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用于高效治疗骨质疏松症的近红外响应型一氧化碳/硫化氢双气体纳米发电机的“一石三鸟”策略

"Three birds, one stone" strategy of NIR-responsive CO/HS dual-gas Nanogenerator for efficient treatment of osteoporosis.

作者信息

Yang Guoyu, Ye Jing, Wang Jingcheng, Liu Huijie, Long Yanli, Jiang Junkai, Miao Xinxin, Deng Jianjian, Wu Tianlong, Li Tao, Cheng Xigao, Wang Xiaolei

机构信息

Department of Orthopedics, the Second Affiliated Hospital, Jiangxi Medical College, Nanchang University, Nanchang, Jiangxi, 330088, PR China.

The National Engineering Research Center for Bioengineering Drugs and the Technologies, Institute of Translational Medicine, Nanchang University, Nanchang, Jiangxi, 330088, PR China.

出版信息

Mater Today Bio. 2024 Aug 6;28:101179. doi: 10.1016/j.mtbio.2024.101179. eCollection 2024 Oct.

Abstract

Osteoporosis (OP), the most prevalent bone degenerative disease, has become a significant public health challenge globally. Current therapies primarily target inhibiting osteoclast activity or stimulating osteoblast activation, but their effectiveness remains suboptimal. This paper introduced a "three birds, one stone" therapeutic approach for osteoporosis, employing upconversion nanoparticles (UCNPs) to create a dual-gas storage nanoplatform (UZPA-CP) targeting bone tissues, capable of concurrently generating carbon monoxide (CO) and hydrogen sulfide (HS). Through the precise modulation of 808 nm near-infrared (NIR) light, the platform could effectively control the release of CO and HS in the OP microenvironment, and realize the effective combination of promoting osteogenesis, inhibiting osteoclast activity, and improving the immune microenvironment to achieve the therapeutic effect of OP. High-throughput sequencing results further confirmed the remarkable effectiveness of the nanoplatform in inhibiting apoptosis, modulating inflammatory response, inhibiting osteoclast differentiation and regulating multiple immune signaling pathways. The gas storage nanoplatform not only optimized the OP microenvironment with the assistance of NIR, but also restored the balance between osteoblasts and osteoclasts. This comprehensive therapeutic strategy focused on improving the bone microenvironment, promoting osteogenesis and inhibiting osteoclast activity provides an ideal new solution for the treatment of metabolic bone diseases.

摘要

骨质疏松症(OP)是最常见的骨退行性疾病,已成为全球重大的公共卫生挑战。目前的治疗方法主要针对抑制破骨细胞活性或刺激成骨细胞活化,但其效果仍不尽人意。本文介绍了一种针对骨质疏松症的“一石三鸟”治疗方法,即采用上转换纳米颗粒(UCNPs)构建靶向骨组织的双气体储存纳米平台(UZPA-CP),该平台能够同时产生一氧化碳(CO)和硫化氢(H₂S)。通过精确调控808纳米近红外(NIR)光,该平台可有效控制OP微环境中CO和H₂S的释放,并实现促进成骨、抑制破骨细胞活性和改善免疫微环境的有效结合,从而达到治疗OP的效果。高通量测序结果进一步证实了该纳米平台在抑制细胞凋亡、调节炎症反应、抑制破骨细胞分化和调节多种免疫信号通路方面具有显著效果。该气体储存纳米平台不仅在近红外光的辅助下优化了OP微环境,还恢复了成骨细胞与破骨细胞之间的平衡。这种专注于改善骨微环境、促进成骨和抑制破骨细胞活性的综合治疗策略为代谢性骨病的治疗提供了一种理想的新解决方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1ae7/11364908/eb9af9435e12/ga1.jpg

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