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靶向NADPH氧化酶治疗糖尿病膀胱功能障碍

Targeting NADPH Oxidase as an Approach for Diabetic Bladder Dysfunction.

作者信息

Silveira Tammyris Helena Rebecchi, Silva Fábio Henrique, Hill Warren G, Antunes Edson, de Oliveira Mariana G

机构信息

Laboratory of Pharmacology, São Francisco University (USF), Bragança Paulista, Sao Paulo 12916-900, Brazil.

Laboratory of Voiding Dysfunction, Department of Medicine, Beth Israel Deaconess Medical Center, Boston, MA 02215, USA.

出版信息

Antioxidants (Basel). 2024 Sep 24;13(10):1155. doi: 10.3390/antiox13101155.

Abstract

Diabetic bladder dysfunction (DBD) is the most prevalent complication of diabetes mellitus (DM), affecting >50% of all patients. Currently, no specific treatment is available for this condition. In the early stages of DBD, patients typically complain of frequent urination and often have difficulty sensing when their bladders are full. Over time, bladder function deteriorates to a decompensated state in which incontinence develops. Based on studies of diabetic changes in the eye, kidney, heart, and nerves, it is now recognized that DM causes tissue damage by altering redox signaling in target organs. NADPH oxidase (NOX), whose sole function is the production of reactive oxygen species (ROS), plays a pivotal role in other well-known and bothersome diabetic complications. However, there is a substantial gap in understanding how NOX controls bladder function in health and the impact of NOX on DBD. The current review provides a thorough overview of the various NOX isoforms and their roles in bladder function and discusses the importance of further investigating the role of NOXs as a key contributor to DBD pathogenesis, either as a trigger and/or an effector and potentially as a target.

摘要

糖尿病膀胱功能障碍(DBD)是糖尿病(DM)最常见的并发症,影响超过50%的患者。目前,针对这种病症尚无特效治疗方法。在DBD的早期阶段,患者通常会抱怨尿频,并且常常难以感知膀胱何时已满。随着时间的推移,膀胱功能会恶化为失代偿状态,进而出现尿失禁。基于对糖尿病在眼睛、肾脏、心脏和神经方面变化的研究,现在人们认识到DM通过改变靶器官中的氧化还原信号来导致组织损伤。烟酰胺腺嘌呤二核苷酸磷酸氧化酶(NOX),其唯一功能是产生活性氧(ROS),在其他众所周知且令人困扰的糖尿病并发症中起关键作用。然而,在理解NOX如何在健康状态下控制膀胱功能以及NOX对DBD的影响方面,仍存在很大差距。本综述全面概述了各种NOX亚型及其在膀胱功能中的作用,并讨论了进一步研究NOX作为DBD发病机制的关键因素(无论是作为触发因素和/或效应器,以及潜在的靶点)的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bc7e/11504422/9e46273a9158/antioxidants-13-01155-g001.jpg

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