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Controlled release of hypoxic exosomes from PLGA microspheres attenuates IVDD progression through activating PPAR-γ
Weiqi Zhang1, Han Yin2, Chenchen Wang3
1Department of Orthopeadic Surgery, Hebei Medical University Third Hospital, Shijiazhuang, Hebei Province 050051, China; NHC Key Laboratory of Intelligent Orthopeadic Equipment, Hebei Medical University Third Hospital, Shijiazhuang, Hebei Province 050051, China; Orthopaedic Research Institution of Hebei Province, Hebei Medical University Third Hospital, Shijiazhuang, Hebei Province 050051, China.
Abstract:
Oxidative stress and apoptosis mediated senescence of nucleus pulposus cells (NPCs) and the degradation of extracellular matrix (ECM), which represent a key mechanism underlying intervertebral disc degeneration (IVDD). Mesenchymal stem cell-derived exosomes hold therapeutic potential for tissue repair; however, their clinical application is limited by rapid clearance, short half-life, and poor target specificity. To overcome these challenges, this study developed poly(lactic-co-glycolic acid) (PLGA) microspheres as a sustained-release carrier for exosomes derived under either normoxic (Exos, 21% O₂) or hypoxic (H-Exos, 1% O₂) conditions. The PLGA microspheres demonstrated high exosome-loading efficiency and provided controlled release for over four weeks. Released hypoxic exosomes activate PPAR-γ pathway, exerting better effects by reducing NPCs SA-β-gal positive rate by 59.8% and elevates Col II and ACAN levels by 30.7% and 25.5%. Animal experiments confirmed that this system effectively attenuated IVDD progression indicating its potential for clinical translation.
