On-site education of VEGF-recruited monocytes improves their performance as angiogenic and arteriogenic accessory cells

Author:

Avraham-Davidi Inbal1,Yona Simon2,Grunewald Myriam1,Landsman Limor2,Cochain Clement3,Silvestre Jean Sebastien3,Mizrahi Haim1,Faroja Mohammad4,Strauss-Ayali Dalit2,Mack Matthias5,Jung Steffen2,Keshet Eli1

Affiliation:

1. Department of Developmental Biology and Cancer Research, the Hebrew University-Hadassah Medical School, Jerusalem 91120, Israel

2. Department of Immunology, Weizmann Institute of Science, Rehovot 76100, Israel

3. PARCC-Institut National de la Santé et de la Recherche Médicale U970, 75737 Paris, Cedex 15, France

4. Deptment of Surgery, Hadassah Medical Center, Jerusalem 91120, Israel

5. Department of Internal Medicine, University of Regensburg, 93053 Regensburg, Germany

Abstract

Adult neovascularization relies on the recruitment of monocytes to the target organ or tumor and functioning therein as a paracrine accessory. The exact origins of the recruited monocytes and the mechanisms underlying their plasticity remain unclear. Using a VEGF-based transgenic system in which genetically tagged monocytes are conditionally summoned to the liver as part of a VEGF-initiated angiogenic program, we show that these recruited cells are derived from the abundant pool of circulating Ly6Chi monocytes. Remarkably, however, upon arrival at the VEGF-induced organ, but not the naive organ, monocytes undergo multiple phenotypic and functional changes, endowing them with enhanced proangiogenic capabilities and, importantly, with a markedly increased capacity to remodel existing small vessels into larger conduits. Notably, monocytes do not differentiate into long-lived macrophages, but rather appear as transient accessory cells. Results from transfers of presorted subpopulations and a novel tandem transfer strategy ruled out selective recruitment of a dedicated preexisting subpopulation or onsite selection, thereby reinforcing active reprogramming as the underlying mechanism for improved performance. Collectively, this study uncovered a novel function of VEGF, namely, on-site education of recruited “standard” monocytes to become angiogenic and arteriogenic professional cells, a finding that may also lend itself for a better design of angiogenic therapies.

Publisher

Rockefeller University Press

Subject

Immunology,Immunology and Allergy

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