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An In Situ Depot for Continuous Evolution of Gaseous H2 Mediated by a Magnesium Passivation/Activation Cycle for Treating Osteoarthritis
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An In Situ Depot for Continuous Evolution of Gaseous H2 Mediated by a Magnesium Passivation/Activation Cycle for Treating Osteoarthritis

Wei-Lin Wan, Yu-Jung Lin, Po-Chien Shih, Yu-Ru Bow, Qinghua Cui, Yen Chang, Wei-Tso ChiaHsing-Wen Sung
Angewandte Chemie - International Edition, 卷.57(31), 頁碼.9875-9879
07/2018

摘要

hydrogen gas magnesium medical gas osteoarthritis tissue inflammation Catalysis Chemistry (all)
Inflammation is involved in many human pathologies, including osteoarthritis (OA). Hydrogen (H 2 ) is known to have anti-inflammatory effects; however, the bioavailability of directly administered H 2 gas is typically poor. Herein, a local delivery system that can provide a high therapeutic concentration of gaseous H 2 at inflamed tissues is proposed. The delivery system comprises poly(lactic-co-glycolic acid) microparticles that contain magnesium powder (Mg@PLGA MPs). Mg@PLGA MPs that are intra-muscularly injected close to the OA knee in a mouse model can act as an in situ depot that can evolve gaseous H 2 continuously, mediated by the cycle of passivation/activation of Mg in body fluids, at a concentration that exceeds its therapeutic threshold. The analytical data that are obtained in the biochemical and histological studies indicate that the proposed Mg@PLGA MPs can effectively mitigate tissue inflammation and prevent cartilage from destruction, arresting the progression of OA changes.

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