Department of Biomedical Engineering, Medical College of Wisconsin, Milwaukee, Wisconsin, United States.
Department of Physiology, Medical College of Wisconsin, Milwaukee, Wisconsin, United States.
Am J Physiol Renal Physiol. 2024 Nov 1;327(5):F726-F738. doi: 10.1152/ajprenal.00204.2024. Epub 2024 Sep 12.
Angiotensin II signaling plays a crucial role in many different diseases. Although it has been known for several decades that local angiotensin II signaling molecules are present in the bladder, the understanding of their functions there is still limited, especially compared with other organ systems such as cardiovascular and respiratory systems. This article reviews current literature regarding local angiotensin II signaling in the urinary bladder. By reviewing several decades of literature, the field has provided strong evidence to support the presence of local angiotensin II signaling in the bladder, including the expression of angiotensin type 1 receptor and angiotensin type 2 receptor in both human and animal tissues. In addition, evidence suggests a functional role of angiotensin type 1 receptor in mediating bladder contractions. In bladder disease models, angiotensin II signaling can be upregulated, and angiotensin type 1 receptor activity is associated with increases in inflammation, fibrosis, and oxidative stress. We also address the gaps in knowledge that remain in understanding local angiotensin II signaling in the bladder, including limitations on clinical translatability. Although there is a strong foundation regarding the local presence and role of angiotensin II signaling in the bladder, further research is needed to support translational applications.
血管紧张素 II 信号在许多不同的疾病中起着至关重要的作用。尽管几十年来人们已经知道膀胱中存在局部血管紧张素 II 信号分子,但对其功能的了解仍然有限,尤其是与心血管和呼吸系统等其他器官系统相比。本文综述了目前关于膀胱局部血管紧张素 II 信号的文献。通过回顾几十年的文献,该领域提供了强有力的证据支持膀胱中存在局部血管紧张素 II 信号,包括在人和动物组织中表达血管紧张素 1 型受体和血管紧张素 2 型受体。此外,有证据表明血管紧张素 1 型受体在介导膀胱收缩方面具有功能作用。在膀胱疾病模型中,血管紧张素 II 信号可以被上调,血管紧张素 1 型受体活性与炎症、纤维化和氧化应激的增加有关。我们还讨论了在理解膀胱局部血管紧张素 II 信号方面仍然存在的知识差距,包括临床转化的局限性。尽管关于膀胱中局部存在和血管紧张素 II 信号作用有很强的基础,但仍需要进一步的研究来支持转化应用。