材料科学
活性氧
过氧化氢酶
聚乙二醇
生物物理学
成骨细胞
体外
化学
生物化学
生物
抗氧化剂
作者
Min Ji Kim,Soo Bin Yoon,Han Bi Ji,Cho Rim Kim,Jae Hoon Han,Sena Kim,Chang Hee Min,Chul Lee,Lan Sook Chang,Young Bin Choy
标识
DOI:10.1021/acsami.4c08350
摘要
We propose a hydrogel immobilized with manganese porphyrin (MnP), a biomimetic superoxide dismutase (SOD), and catalase (CAT) to modulate reactive oxygen species (ROS) and hypoxia that impede the repair of large bone defects. Our hydrogel synthesis involved thiolated chitosan and polyethylene glycol-maleimide conjugated with MnPs (MnP-PEG-MAL), which enabled in situ gelation via a click reaction. Through optimization, a hydrogel with mechanical properties and catalytic effects favorable for bone repair was selected. Additionally, the hydrogel was incorporated with risedronate to induce synergistic effects of ROS scavenging, O2 generation, and sustained drug release. In vitro studies demonstrated enhanced proliferation and differentiation of MG-63 cells and suppressed proliferation and differentiation of RAW 264.7 cells in ROS-rich environments. In vivo evaluation of a calvarial bone defect model revealed that this multifunctional hydrogel facilitated significant bone regeneration. Therefore, the hydrogel proposed in this study is a promising strategy for addressing complex wound environments and promoting effective bone healing.
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