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Updated: May 6, 2026

Investigation of Macrophage Polarization Using Bone Marrow Derived Macrophages
Published on: June 23, 2013
Multifunctional poly(amino acid) nanomedicine modulates macrophage polarization for osteosarcoma immunotherapy
Chao Sun1, Guanqing Yang2, Tongtong Zhu3
1Department of Orthopedic Surgery, Orthopedic Center, The First Hospital of Jilin University, Jilin University, 1 Xinmin Street, Changchun 130021, PR China; State Key Laboratory of Polymer Science and Technology, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, 5625 Renmin Street, Changchun 130022, PR China.
None:
In tumor microenvironments (TMEs), M1 macrophages suppress tumors through cytotoxic molecule secretion and antibody-dependent cell-mediated cytotoxicity, whereas M2 macrophages promote tumor proliferation via TGF-β and Arg1 release. However, existing macrophage-modulating strategies remain suboptimal owing to insufficient M2 suppression and inefficient M1 induction. To address this limitation, a multifunctional nanomedicine (PM-DPA/R848) is developed by loading the TLR7/8 agonist resiquimod (R848) into a nanocarrier composed of poly(L-methionine) (PM) and 1,2-distearoyl-sn-glycero-3-phosphoethanolamine-N-poly(ethylene glycol)-alendronate (DSPE-PEG-ALN, DPA). The PM component reduces intracellular reactive oxygen species (ROS) levels in macrophages by 63.8%, resulting in a 31.1% reduction in M2-polarized macrophages compared with the Control group. Concurrently, R848 release induces M1 reprogramming through activation of the MYD88/IRAK1/NF-κB pathway, increasing the M1 macrophage population by 1.4-fold. Moreover, DPA enhances intratumoral drug accumulation in vivo, and PM-DPA/R848 achieves a 77% tumor suppression rate. Thus, PM-DPA/R848 acts as a precision nanoformulation that synergistically suppresses M2 macrophages and promotes M1 polarization, providing a promising strategy for osteosarcoma immunotherapy.
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