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Piezo1通道的激活通过黏膜释放乙酰胆碱增强离体人膀胱条的自发收缩。

Activation of Piezo1 channels enhances spontaneous contractions of isolated human bladder strips via acetylcholine release from the mucosa.

作者信息

Liu Hanwen, Li Peixin, Zhao Mengmeng, Ma Tianjia, Lv Guangda, Liu Lei, Wen Jiliang, Liu Jiaxin, Yan Jieke, Li Jinyang, Xiao Zhiying, Wang Wenzhen, Wang Haoyu, Xiao Pan, Zhang Xiulin

机构信息

Department of Urology, The Second Hospital of Shandong University, Shandong, PR China.

Department of Urology, Qilu Hospital of Shandong University, Shandong, PR China.

出版信息

Eur J Pharmacol. 2024 Nov 15;983:176954. doi: 10.1016/j.ejphar.2024.176954. Epub 2024 Sep 3.

Abstract

Enhanced spontaneous bladder contractions (SBCs) have been thought one of the important underlying mechanisms for detrusor overactivity (DO). Piezo1 channel has been demonstrated involved in bladder function and dysfunction in rodents. We aimed to investigate the modulating role of Piezo1 in SBCs activity of human bladder. Human bladder tissues were obtained from 24 organ donors. SBCs of isolated bladder strips were recorded in organ bath. Piezo1 expression was examined with reverse transcription-quantitative polymerase chain reaction and immunofluorescence staining. ATP and acetylcholine release in cultured human urothelial cells was measured. Piezo1 is abundantly expressed in the bladder mucosa. Activation of Piezo1 with its specific agonist Yoda1 (100 nM-100 μM) enhanced the SBCs activity in isolated human bladder strips in a concentration-dependent manner. The effect of Yoda1 mimicked the effect of a low concentration (30 nM) of carbachol, which can be attenuated by removing the mucosa, blocking muscarinic receptors with atropine (1 μM), and blocking purinergic receptors with pyridoxal-phosphate-6-azophenyl-2',4'-disulfonate (PPADS, 30 μM), but not by tetrodotoxin (1 μM). Activation of urothelial Piezo1 with Yoda1 (30 μM) or hypotonic solution induced the release of ATP and acetylcholine in cultured human urothelial cells. In patients with benign prostatic hyperplasia, greater Piezo1 expression was observed in bladder mucosa from patients with DO than patients without DO. We conclude that upregulation and activation of Piezo1 may contribute to DO generation in patients with bladder outlet obstruction by promoting the urothelial release of ATP and acetylcholine. Inhibition of Piezo1 may be a novel therapeutic approach in the treatment of overactive bladder.

摘要

增强的自发性膀胱收缩(SBCs)被认为是逼尿肌过度活动(DO)的重要潜在机制之一。Piezo1通道已被证明与啮齿动物的膀胱功能及功能障碍有关。我们旨在研究Piezo1在人膀胱SBCs活动中的调节作用。从24名器官捐献者获取人膀胱组织。在器官浴槽中记录分离膀胱条的SBCs。采用逆转录定量聚合酶链反应和免疫荧光染色检测Piezo1表达。测量培养的人尿路上皮细胞中ATP和乙酰胆碱的释放。Piezo1在膀胱黏膜中大量表达。用其特异性激动剂Yoda1(100 nM - 100 μM)激活Piezo1以浓度依赖性方式增强分离的人膀胱条中的SBCs活动。Yoda1的作用模拟了低浓度(30 nM)卡巴胆碱的作用,去除黏膜、用阿托品(1 μM)阻断毒蕈碱受体以及用磷酸吡哆醛 - 6 - 偶氮苯 - 2',4'-二磺酸盐(PPADS,30 μM)阻断嘌呤能受体可减弱该作用,但用河豚毒素(1 μM)则不能。用Yoda1(30 μM)或低渗溶液激活尿路上皮Piezo1可诱导培养的人尿路上皮细胞释放ATP和乙酰胆碱。在良性前列腺增生患者中,DO患者膀胱黏膜中Piezo1表达高于无DO患者。我们得出结论,Piezo1的上调和激活可能通过促进尿路上皮释放ATP和乙酰胆碱而导致膀胱出口梗阻患者DO的发生。抑制Piezo1可能是治疗膀胱过度活动症的一种新的治疗方法。

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