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Updated: May 24, 2026

Studying the Effects of Tumor-Secreted Paracrine Ligands on Macrophage Activation using Co-Culture with Permeable Membrane Supports
Published on: November 28, 2019
Macrophage polarization induced by neuropeptide methionine enkephalin (MENK) promotes tumoricidal responses
Wenna Chen1, Jinling Liu, Jingjuan Meng
1Department of Immunology, School of Basic Medical Science, China Medical University, No. 92, North Second Road, Heping District, Shenyang 110001, People's Republic of China.
Abstract:
The aim of this study is to investigate macrophages polarization induced by methionine enkephalin (MENK) that promotes tumoricidal responses in vivo and in vitro. Both phenotypic and functional activities of macrophages were assessed by the quantitative analysis of key surface molecules on macrophages with flow cytometry, immunofluorescent staining, and the production of cytokines with enzyme-linked immunosorbent assay and reverse transcriptase-polymerase chain reaction. Our results showed that MENK could down-regulate the expression of CD206 and the production of arginase-1 (the markers of alternatively activated (M2) macrophage) in tumor-associated macrophages in vivo, meanwhile it could significantly up-regulate the expression of CD64, MHC-II, and the production of induced nitric oxide synthase (the markers of classically activated (M1) macrophages). Furthermore, the studies on bone marrow-derived macrophages treated with MENK (10(-12) M) in vitro had demonstrated that MENK could markedly increase tumoricidal activity. MENK could also enhance the release of reactive oxidant species and the production of interleukin-12p40, tumor necrosis factor-α, while decrease the production of interleukin-10. In conclusion, MENK could effectively induce M2 macrophages polarizing to M1 macrophages, sequentially to modulate the Th1 responses of the host immune system. Our results suggest that MENK might have great potential as a new therapeutic agent for cancer.
Insights
Methionine enkephalin (MENK) effectively reprograms tumor-associated macrophages from M2 to M1. This macrophage polarization enhances anti-tumor immunity and suggests MENK as a potential cancer therapeutic agent.
Area of Science:
- Immunology
- Cancer Biology
- Pharmacology
Background:
- Macrophages play a critical role in the tumor microenvironment.
- Tumor-associated macrophages (TAMs) often exhibit an immunosuppressive M2 phenotype.
- Reprogramming TAMs to an anti-tumor M1 phenotype is a promising cancer immunotherapy strategy.
Purpose of the Study:
- To investigate the effect of methionine enkephalin (MENK) on macrophage polarization.
- To determine if MENK can induce tumoricidal responses in vitro and in vivo.
- To explore MENK's potential as a cancer therapeutic agent.
Main Methods:
- Quantitative analysis of macrophage surface molecules using flow cytometry and immunofluorescent staining.
- Assessment of cytokine production via enzyme-linked immunosorbent assay (ELISA) and reverse transcriptase-polymerase chain reaction (RT-PCR).
- In vitro studies using bone marrow-derived macrophages treated with MENK.
Main Results:
- MENK down-regulated M2 markers (CD206, arginase-1) and up-regulated M1 markers (CD64, MHC-II, inducible nitric oxide synthase) on TAMs in vivo.
- MENK treatment in vitro significantly increased macrophage tumoricidal activity.
- MENK enhanced reactive oxygen species and pro-inflammatory cytokine (IL-12p40, TNF-α) production, while decreasing IL-10.
Conclusions:
- MENK effectively induces M2 to M1 macrophage polarization.
- This polarization modulates host Th1 immune responses, promoting anti-tumor activity.
- MENK shows significant potential as a novel therapeutic agent for cancer treatment.
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