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NPD-0414-2 and NPD-0414-24 Two Chemical Entities Designed as Aryl Hydrocarbon Receptor (AhR) Ligands Inhibit Gut Inflammatory Signals

机译:NPD-0414-2和NPD-0414-24两个设计为芳烃受体(AhR)配体的化学实体可抑制肠内炎症信号

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摘要

Defects in counterregulatory mechanisms contribute to amplify the detrimental inflammatory response leading to the pathologic process occurring in the gut of patients with Crohn’s disease (CD) and ulcerative colitis (UC), the major inflammatory bowel diseases (IBDs), in human beings. One such mechanism involves aryl hydrocarbon receptor (AhR), a transcription factor activated by natural and synthetic ligands, which induces the production of interleukin (IL)-22 and down-regulates inflammatory signals. In IBD, AhR expression is down-regulated and its activation by natural ligands promotes clinical and endoscopic benefit. Since the use of AhR natural ligands can associate with serious adverse events, we developed new chemical ligands of AhR and assessed their regulatory effects. Among these derivatives, we selected the compounds NPD-0414-2 and NPD-0414-24, as they displayed the more pronounced capacity to induce IL-22. Peripheral blood mononuclear cells and lamina propria mononuclear cells (LPMC) were isolated from CD and UC patients. Cells were treated in vitro with Ficz, AhR ligands, and AhR antagonist and then cytokines’ expression was evaluated by real-time PCR and flow cytometry. After the induction of TNBS colitis, Ficz and AhR ligands were injected intra-peritoneally to wild type and AhR knock-out mice. After 4 days, mice were sacrificed and colonic tissues were collected for histologic examination and real-time PCR analysis. Treatment of IBD LPMC with NPD-0414-2 and NPD-0414-24 reduced IFN-γ and increased IL-22 transcripts, and these effects were abrogated by , a specific inhibitor of AhR interaction with its ligands. Mice given NPD-0414-2 and NPD-0414-24 developed a significantly less severe form of TNBS colitis and exhibited reduced expression of IFN-γ and increased expression of IL-22. The therapeutic effect of NPD-0414-2 and NPD-0414-24 on the ongoing colitis was abrogated in AhR-deficient mice. Collectively, these data show that NPD-0414-2 and NPD-0414-24 exert Ahr-dependent regulatory effects in the gut.
机译:反调节机制的缺陷会加剧有害的炎症反应,从而导致人类克罗恩病(CD)和溃疡性结肠炎(UC),主要的炎症性肠病(IBD)的患者肠道发生病理过程。一种这样的机制涉及芳烃受体(AhR),这是一种天然和合成配体激活的转录因子,可诱导白介素(IL)-22的产生并下调炎症信号。在IBD中,AhR表达下调,其被天然配体激活可促进临床和内窥镜检查。由于使用AhR天然配体会导致严重的不良事件,因此我们开发了新的AhR化学配体并评估了它们的调节作用。在这些衍生物中,我们选择了化合物NPD-0414-2和NPD-0414-24,因为它们显示出更明显的诱导IL-22的能力。从CD和UC患者中分离出外周血单核细胞和固有层单核细胞(LPMC)。用Ficz,AhR配体和AhR拮抗剂体外处理细胞,然后通过实时PCR和流式细胞仪评估细胞因子的表达。诱导TNBS结肠炎后,将Ficz和AhR配体腹膜内注射至野生型和AhR基因敲除小鼠。 4天后,处死小鼠并收集结肠组织用于组织学检查和实时PCR分析。用NPD-0414-2和NPD-0414-24处理IBD LPMC可降低IFN-γ并增加IL-22转录本,而这些作用被AhR与配体相互作用的特异性抑制剂所消除。给予NPD-0414-2和NPD-0414-24的小鼠发展成严重程度较轻的TNBS结肠炎,并表现出IFN-γ表达降低和IL-22表达升高。 NPD-0414-2和NPD-0414-24对进行中的结肠炎的治疗作用在AhR缺陷型小鼠中被取消。总体而言,这些数据表明NPD-0414-2和NPD-0414-24在肠道中发挥了Ahr依赖性调节作用。

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