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纳米复合水凝胶通过外部/内部串扰优化微环境,以在骨缺损愈合中重新编程骨质疏松症的内环境稳定。

Nanocomposite hydrogels optimize the microenvironment by exterior/interior crosstalk for reprogramming osteoporotic homeostasis in bone defect healing.

作者信息

Chen Dengke, Yang Yuying, Li Beibei, Yao Yingjuan, Xu Junyi, Liu Rongyan, Peng Jiao, Chang Zhuangpeng, Zhao Rui, Hou Ruigang, Lee Min, Xu Xianghui, Zhang Xiao

机构信息

School of Pharmacy and Second Clinical Medical College, Shanxi Medical University, Taiyuan, Shanxi 030001, PR China.

School of Pharmacy and Second Clinical Medical College, Shanxi Medical University, Taiyuan, Shanxi 030001, PR China; School of Pharmacy, Zhejiang University, Hangzhou, Zhejiang 310058, PR China.

出版信息

J Control Release. 2025 Apr 10;380:976-993. doi: 10.1016/j.jconrel.2025.02.048. Epub 2025 Feb 22.

Abstract

Discovering new tactics for healing bone defects becomes a worldwide challenge in osteoporosis patients. The disordered acidic microenvironment plays a pivotal role in driving the imbalance of bone homeostasis regulated by osteoblasts and osteoclasts. However, the scarcity of hydrogel materials developed to optimize local bone microenvironment has made osteoporotic defect healing more challenging. Herein, we present innovative nanocomposite hydrogels with precisely engineered microarchitectures designed to optimize the acidic microenvironment by facilitating crosstalk between exterior and interior spaces, aimed at enhancing the reconstruction of osteoporotic bone defects. The chlorogenic acid grafted chitosan as double-sided crosslinkers is specially designed to not only combine with acid-reversible Laponite® nanosheet via interfacial interactions but also integrate with gold nanorod (a typical photothermal agent) through catechol-Au bond. The supramolecular construction of nanocomposite hydrogels holds promise for achieving a highly continuous and homogeneous pore network microarchitecture. As expected, hydrogels display outstanding spatiotemporal local mild hyperthermia, which accelerates the neutralization reaction between OH ions released from Laponite® and hydrogen ions (pH ∼ 4.0). The optimized microenvironment restores osteoclast/osteoblast homeostasis, resulting in the promotion of osteoblastogenesis and inhibition of osteoclastogenesis, thereby facilitating the healing of osteoporotic bone defects. This work is hoped to design versatile hydrogels for optimizing the microenvironment, displaying promising integrative substitute materials for clinically effective treatment of osteoporotic bone defects.

摘要

在骨质疏松症患者中,寻找治疗骨缺损的新策略已成为一项全球性挑战。紊乱的酸性微环境在驱动由成骨细胞和破骨细胞调节的骨稳态失衡方面起着关键作用。然而,用于优化局部骨微环境的水凝胶材料稀缺,这使得骨质疏松性骨缺损的愈合更具挑战性。在此,我们展示了具有精确设计微结构的创新纳米复合水凝胶,旨在通过促进内外空间的相互作用来优化酸性微环境,以增强骨质疏松性骨缺损的修复。接枝绿原酸的壳聚糖作为双面交联剂,经过特殊设计,不仅能通过界面相互作用与酸可逆性锂皂石纳米片结合,还能通过儿茶酚 - 金键与金纳米棒(一种典型的光热剂)整合。纳米复合水凝胶的超分子结构有望实现高度连续且均匀的孔网络微结构。正如预期的那样,水凝胶表现出出色的时空局部温和热疗效果,加速了锂皂石释放的OH离子与氢离子(pH ∼ 4.0)之间的中和反应。优化后的微环境恢复了破骨细胞/成骨细胞的稳态,促进了成骨细胞生成并抑制了破骨细胞生成,从而促进了骨质疏松性骨缺损的愈合。这项工作有望设计出用于优化微环境的多功能水凝胶,为临床上有效治疗骨质疏松性骨缺损展示出有前景的综合替代材料。

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