An Injectable Thermosensitive Hydrogel Containing Resveratrol and Dexamethasone‐Loaded Carbonated Hydroxyapatite Microspheres for the Regeneration of Osteoporotic Bone Defects

Author:

Li Jianan1,Li Lang12,Wu Tingkui13,Shi Kun1,Bei Zhongwu1,Wang Meng1,Chu Bingyang1,Xu Keqi1,Pan Meng1,Li Yicong1,Hu Xulin1,Zhang Linghong1,Qu Ying14,Qian Zhiyong1ORCID

Affiliation:

1. Department of Biotherapy Cancer Center and State Key Laboratory of Biotherapy West China Hospital Sichuan University Chengdu 610041 China

2. Department of Pediatric Surgery West China Hospital Sichuan University Chengdu 610041 China

3. Department of Orthopedics West China Hospital Sichuan University Chengdu 610041 China

4. Department of Hematology and Institute of Hematology West China Hospital Sichuan University Chengdu 610041 China

Abstract

AbstractBone defects in osteoporosis usually present excessive reactive oxygen species (ROS), abnormal inflammation levels, irregular shapes and impaired bone regeneration ability; therefore, osteoporotic bone defects are difficult to repair. In this study, an injectable thermosensitive hydrogel poly (D, L‐lactide)‐poly (ethylene glycol)‐ poly (D, L‐lactide) (PLEL) system containing resveratrol (Res) and dexamethasone (DEX) is designed to create a microenvironment conducive to osteogenesis in osteoporotic bone defects. This PLEL hydrogel is injected and filled irregular defect areas and achieving a rapid sol‐gel transition in situ. Res has a strong anti‐inflammatory effects that can effectively remove excess free radicals at the damaged site, guide macrophage polarization to the M2 phenotype, and regulate immune responses. Additionally, DEX can promote osteogenic differentiation. In vitro experiments showed that the hydrogel effectively promoted osteogenic differentiation of mesenchymal stem cells, removed excess intracellular ROS, and regulated macrophage polarization to reduce inflammatory responses. In vivo experiments showed that the hydrogel promoted osteoporotic bone defect regeneration and modulated immune responses. Overall, this study confirmed that the hydrogel can treat osteoporotic bone defects by synergistically modulating bone damage microenvironment, alleviating inflammatory responses, and promoting osteogenesis; thus, it represents a promising drug delivery strategy to repair osteoporotic bone defects.

Funder

West China Hospital, Sichuan University

Natural Science Foundation of Sichuan Province

National Natural Science Foundation of China

Publisher

Wiley

Subject

General Materials Science,General Chemistry

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