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尿酸在健康和疾病中的作用:从生理功能到致病机制。

Uric acid in health and disease: From physiological functions to pathogenic mechanisms.

机构信息

Faculty of Pharmaceutical Sciences, Institute of Medical, Pharmaceutical and Health Sciences, Kanazawa University, Kanazawa, Japan.

Faculty of Pharmaceutical Sciences, Institute of Medical, Pharmaceutical and Health Sciences, Kanazawa University, Kanazawa, Japan.

出版信息

Pharmacol Ther. 2024 Apr;256:108615. doi: 10.1016/j.pharmthera.2024.108615. Epub 2024 Feb 19.

Abstract

Owing to renal reabsorption and the loss of uricase activity, uric acid (UA) is strictly maintained at a higher physiological level in humans than in other mammals, which provides a survival advantage during evolution but increases susceptibility to certain diseases such as gout. Although monosodium urate (MSU) crystal precipitation has been detected in different tissues of patients as a trigger for disease, the pathological role of soluble UA remains controversial due to the lack of causality in the clinical setting. Abnormal elevation or reduction of UA levels has been linked to some of pathological status, also known as U-shaped association, implying that the physiological levels of UA regulated by multiple enzymes and transporters are crucial for the maintenance of health. In addition, the protective potential of UA has also been proposed in aging and some diseases. Therefore, the role of UA as a double-edged sword in humans is determined by its physiological or non-physiological levels. In this review, we summarize biosynthesis, membrane transport, and physiological functions of UA. Then, we discuss the pathological involvement of hyperuricemia and hypouricemia as well as the underlying mechanisms by which UA at abnormal levels regulates the onset and progression of diseases. Finally, pharmacological strategies for urate-lowering therapy (ULT) are introduced, and current challenges in UA study and future perspectives are also described.

摘要

由于肾脏的重吸收和尿酸酶活性的丧失,尿酸(UA)在人类中的生理水平要远远高于其他哺乳动物,这在进化过程中提供了生存优势,但也增加了患某些疾病(如痛风)的易感性。尽管已经在患者的不同组织中检测到单钠尿酸盐(MSU)晶体沉淀作为疾病的触发因素,但由于在临床环境中缺乏因果关系,可溶性 UA 的病理作用仍存在争议。UA 水平的异常升高或降低与一些病理状态有关,也称为 U 形关联,这意味着由多种酶和转运蛋白调节的 UA 的生理水平对维持健康至关重要。此外,UA 在衰老和一些疾病中的保护潜力也已被提出。因此,UA 在人类中作为双刃剑的作用取决于其生理或非生理水平。在这篇综述中,我们总结了 UA 的生物合成、膜转运和生理功能。然后,我们讨论了高尿酸血症和低尿酸血症的病理参与以及 UA 在异常水平下调节疾病发生和进展的潜在机制。最后,介绍了尿酸降低治疗(ULT)的药理学策略,并描述了 UA 研究的当前挑战和未来展望。

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