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.

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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