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用于类风湿性关节炎治疗中高效产氢的贵金属和透明质酸增强的金/银@硫化锌核壳结构光催化剂

Au/Ag@ZnS yolk-shell photocatalysts enhanced with noble metals and hyaluronic acid for efficient hydrogen production in rheumatoid arthritis therapy.

作者信息

Chao Minghao, Huang Yuqi, Zhou Peng, Wu Guoquan, Ren Yiping, Yan Hanrong, Dong Shuqing, Yan Xiang, Chen Hongliang, Gao Fenglei

机构信息

Jiangsu Key Laboratory of New Drug Research and Clinical Pharmacy, XuZhou Medical University, 221004 Xuzhou, China; Department of Orthopedics, the Affiliated Hospital of Xuzhou Medical University, 221004 Xuzhou, China; Department of Orthopaedic Surgery, Lishui Central Hospital and Fifth Affiliated Hospital of Wenzhou Medical University, Lishui 323000, Zhejiang Province, China.

Department of Dermatology, the Affiliated Suzhou Hospital of Nanjing Medical University, Suzhou Municipal Hospital, Suzhou 215000, Jiangsu, China.

出版信息

Int J Biol Macromol. 2024 Sep 24;280(Pt 3):135929. doi: 10.1016/j.ijbiomac.2024.135929.

Abstract

Rheumatoid arthritis, characterized by the abnormal proliferation of synovial cells and extensive macrophage infiltration, is a chronic inflammatory disease. Molecular hydrogen, known for its antioxidant properties, has shown promise in eliminating reactive oxygen species. However, the low solubility and bioavailability of hydrogen limit the effectiveness of this therapy. To overcome these issues, we developed a novel yolk-shell heterostructure, H-AAZS (Au/Ag@ZnS modified hyaluronic acid), utilizing a hydrothermal cation exchange process. Through ion doping, semiconductor hybridization, and Schottky barriers in H-AAZS, photocatalysis for hydrogen generation has been successfully implemented using 660 nm laser irradiation. Additionally, the H-AAZS demonstrate the capacity for mild photothermal therapy, inducing apoptosis in synovial cells with Au's hot electrons with 660 nm laser irradiation. This strategy not only improves the abnormal proliferation of synovial cells but also avoids the exacerbation of inflammation caused by thermal stimulation. Both in vitro and in vivo experiments validate the synergistic effects of hydrogen production mediated anti-inflammatory responses, macrophage polarization and photothermal therapy. Therefore, this work represents a significant advancement as it ingeniously harnesses photocatalysis to modulate the synovial microenvironment while mitigating the side effects associated with photothermal therapy. This nanocrystal provides new and valuable insights into the potential treatment of Rheumatoid arthritis.

摘要

类风湿性关节炎是一种慢性炎症性疾病,其特征在于滑膜细胞异常增殖和广泛的巨噬细胞浸润。以其抗氧化特性而闻名的分子氢在消除活性氧方面显示出前景。然而,氢的低溶解度和生物利用度限制了这种疗法的有效性。为了克服这些问题,我们利用水热阳离子交换过程开发了一种新型的蛋黄壳异质结构H-AAZS(金/银@硫化锌修饰的透明质酸)。通过H-AAZS中的离子掺杂、半导体杂交和肖特基势垒,使用660nm激光照射成功实现了光催化产氢。此外,H-AAZS表现出温和的光热治疗能力,在660nm激光照射下,利用金的热电子诱导滑膜细胞凋亡。这种策略不仅改善了滑膜细胞的异常增殖,还避免了热刺激引起的炎症加剧。体外和体内实验均验证了产氢介导的抗炎反应、巨噬细胞极化和光热治疗的协同作用。因此,这项工作代表了一项重大进展,因为它巧妙地利用光催化来调节滑膜微环境,同时减轻与光热治疗相关的副作用。这种纳米晶体为类风湿性关节炎的潜在治疗提供了新的有价值的见解。

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