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反应性粒细胞生成依赖于 T 细胞产生的白细胞介素-17A 和与中性粒细胞减少相关的肠道微生物群改变。

Reactive granulopoiesis depends on T-cell production of IL-17A and neutropenia-associated alteration of gut microbiota.

机构信息

Department of Hematology, Hokkaido University Faculty of Medicine, Graduate School of Medicine and School of Medicine, Sapporo 060-8638, Japan.

Department of Cell Biological Science, Hokkaido University Graduate School of Life Science, Faculty of Advanced Life Science, Sapporo 060-0810, Japan.

出版信息

Proc Natl Acad Sci U S A. 2022 Nov 29;119(48):e2211230119. doi: 10.1073/pnas.2211230119. Epub 2022 Nov 21.

Abstract

Granulopoiesis in the bone marrow adjusts cellular output as demand for neutrophils changes. Reactive granulopoiesis is induced by profound neutropenia, but its mechanism remains to be clarified. We herein explored its mechanisms using mouse models of syngeneic hematopoietic stem cell transplantation (SCT) and 5-fluorouracil-induced neutropenia. After SCT, T cell production of IL-17A was up-regulated. Neutrophil recovery was significantly delayed in IL-17A-deficient or T cell-deficient mice, and adoptive transfer of wild-type () T cells facilitated neutrophil engraftment. Gut decontamination with oral antibiotics suppressed T cell production of IL-17A and impaired neutrophil recovery. Transplantation of fecal microbiota collected from neutropenic, not naive, mice promoted neutrophil recovery in these mice, suggesting that neutropenia-associated microbiota had a potential to stimulate reactive granulopoiesis. Our study uncovered a cross talk between gut microbiota and neutropenia after SCT and chemotherapy.

摘要

骨髓中的粒细胞生成会根据对中性粒细胞的需求变化来调整细胞输出。反应性粒细胞生成是由严重中性粒细胞减少引起的,但其机制仍需阐明。我们使用同基因造血干细胞移植 (SCT) 和 5-氟尿嘧啶诱导中性粒细胞减少症的小鼠模型来探索其机制。SCT 后,IL-17A 的 T 细胞产生被上调。IL-17A 缺陷或 T 细胞缺陷小鼠的中性粒细胞恢复明显延迟,而野生型 () T 细胞的过继转移促进了中性粒细胞植入。口服抗生素进行肠道去污会抑制 T 细胞产生 IL-17A 并损害中性粒细胞恢复。从中性粒细胞减少而非幼稚的小鼠中收集的粪便微生物群移植促进了这些小鼠中性粒细胞的恢复,这表明与中性粒细胞减少相关的微生物群有可能刺激反应性粒细胞生成。我们的研究揭示了 SCT 和化疗后肠道微生物群与中性粒细胞减少之间的相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5006/9860329/92ba63394879/pnas.2211230119fig01.jpg

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