TREM-1 links dyslipidemia to inflammation and lipid deposition in atherosclerosis
NATURE COMMUNICATIONS
Authors: Zysset, Daniel; Weber, Benjamin; Rihs, Silvia; Brasseit, Jennifer; Freigang, Stefan; Riether, Carsten; Banz, Yara; Cerwenka, Adelheid; Simillion, Cedric; Marques-Vidal, Pedro; Ochsenbein, Adrian F.; Saurer, Leslie; Mueller, Christoph
Abstract
Triggering receptor expressed on myeloid cells-1 (TREM-1) is a potent amplifier of pro-inflammatory innate immune responses, but its significance in non-infectious diseases remains unclear. Here, we demonstrate that TREM-1 promotes cardiovascular disease by exacerbating atherosclerosis. TREM-1 is expressed in advanced human atheromas and is highly upregulated under dyslipidemic conditions on circulating and on lesion-infiltrating myeloid cells in the Apoe(-/-) mouse model. TREM-1 strongly contributes to high-fat, high-cholesterol diet (HFCD)-induced monocytosis and synergizes with HFCD serum-derived factors to promote pro-inflammatory cytokine responses and foam cell formation of human monocyte/macrophages. Trem1(-/-) Apoe(-/-) mice exhibit substantially attenuated diet-induced atherogenesis. In particular, our results identify skewed monocyte differentiation and enhanced lipid accumulation as novel mechanisms through which TREM-1 can promote atherosclerosis. Collectively, our findings illustrate that dyslipidemia induces TREM-1 surface expression on myeloid cells and subsequently synergizes with TREM-1 to enhance monopoiesis, pro-atherogenic cytokine production and foam cell formation.
TREM1 Blockade: Killing Two Birds with One Stone
TRENDS IN IMMUNOLOGY
Authors: Colonna, Marco
Abstract
Infectious and sterile injuries cause the release of PAMPs and DAMPs. A study by Liu et al. (Nat. Immunol. 2019) reports that DAMP-induced sterile brain inflammation from stroke is associated with sympathetic nervous system activation, enhancing intestinal permeability, the release of microbiota-derived PAMPs, and inflammation. TREM1 is implicated as a potential target to treat stroke and DAMP-and PAMP-induced inflammation.