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非甾体抗炎药芬那酸盐对氯离子通道的多效性作用:离子通道病的契机?

Pleiotropic Effects of the NSAID Fenamates on Chloride Channels: Opportunity for Ion Channelopathies?

作者信息

Laghetti Paola, Saltarella Ilaria, Dell'Atti Simone, Desaphy Jean-François, Altamura Concetta

机构信息

Section of Pharmacology, Department of Precision and Regenerative Medicine, School of Medicine, University of Bari Aldo Moro, Bari, Italy.

出版信息

Pharmacol Res Perspect. 2025 Aug;13(4):e70144. doi: 10.1002/prp2.70144.

Abstract

Chloride channels are involved in many cellular processes, including cell volume regulation, modulation of cell excitability, and electrolyte and water secretion. Mutations of these proteins are associated with heterogeneous diseases such as myotonia, cystic fibrosis, epilepsy, deafness, lysosomal storage disease, and various kinds of renal and ophthalmic dysfunctions, also known as channelopathies. Thus, drugs targeting chloride channels may have important therapeutic applications. In this context, fenamates, commonly used for their anti-inflammatory properties, have been explored for drug repurposing in chloride channelopathies thanks to their ability to modulate multiple chloride channels. This narrative review resumes the effects of niflumic acid (NFA), flufenamic acid (FFA), mefenamic acid (MFA), meclofenamic acid (MCFA), and tolfenamic acid (TFA) on different types of chloride channel. It emerges that fenamates have a wide spectrum of activities on these channels that vary depending on multiple factors like channel isoforms, extracellular and intracellular conditions, and cell and tissue types. They may also exhibit both activating and inhibitory effects depending on their concentration. Therefore, thanks to their variegated modulatory activity on chloride channels, fenamates might be considered promising lead compounds for the development of new drug candidates that can target these altered channels involved in channelopathies. Trial Registration: EudraCT number: 2021-000708-39; ClinicalTrials.gov identifier: NCT029930005 and NCT02429570.

摘要

氯离子通道参与许多细胞过程,包括细胞体积调节、细胞兴奋性调节以及电解质和水的分泌。这些蛋白质的突变与多种疾病相关,如肌强直、囊性纤维化、癫痫、耳聋、溶酶体贮积病以及各种肾脏和眼科功能障碍,也被称为通道病。因此,靶向氯离子通道的药物可能具有重要的治疗应用。在这种背景下,由于其抗炎特性而常用的非甾体抗炎药(芬那酸盐),因其能够调节多种氯离子通道,已被探索用于氯离子通道病的药物再利用。这篇叙述性综述总结了尼氟酸(NFA)、氟芬那酸(FFA)、甲芬那酸(MFA)、甲氯芬那酸(MCFA)和托芬那酸(TFA)对不同类型氯离子通道的影响。结果表明,芬那酸盐对这些通道具有广泛的活性,其活性因多种因素而异,如通道亚型、细胞外和细胞内条件以及细胞和组织类型。它们也可能根据浓度表现出激活和抑制作用。因此,由于它们对氯离子通道具有多样的调节活性,芬那酸盐可能被认为是开发新型候选药物的有前景的先导化合物,这些候选药物可以靶向参与通道病的这些异常通道。试验注册:欧盟临床试验注册号:2021 - 000708 - 39;美国国立医学图书馆临床试验标识符:NCT029930005和NCT02429570。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/239b/12199206/07a0464f4c14/PRP2-13-e70144-g003.jpg

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