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Updated: Aug 27, 2026

Treatment of Osteochondral Defects in the Rabbit's Knee Joint by Implantation of Allogeneic Mesenchymal Stem Cells in Fibrin Clots
Published on: May 21, 2013
[Advances in immunomodulatory strategies for meniscal regeneration]
Jiayi Li1,2, Hao Li1,2, Yuhao Mu1,2
1Institute of Orthopedics, the Fourth Medical Center of the Chinese PLA General Hospital, Beijing Key Laboratory of Bio-Fabrication and Regenerative Translation Applications for Orthopedic Tissues and Organs, Key Laboratory of Musculoskeletal Trauma & War Injuries, Beijing, 100080, P. R. China.
Objective:
To review the research progress regarding the effects of the local microenvironment after meniscal injury and immunomodulatory strategies for meniscal regeneration.
Methods:
Relevant literature on meniscal regeneration, macrophage polarization, and tissue engineering was retrieved. The mechanisms underlying immune microenvironment imbalance after injury were summarized, and immunomodulatory interventions were analyzed from four perspectives: drugs and bioactive molecules, stem cells and exosomes, biomaterials, and external physical stimuli.
Results:
The highly inflammatory microenvironment dominated by M1 macrophages after injury significantly hinders tissue repair. Current studies mainly promote functional meniscal regeneration through immunomodulatory interventions in four aspects: drugs and bioactive molecules inhibit inflammatory cascades by blocking inflammatory receptors and related signaling pathways; stem cells and exosomes modulate the local immune microenvironment through paracrine effects and enhance the functions of repair-related cells; functionalized biomaterials achieve synergy between immunomodulation and mechanical support through active component delivery, physicochemical property regulation, and structural design; and external physical stimuli, such as acoustic, electrical, and magnetic stimulation, serve as non-invasive auxiliary approaches for inflammation regulation and tissue repair.
Conclusion:
Remodeling the immune microenvironment is critical for functional meniscal regeneration. Smart scaffolds with both mechanical support and immunomodulatory functions should be further developed.
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