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GRIM-19缺陷部分通过糖酵解促进巨噬细胞向M1表型极化,与不明原因复发性自然流产有关† 。

GRIM-19 deficiency promotes macrophage polarization to the M1 phenotype partly through glycolysis in unexplained recurrent spontaneous abortion†.

作者信息

Wang Bingyu, Yang Yang, Ye Jinwen, Han Xiaojuan, Yang Lin, Huang Yufei, Chao Lan

机构信息

Department of Obstetrics and Gynecology, Qilu Hospital of Shandong University, Jinan, Shandong, 250012, China.

出版信息

Biol Reprod. 2024 Apr 11;110(4):739-749. doi: 10.1093/biolre/ioae005.

Abstract

The occurrence of unexplained recurrent spontaneous abortion (URSA) is closely related to immune system disorders, however, the underlying mechanisms remain unclear. The purpose of this study was to investigate the expression of GRIM-19 in URSA and the possible pathogenesis of URSA according to macrophage polarization. Here, we showed that GRIM-19 was downregulated in the uterine decidual macrophages of patients with URSA and that GRIM-19 downregulation was accompanied by increased M1 macrophage polarization. Furthermore, the expression levels of glycolytic enzymes were substantially enhanced in the uterine decidual macrophages of URSA patients, and glycolysis in THP-1-derived macrophages was further enhanced by the downregulation of GRIM-19. Additionally, the increase of M1 macrophages resulting from the loss of GRIM-19 was significantly reversed in cells treated with 2-deoxy-D-glucose (2-DG, an inhibitor of glycolysis). To provide more direct evidence, GRIM-19 deficiency was shown to promote macrophage polarization to the M1 phenotype in GRIM-19+/- mouse uteri. Overall, our study provides evidence that GRIM-19 deficiency may play a role in regulating macrophage polarization in URSA, and that glycolysis may participate in this process.

摘要

原因不明的复发性自然流产(URSA)的发生与免疫系统紊乱密切相关,然而,其潜在机制仍不清楚。本研究的目的是根据巨噬细胞极化情况,研究GRIM-19在URSA中的表达及URSA可能的发病机制。在此,我们发现URSA患者子宫蜕膜巨噬细胞中GRIM-19表达下调,且GRIM-19下调伴随着M1巨噬细胞极化增加。此外,URSA患者子宫蜕膜巨噬细胞中糖酵解酶的表达水平显著增强,GRIM-19下调进一步增强了THP-1衍生巨噬细胞中的糖酵解。此外,用2-脱氧-D-葡萄糖(2-DG,一种糖酵解抑制剂)处理的细胞中,因GRIM-19缺失导致的M1巨噬细胞增加显著逆转。为提供更直接的证据,在GRIM-19+/-小鼠子宫中,GRIM-19缺陷被证明可促进巨噬细胞向M1表型极化。总体而言,我们的研究提供了证据,表明GRIM-19缺陷可能在调节URSA中的巨噬细胞极化中起作用,且糖酵解可能参与这一过程。

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