动作电位发放。这些超极化被阿托品(1微摩尔)和蜂毒明肽(0.1微摩尔)阻断,但未被CTX(50纳米)阻断。在猪膀胱中,经壁刺激诱发了兴奋性突触后电位(EJP),进而触发动作电位。用α,β-亚甲基三磷酸腺苷(10微摩尔)使P2x受体脱敏后,神经诱发反应与人类膀胱相似。(5)这些结果表明,猪的逼尿肌平滑肌与人类的逼尿肌平滑肌在电特性上有许多共同特征。除了大电导(BK)和小电导(SK)钙激活钾通道外,电压依赖性钾(VK)通道可能在调节逼尿肌平滑肌的电活动中起重要作用。

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