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Poly(l-glutamic Acid)-Based Microgels with Long-Term Synergistic Lubrication and MMP-Responsive Anti-Inflammatory Delivery for Osteoarthritis Therapy.

Created on 14 Sep 2026

Authors

Rong Wu, Yanyang Chen, Junyu Wu, Kaixuan Ren, Wenguo Cui, Jingbo Yin

Published in

Biomacromolecules. Volume 27. Issue 9. Pages 6058-6073. Sep 14, 2026.

Abstract

Osteoarthritis (OA) is a degenerative joint disease characterized by the failure of cartilage lubrication and persistent inflammation induced by friction-generated debris. Therefore, an effective OA treatment strategy should simultaneously enhance joint long-term lubrication and suppress inflammation. Toward this goal, we developed durable Lipo/PADM microgels via multiple cross-linking to integrate sustained lubrication with matrix metalloproteinase (MMP)-responsive dexamethasone release. The microgels maintained a low coefficient of friction of 0.029, remaining 24.3% lower than PBS after 8 weeks of in vitro degradation. In the MMP-rich OA microenvironment, ester-bond cleavage enabled sustained, on-demand drug release, reaching 70% within 14 days. Lipo/PADM microgels restored type II collagen expression, suppressed MMP-13 in bone marrow mesenchymal stem cells, and alleviated the OA-associated catabolic microenvironment. Intra-articular administration significantly reduced cartilage degeneration and delayed OA progression. These poly(glutamic acid)-based microgels offer a promising OA therapy through durable lubrication, responsive drug delivery, and prolonged intra-articular retention.

PMID:
42734288
Bibliographic data and abstract were imported from PubMed on 14 Sep 2026.

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