发热范围内的温度改变了小鼠促炎巨噬细胞介导的持续efferocysis。

IF 3.6 3区 医学 Q3 CELL BIOLOGY
Mathieu Vetter, Melissa Maraux, Francis Bonnefoy, Ludivine Dal Zuffo, Baptiste Lamarthée, Gwnenaël Rolin, Audrey Wetzel, Sylvain Perruche, Paul Peixoto, Philippe Saas
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引用次数: 0

摘要

发烧,炎症的主要标志,已被证明可以调节巨噬细胞的功能。在这里,我们研究发热是否影响巨噬细胞的efferocytosis。这个过程对于炎症的解决和巨噬细胞向促解决表型的重编程恢复稳态是必不可少的。利用脂多糖和干扰素-γ刺激小鼠骨髓源性巨噬细胞(即促炎巨噬细胞),我们首次验证了暴露于发热温度(39.5°C)诱导热休克蛋白反应。然后,我们观察到发热温度降低了促炎巨噬细胞摄取凋亡细胞的能力。暴露于发热温度下的巨噬细胞与凋亡细胞相互作用和内化这些垂死细胞的能力下降,导致其胞外功能降低。通过IncuCyte®活细胞成像技术评估,暴露于发热温度下,巨噬细胞对凋亡细胞的反应降低了细胞运动性。对暴露于发热温度下的促炎巨噬细胞进行RNA测序分析,发现Adam17基因上调。由于该基因编码一种蛋白酶,可以释放出促炎性巨噬细胞受体Mer,因此我们测定了Mer的细胞表面表达,并定量了暴露于发热温度下的促炎性巨噬细胞培养上清中的可溶性Mer。虽然热性高温诱导促炎巨噬细胞表面的Mer分裂,但热性高温下抑制ADAM17并不能恢复促炎巨噬细胞的红细胞生成能力。因此,热疗诱导的Mer表达降低并不是解释efferocysis减少的主要机制。尽管如此,我们的研究表明,发热通过降低巨噬细胞的红细胞生成能力来维持它们的促炎状态。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fever-range temperature alters continual efferocytosis mediated by mouse proinflammatory macrophages.

Fever, a cardinal sign of inflammation, has been shown to modulate macrophage functions. Here, we investigate whether fever affects macrophage efferocytosis. This process is essential for the resolution of inflammation and the return to homeostasis with the reprogramming of macrophages toward a proresolving phenotype. Using primary mouse bone marrow-derived macrophages stimulated with lipopolysaccharide and interferon-γ (ie proinflammatory macrophages), we first validated that exposure to febrile temperature (39.5 °C) induced a heat shock protein response. Then, we observed that febrile temperature decreased the capacity of proinflammatory macrophages to uptake apoptotic cells. This reduced efferocytic capacity of macrophages exposed to febrile temperature resulted from a decreased capacity to interact with apoptotic cells and to internalize these dying cells. Exposure to febrile temperature reduced the cell motility of macrophages in response to apoptotic cells, as assessed by IncuCyte live-cell imaging. RNA sequencing analysis of proinflammatory macrophages exposed to febrile temperature identified an upregulation of the Adam17 gene. As this gene encodes a protease that sheds the efferocytic receptor Mer, we determined cell surface expression of Mer and quantified soluble Mer in the culture supernatants of proinflammatory macrophages exposed to febrile temperature. While febrile hyperthermia induced the Mer cleavage from the cell surface of proinflammatory macrophages, ADAM17 inhibition during exposure to febrile temperature did not restore the efferocytic capacity of proinflammatory macrophages. Thus, reduction of Mer expression induced by hyperthermia did not represent the main mechanism explaining reduced efferocytosis. Nevertheless, our work suggests that fever, by decreasing the efferocytic capacity of macrophages, maintains their proinflammatory state.

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来源期刊
Journal of Leukocyte Biology
Journal of Leukocyte Biology 医学-免疫学
CiteScore
11.50
自引率
0.00%
发文量
358
审稿时长
2 months
期刊介绍: JLB is a peer-reviewed, academic journal published by the Society for Leukocyte Biology for its members and the community of immunobiologists. The journal publishes papers devoted to the exploration of the cellular and molecular biology of granulocytes, mononuclear phagocytes, lymphocytes, NK cells, and other cells involved in host physiology and defense/resistance against disease. Since all cells in the body can directly or indirectly contribute to the maintenance of the integrity of the organism and restoration of homeostasis through repair, JLB also considers articles involving epithelial, endothelial, fibroblastic, neural, and other somatic cell types participating in host defense. Studies covering pathophysiology, cell development, differentiation and trafficking; fundamental, translational and clinical immunology, inflammation, extracellular mediators and effector molecules; receptors, signal transduction and genes are considered relevant. Research articles and reviews that provide a novel understanding in any of these fields are given priority as well as technical advances related to leukocyte research methods.
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