高尿酸血症
抗氧化剂
痛风
尿酸
化学
尿酸氧化酶
炎症
药理学
痛风性关节炎
生物化学
医学
载脂蛋白B
糖尿病
脂质代谢
肾
转染
内科学
内分泌学
肾结石
滑液
作者
Keqian Du,Yiming Guo,Jie Zhou,Yaping Liu,Lin Jiang,Dawei Hua,Die Zhang,Yuqi Zhang,Zijian Deng,Zheng Xingyu,Guo J,Jing Ni,Yingjie Li,S Y Sun,Zhiming Lin,J Huang,Linping Wu
标识
DOI:10.1038/s41467-026-73544-9
摘要
Hyperuricemia and its complications, including gouty arthritis and hyperuricemic nephropathy, are driven by elevated serum urate levels and crystal deposition. While exogenous uricase offers therapeutic potential, its utility is limited by rapid clearance and immunogenicity. Here we show a malic acid-derived lipid nanoparticle platform with antioxidant and low-immunogenicity properties for delivering circular RNA encoding secretory uricase to treat hyperuricemia and its complications. Leveraging the safety and anti-inflammatory and antioxidant properties of malic acid, a combinatorial library of ionizable lipids is developed. After systematic screening and optimization, LMA2-C10 LNPs are selected to deliver circRNA for its high transfection efficiency, low-immunogenicity, and antioxidant activity. In male animal models, the system achieves sustained urate reduction, attenuation of tissue inflammation and fibrosis, alleviation of arthritic pain, and preservation of renal function. This integrated strategy simultaneously addresses hepatic urate catabolism, peripheral crystal clearance, and long-lasting pharmacological activity, presenting an alternative strategy to resolve the core challenges in hyperuricemia management. Antioxidant malic-acid-derived lipid nanoparticles deliver circRNA encoding secretory uricase, showing long-lasting urate reduction, peripheral crystal clearance, reduced inflammation and fibrosis, and preserved renal function in hyperuricemia models.
科研通智能强力驱动
Strongly Powered by AbleSci AI