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Angiotensin-(1-7)/MasR axis promotes migration of monocytes/macrophages with a regulatory phenotype to perform phagocytosis and efferocytosis
Isabella Zaidan, Luciana P. Tavares, Michelle A. Sugimoto, Kátia M. Lima, Graziele L. Negreiros-Lima, Lívia C.R. Teixeira, Thais C. Miranda, Bruno V.S. Valiate, Allysson Cramer, Juliana Priscila Vago, Gabriel H. Campolina-Silva, Jéssica A.M. Souza, Laís C. Grossi, Vanessa Pinho, Maria Jose Campagnole-Santos, Robson A.S. Santos, Mauro M. Teixeira, Izabela Galvão, Lirlândia P. Sousa
Isabella Zaidan, Luciana P. Tavares, Michelle A. Sugimoto, Kátia M. Lima, Graziele L. Negreiros-Lima, Lívia C.R. Teixeira, Thais C. Miranda, Bruno V.S. Valiate, Allysson Cramer, Juliana Priscila Vago, Gabriel H. Campolina-Silva, Jéssica A.M. Souza, Laís C. Grossi, Vanessa Pinho, Maria Jose Campagnole-Santos, Robson A.S. Santos, Mauro M. Teixeira, Izabela Galvão, Lirlândia P. Sousa
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Research Article Infectious disease Inflammation

Angiotensin-(1-7)/MasR axis promotes migration of monocytes/macrophages with a regulatory phenotype to perform phagocytosis and efferocytosis

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Abstract

Nonphlogistic migration of macrophages contributes to the clearance of pathogens and apoptotic cells, a critical step for the resolution of inflammation and return to homeostasis. Angiotensin-(1-7) [Ang-(1-7)] is a heptapeptide of the renin-angiotensin system that acts through Mas receptor (MasR). Ang-(1-7) has recently emerged as a novel proresolving mediator, yet Ang-(1-7) resolution mechanisms are not fully determined. Herein, Ang-(1-7) stimulated migration of human and murine monocytes/macrophages in a MasR-, CCR2-, and MEK/ERK1/2–dependent manner. Pleural injection of Ang-(1-7) promoted nonphlogistic mononuclear cell influx alongside increased levels of CCL2, IL-10, and macrophage polarization toward a regulatory phenotype. Ang-(1-7) induction of CCL2 and mononuclear cell migration was also dependent on MasR and MEK/ERK. Of note, MasR was upregulated during the resolution phase of inflammation, and its pharmacological inhibition or genetic deficiency impaired mononuclear cell recruitment during self-resolving models of LPS pleurisy and E. coli peritonitis. Inhibition/absence of MasR was associated with reduced CCL2 levels, impaired phagocytosis of bacteria, efferocytosis, and delayed resolution of inflammation. In summary, we have uncovered a potentially novel proresolving feature of Ang-(1-7), namely the recruitment of mononuclear cells favoring efferocytosis, phagocytosis, and resolution of inflammation. Mechanistically, cell migration was dependent on MasR, CCR2, and the MEK/ERK pathway.

Authors

Isabella Zaidan, Luciana P. Tavares, Michelle A. Sugimoto, Kátia M. Lima, Graziele L. Negreiros-Lima, Lívia C.R. Teixeira, Thais C. Miranda, Bruno V.S. Valiate, Allysson Cramer, Juliana Priscila Vago, Gabriel H. Campolina-Silva, Jéssica A.M. Souza, Laís C. Grossi, Vanessa Pinho, Maria Jose Campagnole-Santos, Robson A.S. Santos, Mauro M. Teixeira, Izabela Galvão, Lirlândia P. Sousa

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Figure 4

MasR, CCR2, and the MEK/ERK1/2 pathway are important for Ang-(1-7)–mediated recruitment of macrophages.

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MasR, CCR2, and the MEK/ERK1/2 pathway are important for Ang-(1-7)–media...
BALB/c mice were treated with RS504393 (2 mg/kg i.pl.), A779 (200 ng/cavity), or U0126 (60 μg/cavity) 1 hour before the local injection of Ang-(1-7) (100 ng/cavity). Leukocyte recruitment to the pleura cavity was evaluated at 48 hours post–Ang-(1-7) (A and B). CCL2 levels were measured at 6 hours post–Ang-(1-7) in the cell-free pleural lavage supernatants (C and D). Phosphorylation of ERK1/2 was evaluated by Western blotting of recruited leukocytes at 48 hours post–Ang-(1-7) (E and F). At the same time point, frequencies of CCR2+MasR+ macrophages were determined by confocal microscopy (G — arrows indicate the double-positive cells). Results are shown as the mean ± SEM of n = 4-6 mice in each group. * for P < 0.05, ** for P < 0.01, and *** for P < 0.001 when compared with the control group (PBS) by 1-way ANOVA (A–F) or t test (G).

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