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评估小鼠膀胱平滑肌收缩特性的昼夜差异。

Evaluation of mouse urinary bladder smooth muscle for diurnal differences in contractile properties.

作者信息

White Rachel S, Zemen Betsir G, Khan Zulqarnain, Montgomery Jenna R, Herrera Gerald M, Meredith Andrea L

机构信息

Department of Physiology, University of Maryland School of Medicine Baltimore, MD, USA.

Catamount Research & Development Company and Med Associates Inc., St. Albans VT, USA.

出版信息

Front Pharmacol. 2015 Jan 9;5:293. doi: 10.3389/fphar.2014.00293. eCollection 2014.

Abstract

Most physiological systems show daily variations in functional output, entrained to the day-night cycle. Humans exhibit a daily rhythm in urinary voiding (micturition), and disruption of this rhythm (nocturia) has significant clinical impact. However, the underlying mechanisms are not well-understood. Recently, a circadian rhythm in micturition was demonstrated in rodents, correlated with functional changes in urodynamics, providing the opportunity to address this issue in an animal model. Smooth muscle cells from mouse bladder have been proposed to express a functional and autonomous circadian clock at the molecular level. In this study, we addressed whether a semi-intact preparation of mouse urinary bladder smooth muscle (UBSM) exhibited measurable differences in contractility between day and night. UBSM tissue strips were harvested at four time points over the diurnal cycle, and spontaneous (phasic) and nerve-evoked contractions were assessed using isometric tension recordings. During the active period (ZT12-24) when micturition frequency is higher in rodents, UBSM strips had no significant differences in maximal- (high K(+)) or nerve-evoked contractions compared to strips harvested from the resting period (ZT0-12). However, a diurnal rhythm in phasic contraction was observed, with higher amplitudes at ZT10. Consistent with the enhanced phasic amplitudes, expression of the BK K(+) channel, a key suppressor of UBSM excitability, was lower at ZT8. Higher expression of BK at ZT20 was correlated with an enhanced effect of the BK antagonist paxilline (PAX) on phasic amplitude, but PAX had no significant time-of-day dependent effect on phasic frequency or nerve-evoked contractions. Overall, these results identify a diurnal difference for one contractile parameter of bladder muscle. Taken together, the results suggest that autonomous clocks in UBSM make only a limited contribution to the integrated control of diurnal micturition patterns.

摘要

大多数生理系统的功能输出呈现出每日变化,与昼夜周期同步。人类排尿(排尿)具有每日节律,这种节律的破坏(夜尿症)具有重大临床影响。然而,其潜在机制尚未完全明确。最近,在啮齿动物中证实了排尿的昼夜节律,这与尿动力学的功能变化相关,为在动物模型中解决这一问题提供了机会。有人提出小鼠膀胱平滑肌细胞在分子水平上表达功能性自主生物钟。在本研究中,我们探讨了小鼠膀胱平滑肌(UBSM)的半完整制剂在白天和黑夜之间收缩性是否存在可测量的差异。在昼夜周期的四个时间点采集UBSM组织条,使用等长张力记录评估自发(相位)和神经诱发的收缩。在啮齿动物排尿频率较高的活跃期(ZT12 - 24),与从休息期(ZT0 - 12)采集的组织条相比,UBSM条在最大(高K(+))或神经诱发收缩方面没有显著差异。然而,观察到相位收缩存在昼夜节律,在ZT10时幅度更高。与增强的相位幅度一致,BK K(+)通道(UBSM兴奋性的关键抑制因子)在ZT8时的表达较低。BK在ZT20时的较高表达与BK拮抗剂紫杉醇(PAX)对相位幅度的增强作用相关,但PAX对相位频率或神经诱发收缩没有显著的昼夜依赖性影响。总体而言,这些结果确定了膀胱肌肉一个收缩参数的昼夜差异。综上所述,结果表明UBSM中的自主生物钟对昼夜排尿模式的综合控制贡献有限。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e14e/4288323/e2e8e162afac/fphar-05-00293-g001.jpg

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