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机械敏感性调节小鼠肾盂蠕动收缩。

Mechanosensitive modulation of peristaltic contractions in the mouse renal pelvis.

机构信息

Department of Cell Physiology, Graduate School of Medical Sciences, Nagoya City University, Nagoya, Japan.

Department of Cell Physiology, Graduate School of Medical Sciences, Nagoya City University, Nagoya, Japan.

出版信息

Eur J Pharmacol. 2022 Apr 5;920:174834. doi: 10.1016/j.ejphar.2022.174834. Epub 2022 Feb 17.

Abstract

The renal pelvis develops spontaneous phasic contractions (SPCs) that underlie pyeloureteric peristalsis. Increased urine flow into the renal pelvis mechanically stimulates the contractile machinery within the renal pelvis to facilitate the propagation of peristalsis. Here, the effects of mechanostimulation of the pelvicalyceal junction (PCJ), where SPCs originate from, on the properties of SPCs were investigated. Using the wire myograph, isometric tension changes in tubular preparations of mouse renal pelvis with calyces were circumferentially measured, while mechanostimuli were applied to the PCJ. Immunohistochemistry and intracellular Ca imaging were performed, respectively, to investigate the distribution and functional roles of mechanosensitive TRPV4 channels in the renal pelvis. SPCs periodically originated from PCJ and propagated distally. Mechanostimulation of the PCJ reduced the frequency of SPCs by about 60%, while almost quadrupling their amplitude. Capsaicin (100 nM), an agonist of TRPV1 channels, or calcitonin gene-related peptide (CGRP) (30 nM) also slowed and enlarged SPCs. A prolonged pre-exposure to capsaicin or BIBN4096 (1 μM), a CGRP receptor antagonist, inhibited the mechanostimulation-induced reduction in the SPC frequency, but did not block the increase in SPC amplitude. TRPV4 immunoreactivity was expressed in both atypical (ASMCs) and typical smooth muscle cells (TSMCs). GSK1016790A (100 nM), a TRPV4 agonist, enlarged SPCs independently of TRPV1 or CGRP without increasing the amplitude of spontaneous Ca transients in TSMCs. Thus, mechanostimulation of PCJ appears to activate TRPV1-expressing sensory nerves, releasing CGRP that predominantly reduce the SPC frequency. Activation of TRPV4 may be involved in the mechanosensitive enlargement of SPCs. (247 words).

摘要

肾盂会自发产生相位收缩(SPC),这是肾盂输尿管蠕动的基础。尿液流入肾盂会对肾盂的收缩机制产生机械刺激,从而促进蠕动的传播。本研究旨在探讨肾盂输尿管连接部(PCJ)的机械刺激对 SPC 特性的影响。通过使用线描记法,对带有肾盏的小鼠肾盂管状标本进行环周等长张力变化测量,同时向 PCJ 施加机械刺激。分别进行免疫组织化学和细胞内 Ca 成像,以研究机械敏感型 TRPV4 通道在肾盂中的分布和功能作用。SPC 周期性地起源于 PCJ 并向远端传播。PCJ 的机械刺激使 SPC 的频率降低约 60%,而振幅几乎增加了四倍。辣椒素(TRPV1 通道激动剂,100 nM)或降钙素基因相关肽(CGRP,30 nM)也可使 SPC 频率减慢且振幅增大。长时间预先暴露于辣椒素或 CGRP 受体拮抗剂 BIBN4096(1 μM)可抑制机械刺激引起的 SPC 频率降低,但不能阻断 SPC 振幅增加。TRPV4 免疫反应性在非典型(ASMCs)和典型平滑肌细胞(TSMCs)中均有表达。TRPV4 激动剂 GSK1016790A(100 nM)可独立于 TRPV1 或 CGRP 使 SPC 增大,而不增加 TSMCs 中自发性 Ca 瞬变的振幅。因此,PCJ 的机械刺激似乎激活了表达 TRPV1 的感觉神经,释放 CGRP,主要降低 SPC 的频率。TRPV4 的激活可能参与了 SPC 的机械敏感增大。(247 个单词)

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