材料科学
老年性骨质疏松症
降级(电信)
涂层
骨质疏松症
复合材料
化学工程
医学
内科学
电子工程
工程类
作者
Shiyuan Liang,Liyuan Chen,Cong Liu,Bowen Guo,Yijie Fan,Li Zhou,Yan Liu,Dan Luo
标识
DOI:10.1002/adfm.202410931
摘要
Abstract Antioxidant enzymes are considered to be the most direct and safe candidates to effectively resist oxidative stress and treat senile osteoporosis. However, due to their size, existing enzyme delivery carriers are inevitably endocytosed by cells and subsequently enter endosomes/lysosomes with low pH and rich in acid hydrolase, resulting in the limited therapeutic effects. In this work, an ultrasmall superoxide dismutase (SOD) nanoformulation reinforced with ultrathin ZIF‐8 coating (utZIF‐SOD) via in situ coordination‐mediated self‐assembly strategy is constructed. Notably, utZIF‐SOD achieves direct, efficient cellular uptake mediated by small size effect, thereby avoiding lysosomal degradation. In particular, ultrathin ZIF‐8 coating strengthened the stability of enzyme. Even in aged cells with high oxidative stress levels, utZIF‐SOD maintained excellent stability, and its efficiency in scavenging excess intracellular reactive oxygen species (ROS) is ≈1.5 times that of native SOD, better promoting the osteogenic differentiation of aged bone marrow mesenchymal stem cells. In a senile osteoporosis mouse model, the bone mineral density increment after treatment with utZIF‐SOD is ≈2 times that of native SOD, achieving the reversal of senile osteoporosis. This work demonstrates the great promise in the synthesis of ultrasmall nanoformulations with ultrathin metal‐organic framework coating and opens new avenues for efficient enzyme delivery.
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