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Updated: Nov 25, 2025

Studying the Effects of Tumor-Secreted Paracrine Ligands on Macrophage Activation using Co-Culture with Permeable Membrane Supports
Published on: November 28, 2019
Phagocytic function of tumor-associated macrophages as a key determinant of tumor progression control: a review
Marc Lecoultre1,2, Valérie Dutoit1,2,3, Paul R Walker4,2
1Faculty of Medicine, University of Geneva, Geneva, Switzerland.
Abstract:
Tumor-associated macrophage (TAM) phagocytic activity is emerging as a new mechanism to harness for cancer treatment. Currently, many approaches are investigated at the preclinical level and some modalities have now reached clinical trials, including the targeting of the phagocytosis inhibitor CD47. The rationale for increasing TAM phagocytic activity is to improve innate anticancer immunity, and to promote T-cell mediated adaptive immune responses. In this context, a clear understanding of the impact of TAM phagocytosis on both innate and adaptive immunity is critical. Indeed, uncertainties persist regarding the capacity of TAM to present tumor antigens to CD8 T cells by cross-presentation. This process is critical for an optimal cytotoxic T-cell immune response and can be mediated by dendritic cells but also potentially by macrophages. In addition, the engulfment of cancer cells affects TAM functionality, as apoptotic cell uptake (a process termed efferocytosis) promotes macrophage anti-inflammatory functions. Because of the abundance of TAM in most solid tumors and the common use of apoptosis inducers such as radiotherapy to treat patients with cancer, efferocytosis potentially affects the overall immune balance within the tumor microenvironment (TME). In this review, we will discuss how cancer cell phagocytosis by TAM impacts antitumor immunity. First, we will focus on the potential of the phagocytic activity of TAM per se to control tumor progression. Second, we will examine the potential of TAM to act as antigen presenting cells for tumor specific CD8 T cells, considering the different characteristics of this process in the tumor tissue and at the molecular level. Finally, we will see how phagocytosis and efferocytosis affect TAM functionality and how these mechanisms impact on antitumor immunity. A better understanding of these aspects will enable us to better predict and interpret the consequences of cancer therapies on the immune status of the TME. Future cancer treatment regimens can thereby be designed to not only impact directly on cancer cells, but also to favorably modulate TAM phagocytic activity to benefit from the potential of this central immune player to achieve more potent therapeutic efficacy.
Insights
Harnessing tumor-associated macrophage (TAM) phagocytosis offers a novel cancer treatment strategy. Enhancing TAM phagocytic activity boosts anticancer immunity and T-cell responses, crucial for effective cancer therapies.
Area of Science:
- Immunology
- Oncology
- Cell Biology
Background:
- Tumor-associated macrophages (TAMs) are abundant in solid tumors and influence the tumor microenvironment.
- TAM phagocytic activity is a potential therapeutic target for cancer treatment.
- Targeting CD47, a phagocytosis inhibitor, is progressing to clinical trials.
Purpose of the Study:
- To review the impact of TAM phagocytosis on innate and adaptive antitumor immunity.
- To explore TAMs' role in antigen presentation to CD8 T cells via cross-presentation.
- To analyze how phagocytosis and efferocytosis affect TAM functionality and the immune balance in the tumor microenvironment.
Main Methods:
- Literature review focusing on TAM phagocytosis and its immunological consequences.
- Analysis of preclinical and clinical data regarding TAM-targeting therapies.
- Discussion of the molecular mechanisms underlying TAM phagocytosis and antigen presentation.
Main Results:
- TAM phagocytosis can enhance innate anticancer immunity and promote T-cell mediated adaptive responses.
- Uncertainties remain regarding TAMs' capacity for cross-presentation of tumor antigens to CD8 T cells.
- Efferocytosis (uptake of apoptotic cancer cells) can promote anti-inflammatory functions in TAMs, impacting the overall immune balance.
Conclusions:
- Understanding TAM phagocytosis is critical for predicting and interpreting cancer therapy effects on the immune system.
- Modulating TAM phagocytic activity can be a key strategy for developing more potent cancer treatments.
- Future cancer therapies can be designed to leverage TAMs as central immune players for improved therapeutic efficacy.
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