The immune system is essential to maintain the mutualistic homeostatic interaction between the host and its micro- and mycobiota. Living as a commensal,Saccharomyces cerevisiaecould potentially shape the immune response in a significant way. We observed thatS. cerevisiaecells induce trained immunity in monocytes in a strain-dependent manner through enhanced TNFα and IL-6 production upon secondary stimulation with TLR ligands, as well as bacterial and fungal commensals. Differential chitin content accounts for the differences in training properties observed among strains, driving induction of trained immunity by increasing cytokine production and direct antimicrobial activity bothin vitroandin vivo These chitin-induced protective properties are intimately associated with its internalization, identifying a critical role of phagosome acidification to facilitate microbial digestion. This study reveals how commensal and passenger microorganisms could be important in promoting health and preventing mucosal diseases by modulating host defense toward pathogens and thus influencing the host microbiota-immune system interactions.
Fungal Chitin Induces Trained Immunity in Human Monocytes during Cross-talk of the Host with Saccharomyces cerevisiae.
真菌几丁质在宿主与酿酒酵母的交叉对话中诱导人类单核细胞产生训练免疫
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作者:Rizzetto Lisa, Ifrim Daniela C, Moretti Silvia, Tocci Noemi, Cheng Shih-Chin, Quintin Jessica, Renga Giorgia, Oikonomou Vasilis, De Filippo Carlotta, Weil Tobias, Blok Bastiaan A, Lenucci Marcello S, Santos Manuel A S, Romani Luigina, Netea Mihai G, Cavalieri Duccio
| 期刊: | Journal of Biological Chemistry | 影响因子: | 3.900 |
| 时间: | 2016 | 起止号: | 2016 Apr 8; 291(15):7961-72 |
| doi: | 10.1074/jbc.M115.699645 | 种属: | Human |
| 研究方向: | 细胞生物学 | ||
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