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Adjustable passive stiffness in mouse bladder: regulated by Rho kinase and elevated following partial bladder outlet obstruction

机译:小鼠膀胱的被动僵硬度可调:受Rho激酶调节部分膀胱出口阻塞后升高

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摘要

Detrusor smooth muscle (DSM) contributes to bladder wall tension during filling, and bladder wall deformation affects the signaling system that leads to urgency. The length-passive tension (L-Tp) relationship in rabbit DSM can adapt with length changes over time and exhibits adjustable passive stiffness (APS) characterized by a L-Tp curve that is a function of both activation and strain history. Muscle activation with KCl, carbachol (CCh), or prostaglandin E2 at short muscle lengths can increase APS that is revealed by elevated pseudo-steady-state Tp at longer lengths compared with prior Tp measurements at those lengths, and APS generation is inhibited by the Rho Kinase (ROCK) inhibitor H-1152. In the current study, mouse bladder strips exhibited both KCl- and CCh-induced APS. Whole mouse bladders demonstrated APS which was measured as an increase in pressure during passive filling in calcium-free solution following CCh precontraction compared with pressure during filling without precontraction. In addition, CCh-induced APS in whole mouse bladder was inhibited by H-1152, indicating that ROCK activity may regulate bladder compliance during filling. Furthermore, APS in whole mouse bladder was elevated 2 wk after partial bladder outlet obstruction, suggesting that APS may be relevant in diseases affecting bladder mechanics. The presence of APS in mouse bladder will permit future studies of APS regulatory pathways and potential alterations of APS in disease models using knockout transgenetic mice.
机译:逼尿肌平滑肌(DSM)在充盈过程中会增加膀胱壁的张力,而膀胱壁的变形会影响导致尿急的信号系统。兔子DSM中的长度-被动张力(L-Tp)关系可以适应随时间变化的长度,并表现出可调节的被动刚度(APS),其特征在于L-Tp曲线是激活和应变历史的函数。与先前在这些长度上的Tp测量值相比,在较短的肌肉长度上用KCl,卡巴胆碱(CCh)或前列腺素E2进行的肌肉激活可以增加APS,这是由较高的伪稳态Tp所显示的,而在更长的长度上显示出来。 Rho激酶(ROCK)抑制剂H-1152。在当前的研究中,小鼠膀胱条表现出KCl和CCh诱导的APS。整个小鼠膀胱均表现出APS,这是通过CCh预收缩后被动填充无钙溶液中的压力与未预收缩时填充的压力相比来测得的。此外,H-1152抑制了CCh诱导的整个小鼠膀胱中的APS,这表明ROCK活性可能在填充过程中调节膀胱顺应性。此外,部分膀胱出口阻塞后2 wk,整个小鼠膀胱中的APS升高,提示APS可能与影响膀胱力学的疾病有关。小鼠膀胱中APS的存在将允许将来使用敲除转基因小鼠在疾病模型中研究APS调节途径和APS的潜在改变。

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