4.7 Article

Betulinic acid regulates tumor-associated macrophage M2 polarization and plays a role in inhibiting the liver cancer progression

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INTERNATIONAL IMMUNOPHARMACOLOGY
卷 122, 期 -, 页码 -

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ELSEVIER
DOI: 10.1016/j.intimp.2023.110614

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Betulinic acid; Liver cancer; Microenvironment; M2 macrophages; Polarization

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This study found that betulinic acid (BET) inhibited M2 macrophage polarization and decreased infiltration in the microenvironment of liver cancer by binding to the STAT6 site and inhibiting STAT6 phosphorylation. These findings indicate that BET exerts an antitumor effect by modulating M2 macrophage function.
Objective: To investigate the regulatory role and mechanism of betulinic acid (BET) in tumor-associated M2 macrophage polarization. Methods: For in vitro experiments, RAW246.7 and J774A.1 cells were used, and differentiation of M2 macrophages was induced using recombinant interleukin-4/13. The levels of M2 cell marker cytokines were measured, and the proportion of F4/80+CD206+ cells was evaluated using flow cytometry. Furthermore, STAT6 signaling was detected, and H22 and RAW246.7 cells were cocultured to assess the effect of BET on M2 macrophage polarization. Changes in the malignant behavior of H22 cells after coculturing were observed and a tumorbearing mouse model was constructed to determine CD206 cell infiltration after BET intervention. Results: In vitro experiments showed that BET inhibited M2 macrophage polarization and phospho-STAT6 signal modification. Moreover, the ability to promote the malignant behavior of H22 cells was reduced in BET-treated M2 macrophages. Furthermore, in vivo experiments indicated that BET decreased M2 macrophage polarization and infiltration in the microenvironment of liver cancer. BET was noted to predominantly bind to the STAT6 site to inhibit STAT6 phosphorylation. Conclusion: BET bound chiefly to STAT6 to inhibit STAT6 phosphorylation and decrease M2 polarization in the microenvironment of liver cancer. These findings suggest that BET exerts an antitumor effect by modulating M2 macrophage function.

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