Literature DB >> 21565215

Macrophage regulation of tumor angiogenesis: implications for cancer therapy.

Mario Leonardo Squadrito1, Michele De Palma.   

Abstract

This article reviews the evidence for macrophages playing an important role in the regulation of tumor angiogenesis. Findings in mouse models show that macrophages promote angiogenesis in tumors both by producing excessive amounts of proangiogenic factors and by physically assisting sprouting blood vessels to augment the complexity of the intra-tumoral vascular network. Recent studies however suggest that macrophages may be dispensable for the initiation of angiogenesis in tumors. Rather, these cells express proangiogenic programs that enhance the complexity of the tumor-associated vasculature, leading to aberrant, plethoric and dysfunctional angiogenesis. Gene expression and cell depletion studies further indicate that tumor-associated macrophages (TAMs) comprise phenotypically and functionally distinct subsets. This may reflect "education" of the macrophage phenotype by signals in some areas of the tumor microenvironment and/or TAM subsets derived from distinct macrophage precursors. Among the better characterized TAM subsets are the proangiogenic (TIE2(+)) and the angiostatic/inflammatory (CD11c(+)) macrophages, which coexist in tumors. Such antagonizing TAM subsets occupy distinct niches in the tumor microenvironment and are present at ratios that vary according to the tumor type and grade. Specifically targeting TAMs or reprogramming them from a proangiogenic to an angiostatic function may "normalize" the tumor vasculature and improve the efficacy of various anticancer therapies, including radiotherapy, chemotherapy and vascular-disrupting agents.
Copyright © 2011 Elsevier Ltd. All rights reserved.

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Year:  2011        PMID: 21565215     DOI: 10.1016/j.mam.2011.04.005

Source DB:  PubMed          Journal:  Mol Aspects Med        ISSN: 0098-2997


  77 in total

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Review 3.  Microenvironmental regulation of tumour angiogenesis.

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4.  Cancer: Metastasis risk after anti-macrophage therapy.

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Review 5.  Mathematical modeling of tumor-immune cell interactions.

Authors:  Grace E Mahlbacher; Kara C Reihmer; Hermann B Frieboes
Journal:  J Theor Biol       Date:  2019-03-02       Impact factor: 2.691

6.  Macrophage skewing by Phd2 haplodeficiency prevents ischaemia by inducing arteriogenesis.

Authors:  Yukiji Takeda; Sandra Costa; Estelle Delamarre; Carmen Roncal; Rodrigo Leite de Oliveira; Mario Leonardo Squadrito; Veronica Finisguerra; Sofie Deschoemaeker; Françoise Bruyère; Mathias Wenes; Alexander Hamm; Jens Serneels; Julie Magat; Tapan Bhattacharyya; Andrey Anisimov; Benedicte F Jordan; Kari Alitalo; Patrick Maxwell; Bernard Gallez; Zhen W Zhuang; Yoshihiko Saito; Michael Simons; Michele De Palma; Massimiliano Mazzone
Journal:  Nature       Date:  2011-10-09       Impact factor: 49.962

7.  Chemical transfection of dye-conjugated microRNA precursors for microRNA functional analysis of M2 macrophages.

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Review 8.  Signatures of breast cancer metastasis at a glance.

Authors:  George S Karagiannis; Sumanta Goswami; Joan G Jones; Maja H Oktay; John S Condeelis
Journal:  J Cell Sci       Date:  2016-04-15       Impact factor: 5.285

Review 9.  MicroRNA-mediated control of macrophages and its implications for cancer.

Authors:  Mario Leonardo Squadrito; Martin Etzrodt; Michele De Palma; Mikael J Pittet
Journal:  Trends Immunol       Date:  2013-03-13       Impact factor: 16.687

Review 10.  The role of semaphorins and their receptors in vascular development and cancer.

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Journal:  Exp Cell Res       Date:  2013-02-17       Impact factor: 3.905

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