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1.
Pharmacol Res ; 158: 104842, 2020 08.
Article in English | MEDLINE | ID: mdl-32413484

ABSTRACT

Macrophages are professional phagocytes that display remarkable plasticity, with a range of phenotypes that can be broadly characterized by the M1/M2 dichotomy. Glucocorticoid (GC)-induced leucine zipper (GILZ) is a protein known to mediate anti-inflammatory and some pro-resolving actions, including as neutrophil apoptosis. However, the role of GILZ in key macrophage function is not well understood. Here, we investigated the role of GILZ on macrophage reprogramming and efferocytosis. Using murine bone-marrow-derived macrophages (BMDMs), we found that GILZ was expressed in naive BMDMs and exhibited increased expression in M2-like macrophages (IL4-differentiated). M1-like macrophages (IFN/LPS-differentiated) from GILZ-/- mice showed higher expression of the M1 markers CD86, MHC class II, iNOS, IL-6 and TNF-α, associated with increased levels of phosphorylated STAT1 and lower IL-10 levels, compared to M1-differentiated cells from WT mice. There were no changes in the M2 markers CD206 and arginase-1 in macrophages from GILZ-/- mice differentiated with IL-4, compared to cells from WT animals. Treatment of M1-like macrophages with TAT-GILZ, a cell-permeable GILZ fusion protein, decreased the levels of CD86 and MHC class II in M1-like macrophages without modifying CD206 levels in M2-like macrophages. In line with the in vitro data, increased numbers of M1-like macrophages were found into the pleural cavity of GILZ-/- mice after LPS-injection, compared to WT mice. Moreover, efferocytosis was defective in the context of GILZ deficiency, both in vitro and in vivo. Conversely, treatment of LPS-injected mice with TAT-GILZ promoted inflammation resolution, associated with lower numbers of M1-like macrophages and increased efferocytosis. Collectively, these data indicate that GILZ is a regulator of important macrophage functions, contributing to macrophage reprogramming and efferocytosis, both key steps for the resolution of inflammation.


Subject(s)
Apoptosis/drug effects , Glucocorticoids/pharmacology , Transcription Factors/drug effects , Animals , Bone Marrow Cells/drug effects , Cell Migration Assays, Leukocyte , Cell Physiological Phenomena/drug effects , Gene Expression Regulation/drug effects , Inflammation/chemically induced , Inflammation/pathology , Leukocyte Count , Lipopolysaccharides/pharmacology , Macrophages/drug effects , Male , Mice , Mice, Inbred BALB C , Mice, Knockout , Pleural Cavity/cytology
2.
Cells ; 9(1)2020 01 06.
Article in English | MEDLINE | ID: mdl-31935860

ABSTRACT

Macrophages are central to inflammation resolution, an active process aimed at restoring tissue homeostasis following an inflammatory response. Here, the effects of db-cAMP on macrophage phenotype and function were investigated. Injection of db-cAMP into the pleural cavity of mice induced monocytes recruitment in a manner dependent on PKA and CCR2/CCL2 pathways. Furthermore, db-cAMP promoted reprogramming of bone-marrow-derived macrophages to a M2 phenotype as seen by increased Arg-1/CD206/Ym-1 expression and IL-10 levels (M2 markers). Db-cAMP also showed a synergistic effect with IL-4 in inducing STAT-3 phosphorylation and Arg-1 expression. Importantly, db-cAMP prevented IFN-γ/LPS-induced macrophage polarization to M1-like as shown by increased Arg-1 associated to lower levels of M1 cytokines (TNF-α/IL-6) and p-STAT1. In vivo, db-cAMP reduced the number of M1 macrophages induced by LPS injection without changes in M2 and Mres numbers. Moreover, db-cAMP enhanced efferocytosis of apoptotic neutrophils in a PKA-dependent manner and increased the expression of Annexin A1 and CD36, two molecules associated with efferocytosis. Finally, inhibition of endogenous PKA during LPS-induced pleurisy impaired the physiological resolution of inflammation. Taken together, the results suggest that cAMP is involved in the major functions of macrophages, such as nonphlogistic recruitment, reprogramming and efferocytosis, all key processes for inflammation resolution.


Subject(s)
Cellular Reprogramming , Cyclic AMP-Dependent Protein Kinases/metabolism , Cyclic AMP/metabolism , Macrophages/metabolism , Phagocytosis , Animals , Annexin A1/metabolism , Apoptosis/drug effects , Arginase/metabolism , Bucladesine/pharmacology , CD36 Antigens/metabolism , Cell Polarity/drug effects , Cellular Reprogramming/drug effects , Cyclic AMP-Dependent Protein Kinases/antagonists & inhibitors , Inflammation/pathology , Interleukin-4/metabolism , Isoquinolines/pharmacology , Lipopolysaccharides , Macrophages/drug effects , Male , Mice, Inbred BALB C , Models, Biological , Monocytes/drug effects , Monocytes/metabolism , Neutrophils/drug effects , Neutrophils/metabolism , Neutrophils/pathology , Phagocytosis/drug effects , Phenotype , Phosphorylation/drug effects , Pleural Cavity/metabolism , Receptors, CCR2/metabolism , STAT3 Transcription Factor/metabolism , Sulfonamides/pharmacology , Time Factors
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