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Updated: Apr 18, 2026

In Vitro Assay to Study Tumor-macrophage Interaction
Published on: August 1, 2019
Tumor-associated macrophages as an emerging target against tumors: Creating a new path from bench to bedside
Masahisa Jinushi1, Yoshihiro Komohara2
1Institute for Advanced Medical Research, Keio University Graduate School of Medicine, Tokyo, Japan; Institute for Genetic Medicine, Hokkaido University, Sapporo, Japan.
Abstract:
Tumor-associated macrophages are a critical component of tumor microenvironments, which affect tumor growth, tumor angiogenesis, immune suppression, metastasis and chemoresistance. There is emerging evidence that many anticancer modalities currently used in the clinic have unique and distinct properties that modulate the recruitment, polarization and tumorigenic activities of macrophages in the tumor microenvironments. Educated tumor-associated macrophages significantly impact the clinical efficacies of and resistance to these anticancer modalities. Moreover, the development of drugs targeting tumor-associated macrophages, especially c-Fms kinase inhibitors and humanized antibodies targeting colony-stimulating factor-1 receptor, are in early clinical stages and show promising benefit for cancer patients. These experimental and clinical findings prompted us to further evaluate the potential targets that exhibit tumorigenic and immunosuppressive potential in a manner specific for tumor associated macrophages.
Insights
Tumor-associated macrophages (TAMs) critically influence cancer progression and treatment response. Targeting TAMs, particularly with novel therapies, shows promise for improving cancer patient outcomes.
Area of Science:
- Immunology
- Oncology
- Cancer Biology
Background:
- Tumor-associated macrophages (TAMs) are key regulators of the tumor microenvironment.
- TAMs impact tumor growth, angiogenesis, immune suppression, metastasis, and chemoresistance.
Purpose of the Study:
- To evaluate potential targets with tumorigenic and immunosuppressive roles specific to TAMs.
- To understand how anticancer therapies modulate TAM functions.
Main Methods:
- Review of emerging evidence on anticancer modalities and their effects on TAMs.
- Analysis of clinical and experimental findings on TAM-targeting drugs.
Main Results:
- Anticancer treatments can uniquely modulate TAM recruitment, polarization, and activity.
- Educated TAMs significantly influence treatment efficacy and resistance.
- Targeting TAMs, including with c-Fms kinase inhibitors and CSF-1R antibodies, is a promising therapeutic strategy.
Conclusions:
- TAMs are crucial targets for novel cancer therapies.
- Further research into TAM-specific targets may enhance clinical benefits for cancer patients.
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