Candida albicans β-Glucan Differentiates Human Monocytes Into a Specific Subset of Macrophages

白色念珠菌β-葡聚糖可诱导人单核细胞分化为特定亚群的巨噬细胞

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作者:Julia Leonhardt ,Silke Große ,Christian Marx ,Fatina Siwczak ,Sven Stengel ,Tony Bruns ,Reinhard Bauer ,Michael Kiehntopf ,David L Williams ,Zhao-Qi Wang ,Alexander S Mosig ,Sebastian Weis ,Michael Bauer ,Regine Heller

Abstract

β-Glucan derived from cell walls of Candida albicans is a potent immune modulator. It has been shown to induce trained immunity in monocytes via epigenetic and metabolic reprogramming and to protect from lethal sepsis if applied prior to infection. Since β-glucan-trained monocytes have not been classified within the system of mononuclear phagocytes we analyzed these cells metabolically, phenotypically and functionally with a focus on monocyte-to-macrophage differentiation and compared them with naïve monocytes and other types of monocyte-derived cells such as classically (M1) or alternatively (M2) activated macrophages and monocyte-derived dendritic cells (moDCs). We show that β-glucan inhibits spontaneous apoptosis of monocytes independent from autocrine or paracrine M-CSF release and stimulates monocyte differentiation into macrophages. β-Glucan-differentiated macrophages exhibit increased cell size and granularity and enhanced metabolic activity when compared to naïve monocytes. Although β-glucan-primed cells expressed markers of alternative activation and secreted higher levels of IL-10 after lipopolysaccharide (LPS), their capability to release pro-inflammatory cytokines and to kill bacteria was unaffected. Our data demonstrate that β-glucan priming induces a population of immune competent long-lived monocyte-derived macrophages that may be involved in immunoregulatory processes. Keywords: Candida albicans; monocyte survival; monocyte to macrophage differentiation; trained immunity; β-glucan.

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