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Transdermally administered nanozymes-infused F127/methylcellulose hydrogel for osteoarthritis relief via immunomodulatory pathways

  • Chih Kuang Chen
  • , Hui Wen Chiu
  • , Hieu Trung Nguyen
  • , Hsien Tsung Lu*
  • , Andrew E.Y. Chuang*
  • *Corresponding author for this work
  • Taipei Medical University
  • University of Medicine and Pharmacy at Ho Chi Minh City

Research output: Contribution to journalJournal Article peer-review

7 Scopus citations

Abstract

Osteoarthritis (OA) is a debilitating condition characterized by chronic inflammation, oxidative stress, hypoxia, angiogenesis-driven pain, and cartilage degradation, thus presenting significant therapeutic challenges. Herein, we introduce a wearable percutaneous hydrogel (Pluronic F127/methylcellulose) encapsulation platform, designed to address the multifaceted pathology of OA through a synergistic integration of multifunctional components. This nanomedicine-hydrogel system incorporates platelet-derived extracellular vesicles (pEVs) for inflammation delivery, phototherapeutic molybdenum disulfide (MoS2), capsaicin (CAP) and diferuloylmethane (DIF) for potent anti-inflammatory and antioxidative effects and hydrogen-bonded organic frameworks (HOFs) to enhance drug encapsulation and conductivity. Experimental findings demonstrated the pEV/MoS2/DIF/CAP NZHOF@F127/MC's ability to mitigate inflammation by promoting macrophage polarization from the M1 to the M2 phenotype, alleviate oxidative stress, inhibit angiogenesis, and modulate hypoxic microenvironments through the percutaneous phototherapeutic pEV/MoS2/DIF/CAP NZ-HOF@F127/MC. In vivo studies in a rat model of OA revealed substantial reductions in joint inflammation, enhanced cartilage regeneration, and improved mobility following near-infrared (NIR)-triggered phototherapy. The pEV/MoS2/DIF/CAP NZ-HOF@F127/MC's multifaceted mechanisms, including precise drug delivery, controlled release, and on-demand photo-responsiveness, underscore its transformative potential for OA management. These findings present a promising therapeutic strategy for OA, addressing inflammation, oxidative stress, and joint lesion mitigation, with strong potential for clinical translation.

Original languageEnglish
Article number144114
JournalInternational Journal of Biological Macromolecules
Volume314
DOIs
StatePublished - 06 2025

Bibliographical note

Publisher Copyright:
© 2025 Elsevier B.V.

Keywords

  • Anti-inflammation
  • Immunomodulation
  • Modulation of hypoxic microenvironment
  • Osteoarthritis alleviation
  • Percutaneous phototherapeutic pEV/MoS2/DIF/CAP NZ-HOF@F127/MC

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