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实验室小鼠的再野化通过肠道真菌定殖增强粒细胞生成和免疫。

Rewilding of laboratory mice enhances granulopoiesis and immunity through intestinal fungal colonization.

机构信息

Kimmel Center for Biology and Medicine at the Skirball Institute, New York University Grossman School of Medicine, New York, NY 10016, USA.

Department of Microbiology, New York University Grossman School of Medicine, New York, NY 10016, USA.

出版信息

Sci Immunol. 2023 Jun 23;8(84):eadd6910. doi: 10.1126/sciimmunol.add6910.

Abstract

The paucity of blood granulocyte populations such as neutrophils in laboratory mice is a notable difference between this model organism and humans, but the cause of this species-specific difference is unclear. We previously demonstrated that laboratory mice released into a seminatural environment, referred to as rewilding, display an increase in blood granulocytes that is associated with expansion of fungi in the gut microbiota. Here, we find that tonic signals from fungal colonization induce sustained granulopoiesis through a mechanism distinct from emergency granulopoiesis, leading to a prolonged expansion of circulating neutrophils that promotes immunity. Fungal colonization after either rewilding or oral inoculation of laboratory mice with induced persistent expansion of myeloid progenitors in the bone marrow. This increase in granulopoiesis conferred greater long-term protection from bloodstream infection by gram-positive bacteria than by the trained immune response evoked by transient exposure to the fungal cell wall component β-glucan. Consequently, introducing fungi into laboratory mice may restore aspects of leukocyte development and provide a better model for humans and free-living mammals that are constantly exposed to environmental fungi.

摘要

实验室小鼠血液中性粒细胞等粒细胞群体的缺乏是该模式生物与人类之间的显著差异,但这种种属特异性差异的原因尚不清楚。我们之前曾证明,被释放到半自然环境(称为重新野外放生)中的实验小鼠会增加血液中的粒细胞,这与肠道微生物群中真菌的扩张有关。在这里,我们发现真菌定植产生的紧张信号通过一种与应急粒细胞生成不同的机制诱导持续的粒细胞生成,导致循环中性粒细胞的延长扩张,从而促进免疫。无论是重新野外放生还是用实验室小鼠口服接种诱导,真菌定植后都会导致骨髓中髓样祖细胞的持续扩张。这种粒细胞生成的增加赋予了对革兰氏阳性菌血流感染的更大的长期保护,而不是通过短暂暴露于真菌细胞壁成分β-葡聚糖引起的训练免疫反应。因此,将真菌引入实验小鼠体内可能会恢复白细胞发育的某些方面,并为不断暴露于环境真菌的人类和自由生活的哺乳动物提供更好的模型。

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Gut-Evolved Induces Metabolic Changes in Neutrophils.肠道进化诱导中性粒细胞代谢变化。
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