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Updated: Feb 27, 2026

In Vitro Assay to Study Tumor-macrophage Interaction
Published on: August 1, 2019
Tumor-Associated Macrophages as Target for Antitumor Therapy
Katarzyna Sawa-Wejksza1, Martyna Kandefer-Szerszeń2
1Department of Virology and Immunology, Institute of Microbiology and Biotechnology, Maria Curie-Skłodowska University, Akademicka 19, 20-033, Lublin, Poland. katarzyna.sawa-wejksza@poczta.umcs.lublin.pl.
Abstract:
It is well known that the microenvironment of solid tumors is rich in inflammatory cells that influence tumor growth and development. Macrophages, called tumor-associated macrophages (TAMs), are the most abundant immune cell population present in tumor tissue. Several studies have demonstrated that the density of TAMs is associated with a poor prognosis and positively correlates with tumor growth. Several studies have proved that TAMs may activate and protect tumor stem cells, stimulate their proliferation as well as promote angiogenesis and metastasis. Furthermore, TAMs-derived cytokines and other proteins, such as CCL-17, CCL-22, TGF-β, IL-10, arginase 1, and galectin-3, make a significant contribution to immunosuppression. Since TAMs influence various aspects of cancer progression, there are many attempts to use them as a target for immunotherapy. The numerous studies have shown that the primary tumor growth and the number of metastatic sites can be significantly decreased by decreasing the population of macrophages in tumor tissue, for example, by blocking recruitment of monocytes or eliminating TAMs already present in the tumor tissue. Moreover, there are attempts at reprogramming TAMs into proinflammatory M1 macrophages or neutralizing the protumoral products of TAMs. Another approach uses TAMs for anticancer drug delivery into the tumor environment. In this review, we would like to summarize the clinical and preclinical trials that were focused on macrophages as a target for anticancer therapies.
Insights
Tumor-associated macrophages (TAMs) promote cancer growth and immunosuppression. Targeting TAMs, through depletion or reprogramming, shows promise in reducing tumor progression and metastasis in preclinical and clinical trials.
Area of Science:
- Immunology
- Oncology
- Cancer Biology
Background:
- Solid tumors contain abundant inflammatory cells, particularly tumor-associated macrophages (TAMs).
- TAM density correlates with poor prognosis, enhanced tumor growth, stem cell activation, angiogenesis, and metastasis.
- TAMs contribute to immunosuppression via secreted factors like cytokines (e.g., CCL-17, IL-10) and proteins (e.g., galectin-3).
Purpose of the Study:
- To review clinical and preclinical trials targeting TAMs for cancer therapy.
- To summarize strategies aimed at modulating TAMs within the tumor microenvironment.
Main Methods:
- Literature review of clinical and preclinical studies focusing on TAM-targeted cancer therapies.
- Analysis of therapeutic strategies including TAM depletion, reprogramming, and drug delivery.
Main Results:
- Decreasing TAM populations by blocking monocyte recruitment or eliminating existing TAMs reduces tumor growth and metastasis.
- Reprogramming TAMs to an anti-tumor M1 phenotype or neutralizing their pro-tumoral products are viable strategies.
- Utilizing TAMs for targeted anticancer drug delivery is an emerging therapeutic approach.
Conclusions:
- TAMs are critical regulators of cancer progression and represent a significant target for novel immunotherapies.
- Modulating TAMs offers a promising avenue for developing effective cancer treatments.
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