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膀胱黏膜中三磷酸腺苷的机械敏感释放

Mechanosensitive release of ATP in the urinary bladder mucosa.

作者信息

Mutafova-Yambolieva Violeta N

机构信息

Department of Physiology and Cell Biology, School of Medicine, University of Nevada Reno, Reno, NV, 89557, USA.

出版信息

Purinergic Signal. 2024 Nov 14. doi: 10.1007/s11302-024-10063-6.

Abstract

The urinary bladder mucosa (urothelium and suburothelium/lamina propria) functions as a barrier between the content of the urine and the underlying bladder tissue. The bladder mucosa is also a mechanosensitive tissue that releases signaling molecules that affect functions of cells in the bladder wall interconnecting the mucosa with the detrusor muscle and the CNS. Adenosine 5'-triphosphate (ATP) is a primary mechanotransduction signal that is released from cells in the bladder mucosa in response to bladder wall distention and activates cell membrane-localized P2X and P2Y purine receptors on urothelial cells, sensory and efferent neurons, interstitial cells, and detrusor smooth muscle cells. The amounts of ATP at active receptor sites depend significantly on the amounts of extracellularly released ATP. Spontaneous and distention-induced release of ATP appear to be under differential control. This review is focused on mechanisms underlying urothelial release of ATP in response to mechanical stimulation. First, we present a brief overview of studies that report mechanosensitive ATP release in bladder cells or tissues. Then, we discuss experimental evidence for mechanosensitive release of urothelial ATP by vesicular and non-vesicular mechanisms and roles of the stretch-activated channels PIEZO channels, transient receptor potential vanilloid type 4, and pannexin 1. This is followed by brief discussion of possible involvement of calcium homeostasis modulator 1, acid-sensing channels, and connexins in the release of urothelial ATP. We conclude with brief discussion of limitations of current research and of needs for further studies to increase our understanding of mechanotransduction in the bladder wall and of purinergic regulation of bladder function.

摘要

膀胱黏膜(尿路上皮和尿路上皮下层/固有层)起到尿液内容物与膀胱深层组织之间的屏障作用。膀胱黏膜也是一种机械敏感组织,能释放信号分子,这些信号分子会影响膀胱壁细胞的功能,从而将黏膜与逼尿肌及中枢神经系统连接起来。腺苷5'-三磷酸(ATP)是一种主要的机械转导信号,在膀胱壁扩张时,由膀胱黏膜中的细胞释放,可激活尿路上皮细胞、感觉神经元和传出神经元、间质细胞以及逼尿肌平滑肌细胞上位于细胞膜的P2X和P2Y嘌呤受体。活性受体位点处的ATP量在很大程度上取决于细胞外释放的ATP量。ATP的自发释放和扩张诱导释放似乎受到不同的调控。本综述聚焦于尿路上皮在机械刺激下释放ATP的潜在机制。首先,我们简要概述了报道膀胱细胞或组织中机械敏感ATP释放的研究。然后,我们讨论了通过囊泡和非囊泡机制实现尿路上皮ATP机械敏感释放的实验证据,以及牵张激活通道PIEZO通道、瞬时受体电位香草酸亚型4和泛连接蛋白1的作用。接下来简要讨论了钙稳态调节剂1、酸敏感通道和连接蛋白在尿路上皮ATP释放中可能的参与情况。最后,我们简要讨论了当前研究的局限性以及进一步研究的需求,以加深我们对膀胱壁机械转导以及嘌呤能对膀胱功能调节的理解。

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