首页> 外文期刊>Clinical immunology: The official journal of the Clinical Immunology Society >Effect of high glucose on cytokine production by human peripheral blood immune cells and type I interferon signaling in monocytes: Implications for the role of hyperglycemia in the diabetes inflammatory process and host defense against infection
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Effect of high glucose on cytokine production by human peripheral blood immune cells and type I interferon signaling in monocytes: Implications for the role of hyperglycemia in the diabetes inflammatory process and host defense against infection

机译:高葡萄糖对人外周血免疫细胞细胞因子产生的影响,单核细胞中的I型干扰素信号:对高血糖症在糖尿病炎症过程中的作用和宿主防御感染的影响

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摘要

The major metabolic feature of diabetes is hyperglycemia which has been linked to the diabetes inflammatory processes, and diabetes-related vulnerability to infection. In the present study, we assessed how glucose affected PBMCs in type I interferon (IFN) production and subsequent signaling. We found that the moderately elevated glucose promoted, and high glucose suppressed type I IFN production, respectively. Pre-exposure to high glucose rendered monocytes more sensitive to IFN-α stimulation with heightened signaling, whereas, instantaneous addition of high glucose did not exhibit such effect. Consistent with this finding, the mRNA levels of IFN-α-induced IRF-7 in PBMCs were positively correlated with HbA1c levels of diabetes patients. Additionally, we found that high glucose promoted the production of other proinflammatory cytokines/chemokines. This study suggests that hyperglycemia may affect the inflammatory process in diabetes via promoting proinflammatory cytokines, as well as the host defense against microbial infections through impeding type I IFN production and signaling.
机译:糖尿病的主要代谢特征是高血糖,已与糖尿病炎症过程相关联,与糖尿病有关的脆弱性感染。在本研究中,我们评估了葡萄糖如何影响I型Interferon(IFN)生产和随后的信号传导中的PBMC。我们发现,促进了中度升高的葡萄糖,以及高葡萄糖抑制了I IFN生产。对高葡萄糖的预接触使单核细胞与IFN-α刺激更敏感,具有高度的信号传导,而瞬时添加高葡萄糖没有表现出这样的效果。与此发现一致,IFN-α诱导的PBMC中的MRNA水平与糖尿病患者的HBA1C水平呈正相关。此外,我们发现高葡萄糖促进了其他促炎细胞因子/趋化因子的产生。该研究表明,通过促进促炎细胞因子,通过阻止I IFN生产和信号传导,通过促进促炎细胞因子来影响糖尿病的炎症过程,以及针对微生物感染的宿主防御。

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