Department of Anesthesia and Critical Care, CHU de Bordeaux, F-33600 Pessac, France.
INSERM, UMR1026 Bioingénierie Tissulaire (Biotis), Université de Bordeaux, F-33000 Bordeaux, France.
Mediators Inflamm. 2020 Jan 31;2020:6357046. doi: 10.1155/2020/6357046. eCollection 2020.
Inflammation is a major contributor to tubular epithelium injury in kidney disorders, and the involvement of blood platelets in driving inflammation is increasingly stressed. CD154, the ligand of CD40, is one of the mediators supporting platelet proinflammatory properties. Although hypoxia is an essential constituent of the inflammatory reaction, if and how platelets and CD154 regulate inflammation in hypoxic conditions remain unclear. Here, we studied the control by CD154 of the proinflammatory cytokine interleukin- (IL-) 6 secretion in short-term oxygen (O) deprivation conditions, using the HK-2 cell line as a kidney tubular epithelial cell (TEC) model. IL-6 secretion was markedly stimulated by CD154 after 1 to 3 hours of hypoxic stress. Both intracellular IL-6 expression and secretion were stimulated by CD154 and associated with a strong upregulation of IL-6 mRNA and increased transcription. Searching for inhibitors of CD154-mediated IL-6 production by HK-2 cells in hypoxic conditions, we observed that chloroquine, a drug that has been repurposed as an anti-inflammatory agent, alleviated this induction. Therefore, CD154 is a potent early stimulus for IL-6 secretion by TECs in O deprivation conditions, a mechanism likely to take part in the deleterious inflammatory consequences of platelet activation in kidney tubular injury. The inhibition of CD154-induced IL-6 production by chloroquine suggests the potential usefulness of this drug as a therapeutic adjunct in conditions associated with acute kidney injury.
炎症是肾脏疾病中肾小管上皮细胞损伤的主要原因,而血小板在驱动炎症中的作用也越来越受到重视。CD154 是 CD40 的配体,是支持血小板促炎特性的介质之一。尽管缺氧是炎症反应的一个重要组成部分,但血小板和 CD154 如何在缺氧条件下调节炎症反应尚不清楚。在这里,我们使用 HK-2 细胞系作为肾小管上皮细胞 (TEC) 模型,研究了 CD154 在短期氧剥夺条件下对促炎细胞因子白细胞介素- (IL-) 6 分泌的控制。在缺氧应激 1 至 3 小时后,CD154 明显刺激了 IL-6 的分泌。CD154 刺激了细胞内 IL-6 的表达和分泌,并与 IL-6 mRNA 的强烈上调和转录增加相关。在寻找缺氧条件下 HK-2 细胞中 CD154 介导的 IL-6 产生的抑制剂时,我们观察到氯喹,一种被重新用作抗炎剂的药物,减轻了这种诱导。因此,CD154 是 TEC 在 O 剥夺条件下分泌 IL-6 的一种有效早期刺激物,这种机制可能参与了血小板激活在肾小管损伤中引起的有害炎症后果。氯喹抑制 CD154 诱导的 IL-6 产生表明,该药在与急性肾损伤相关的情况下作为辅助治疗具有潜在的用途。