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Pyroptosis-responsive microspheres modulate the inflammatory microenvironment to retard osteoporosis in female mice

Nature Communications. 2025-08; 
Shunyi Lu, Jie Cao, Zhuorun Song, Fei Gong, Peng Yang, Jun Ge, Yunfei He, Zhihui Han, Guanghui Hou, Zimin Zhang, Yuqi Yang, Yun Teng, Zengli Zhang, Jun Zou, Liang Cheng, Huilin Yang
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Abstract

The treatment of osteoporosis and related bone defects remains challenging. This study identifies pyroptosis-driven inflammation as a key disruptor of bone homeostasis. To address this, we develop a magnesium-gelatin composite microsphere scaffold (GelMa/Mg/DMF MS) that exploit pyroptosis blockade and hydrogen-mediated inflammation regulation for osteoporosis treatment. This porous microsphere scaffold is implanted into bone defects to achieve the sustained release of hydrogen gas, magnesium ions (Mg2+), and dimethyl fumarate (DMF). DMF act by activating the nuclear factor erythroid-related factor 2 to prevent osteoblast pyroptosis, and combine with the antioxidant effects of hydrogen, effectively remodel the i... More

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