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IL-23-mediated regulation of IL-17 production in Helicobacter pylori-infected gastric mucosa.

机译:IL-23-mediated IL-17生产的监管幽门螺杆菌感染胃粘膜。

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摘要

Helicobacter pylori (Hp) infection is associated with a marked infiltration of the gastric mucosa by inflammatory cells. The molecular pathways that control Hp-associated inflammatory reaction are complex, but locally induced cytokines seem to contribute to maintaining the ongoing inflammation. We have previously shown that IL-17 is over-produced in Hp-infected gastric mucosa, and that IL-17 stimulates the synthesis of IL-8, the major neutrophil chemoattractant. Factors/mechanisms that regulate IL-17 expression remain, however, unknown. In this study, we initially expanded our previous data, showing that CD4(+) and CD8(+) T cells are a source of IL-17 in Hp-infected samples. Since IL-23 enhances T cell-derived IL-17 during bacterial infections, we then assessed the role of IL-23 in controlling IL-17 expression in Hp-colonized stomach. Using real-time PCR and ELISA, IL-23 was detected in all gastric biopsies, but its expression was more pronounced in Hp-infected samples in comparison to controls. Treatment of normal gastric lamina propria mononuclear cells (LPMC) with IL-23 enhanced Stat3 activation and IL-17 secretion, and pharmacological inhibition of Stat3 prevented IL-23-driven IL-17 synthesis. Consistently, blockade of IL-23 in cultures of LPMC from Hp-infected patients reduced Stat3 activation and IL-17 production. Data show that IL-23 is overexpressed in Hp-infected gastric mucosa where it could contribute to sustaining IL-17 production.
机译:幽门螺杆菌(Hp)感染有关标志着胃粘膜的渗透由炎症细胞。控制Hp-associated炎性反应似乎很复杂,但局部诱导细胞因子为保持持续的炎症。企业在Hp-infected胃粘膜,IL-17刺激引发的合成,主要的中性粒细胞化学引诱物。因素/机制调节IL-17表达式然而,仍然未知。最初扩大我们之前的数据,显示CD4(+)和CD8 (+) T细胞的来源IL-17 Hp-infected样本。增强T细胞衍生IL-17在细菌感染,然后评估IL-23的作用控制Hp-colonized IL-17表达式胃。发现在所有胃活检,但其表达式是Hp-infected更加明显样品相比,控制。正常的胃固有层单核细胞(LPMC) IL-23增强Stat3和激活IL-17分泌,药物抑制Stat3的阻止IL-23-driven IL-17合成。一致,封锁IL-23文化LPMC Stat3 Hp-infected患者减少激活和IL-17生产。IL-23 Hp-infected胃中粘膜,它可能有助于维持IL-17生产。

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