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October 23, 2025Advanced Functional Materials2 citationsOpen Access

An off‐the‐Shelf Injectable MSC Hydrogel with Microenvironment‐Driven Responsiveness for Precision Osteoarthritis Treatment

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TMTeng MaBYBangrui YuQDQing Dong

Key Points

  • Hydrogels improved cartilage repair, reducing erosion and preserving proteoglycans in OA models.
  • Using patient-derived synovial fluid, hyrogels showed significant adaptive plasticity and downregulated inflammation.
  • Adaptive technology allows cryopreserved hydrogels to be thawed and injected directly without toxic residues.
  • This scalable MSC hydrogel platform supports dynamic responses to joint inflammatory processes.

Abstract

Abstract Osteoarthritis (OA) presents a heterogeneous and dynamic synovial microenvironment that limits the efficacy of conventional therapies. Here, a cryopreservable, microenvironment‐responsive mesenchymal stem cells (MSCs) hydrogel platform is reported for personalized OA therapy, addressing OA's heterogeneous synovial challenges. The system employs a glycerol/trehalose‐based cryoprotectant cocktail enabling direct thaw‐and‐inject application without cytotoxic residues. Using OA patient‐derived synovial fluid (SF), three in vitro models (SF exposure, SF‐chondrocyte, and SF‐macrophage co‐cultures) demonstrated MSC hydrogels’ adaptive plasticity, activating antioxidant, immunomodulatory, and matrix‐regenerative programs. MSCs engaged in bidirectional crosstalk with chondrocytes and macrophages, suppressing catabolism, enhancing cartilage repair, and polarizing macrophages toward anti‐inflammatory phenotypes. In OA rats, cryopreserved hydrogels reduced cartilage erosion, preserved proteoglycans, and inhibited matrix degradation. This scalable, off‐the‐shelf platform integrates engineered cryoprotection, injectability, and dynamic microenvironmental adaptation, offering a precision therapeutic strategy for degenerative and inflammatory joint diseases.

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Cite This Study

Ma et al. (2025) studied this question.

synapsesocial.com/papers/68f9bad7d7353cfcfc68f606https://doi.org/10.1002/adfm.202510958
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