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Open AccessJournal ArticleDOI

The Promise of Targeting Macrophages in Cancer Therapy

J. Martin Brown, +2 more
- 01 Jul 2017 - 
- Vol. 23, Iss: 13, pp 3241-3250
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TLDR
The data clearly support the validity of clinical testing of combining targeting TAMs with conventional therapy and the many preclinical studies that have shown that the response of tumors to irradiation and anticancer drugs can be improved, sometimes markedly so, by depleting TAMs from tumors or by suppressing their polarization from an M1 to an M2 phenotype.
Abstract
Cancer therapy has developed around the concept of killing, or stopping the growth of, the cancer cells. Molecularly targeted therapy is the modern expression of this paradigm. Increasingly, however, the realization that the cancer has co-opted the normal cells of the stroma for its own survival has led to the concept that the tumor microenvironment (TME) could be targeted for effective therapy. In this Review we outline the importance of tumor associated macrophages (TAMs), a major component of the TME, in the response of tumors to cancer therapy. We discuss the normal role of macrophages in wound healing, the major phenotypes of TAMs and their role in blunting the efficacy to cancer treatment by radiation and anticancer drugs both by promoting tumor angiogenesis and by suppressing antitumor immunity. Finally we review the many preclinical studies that have shown that the response of tumors to irradiation and anticancer drugs can be improved, sometimes markedly so, by depleting TAMs from tumors or by suppressing their polarization from an M1 to an M2 phenotype. The data clearly support the validity of clinical testing of combining targeting TAMs with conventional therapy.

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Involvement of the M-CSF/IL-34/CSF-1R pathway in malignant pleural mesothelioma.

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TL;DR: The potential signaling pathways that can be targeted for macrophage reprogramming are highlighted and the progress of current clinical trials involved in TAMs targeting is discussed.
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A drug development perspective on targeting tumor-associated myeloid cells.

TL;DR: The pharmacological approaches to therapeutically target tumor‐associated myeloid cells with a focus on advanced programs that are clinically evaluated are summarized.
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Tumor associated macrophages and ‘NO’

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Precision immunomodulation with synthetic nucleic acid technologies

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References
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Journal ArticleDOI

Alternative activation of macrophages

TL;DR: The evidence in favour of alternative macrophage activation by the TH2-type cytokines interleukin-4 (IL-4) and IL-13 is assessed, and its limits and relevance to a range of immune and inflammatory conditions are defined.
Journal ArticleDOI

Myeloid-derived suppressor cells as regulators of the immune system.

TL;DR: The origin, mechanisms of expansion and suppressive functions of MDSCs, as well as the potential to target these cells for therapeutic benefit are discussed.
Journal ArticleDOI

Protective and pathogenic functions of macrophage subsets

TL;DR: The four stages of orderly inflammation mediated by macrophages are discussed: recruitment to tissues; differentiation and activation in situ; conversion to suppressive cells; and restoration of tissue homeostasis.
Journal ArticleDOI

Tumors: wounds that do not heal. Similarities between tumor stroma generation and wound healing.

TL;DR: Tumors of epithelioma are composed of two discrete but interdependent compartments: the malignant cells themselves and the stroma that they induce and in which they are dispersed.
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