非布索坦
医学
纳米载体
痛风
药品
药理学
别嘌呤醇
靶向给药
药物输送
重症监护医学
黄嘌呤氧化酶
阿纳基纳
生物信息学
秋水仙碱
尿酸
炎性关节炎
药代动力学
痛风性关节炎
药物治疗
药物开发
作者
Karusan, Nisha Rata,Tajuddin, Hairul Anuar,Mat Radi, Nor Azlin,Karimah, Rumman,Soesilawati, Pratiwi,Mahmood, Syed,Ahmad, Noraini
出处
期刊:PubMed
[National Institutes of Health]
日期:2025-08-27
卷期号:24: 1555-1593
标识
DOI:10.17179/excli2025-8871
摘要
Gout, a prevalent form of inflammatory arthritis, arises from the deposition of monosodium urate crystals in joints due to chronic hyperuricemia. Current pharmacologic monotherapies such as xanthine oxidase inhibitors, uricosurics, NSAIDs, corticosteroids, and colchicine are often limited by inadequate dual-action efficacy, suboptimal bioavailability, and systemic side effects. Emerging nanocarrier-based drug delivery systems offer a promising alternative by improving pharmacokinetics and enhancing targeted delivery to inflamed tissues. While co-encapsulation of multiple therapeutics remains underexplored in gout, advances in related inflammatory diseases support its future application. This review explores the limitations of conventional gout therapies and highlights recent advancements in nanocarrier technologies, including liposomes, niosomes, and ethosomes, for delivering both anti-inflammatory and urate-lowering agents. Special attention is given to functionalization strategies that allow for site-specific delivery and sequential drug release, particularly in the acidic and oxidative microenvironments characteristic of acute gout flares. Co-delivery of agents such as allopurinol or febuxostat with NSAIDs or corticosteroids may reduce pill burden, improve therapeutic synergy, and enhance patient adherence. While clinical translation remains in early stages, the mechanistic rationale and encouraging preclinical outcomes of responsive, functionalized nanocarriers underscore their potential to advance precision medicine in gout management. See also the graphical abstract(Fig. 1).
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