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The influence of diesel exhaust particles on mononuclear phagocytic cell-derived cytokines: IL-10 TGF-β and IL-1β

机译:柴油机排气颗粒对单核吞噬细胞源性细胞因子IL-10TGF-β和IL-1β的影响

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摘要

Diesel exhaust particles (DEP) are known to modulate the production of cytokines associated with acute and chronic respiratory symptoms and allergic respiratory disease. Tolerance is an important mechanism through which the immune system can maintain nonresponsiveness to common environmental antigens. We examined the effect of DEP on IL-10 and TGF-β, cytokines produced by macrophages and repressor (Tr-like) lymphocytes which influence tolerance. Human PBMCs (n = 22) were incubated with 1–100 ng/ml of DEP, and suboptimally primed with LPS. IL-10 gene expression was assessed by the S1 nuclease protection assay, and production of IL-10, TGF-β, TNF-α, IL-1β and IL-4 stimulated CD23 was evaluated by ELISA after 24 and 48 h. The effect of the order of exposure to DEP and LPS was evaluated on IL-10 protein and mRNA in cells (1) preincubated with LPS followed by DEP, or (2) exposed first to DEP followed by LPS. IL-10 was further evaluated using benzo[a]pyrene and [α]naphthoflavone as a surrogate for the polyaromatic hydrocarbons (PAHs) adsorbed to DEP. Control cells were incubated with carbon black, without PAHs. In PBMCs exposed to DEP with LPS, or preincubated with LPS before DEP, IL-10 production and mRNA fall significantly. TGF-β is similarly suppressed, IL-1β secretion is significantly stimulated, and IL-4 stimulated CD23 release rises in the atopic subjects. In contrast, when DEP is added prior to LPS, IL-10 production rises, and IL-1β falls to zero. These effects on IL-10 are reproduced with benzo[a]pyrene and reversed by the coaddition of [α]naphthoflavone, its known antagonist. The carbon black fraction has no effect on IL-10 production. The effect of DEP on IL-10 can be inhibitory or stimulatory, depending on the order of exposure to DEP and LPS. Pro-inflammatory cytokines and factors rise when IL-10 is inhibited, and are suppressed when IL-10 is stimulated. These results are duplicated with benzo[a]pyrene, suggesting that the PAH portion of the DEP is the active agent.
机译:已知柴油机排气颗粒(DEP)会调节与急性和慢性呼吸道症状和过敏性呼吸道疾病相关的细胞因子的产生。耐受是免疫系统可以维持对常见环境抗原无反应性的重要机制。我们检查了DEP对IL-10和TGF-β,巨噬细胞和阻遏物(Tr-样)淋巴细胞产生的影响耐受性的细胞因子的影响。将人PBMC(n = 22)与1–100 ng / ml的DEP一起孵育,并用LPS最佳优化。通过S1核酸酶保护测定评估IL-10基因表达,并在24和48小时后通过ELISA评估IL-10,TGF-β,TNF-α,IL-1β和IL-4刺激的CD23的产生。评估暴露于DEP和LPS的顺序对细胞(1)先用LPS预孵育,然后进行DEP孵育,或(2)先暴露于DEP,再进行LPS暴露的细胞中IL-10蛋白和mRNA的影响。使用苯并[a] py和[α]萘黄酮作为吸附到DEP的多环芳烃(PAHs)的替代物,进一步评估了IL-10。将对照细胞与无PAH的炭黑一起孵育。在暴露于LPS的DEP或在DEP之前与LPS预孵育的PBMC中,IL-10产生和mRNA明显下降。类似地抑制了TGF-β,明显刺激了特应性受试者中IL-1β分泌,并且IL-4刺激的CD23释放增加。相反,当在LPS之前添加DEP时,IL-10产量增加,IL-1β降至零。这些对IL-10的作用可通过苯并[a] re复制,并通过共添加已知的拮抗剂[α]萘黄酮逆转。炭黑级分对IL-10的产生没有影响。 DEP对IL-10的作用可以是抑制性的也可以是刺激性的,具体取决于暴露于DEP和LPS的顺序。当抑制IL-10时,促炎性细胞因子和因子升高,而当刺激IL-10时,炎症因子被抑制。这些结果与苯并[a] re重复,表明DEP的PAH部分是活性剂。

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