首页> 美国卫生研究院文献>Journal of Amino Acids >Endotoxin-Induced Tryptophan Degradation along the Kynurenine Pathway: The Role of Indolamine 23-Dioxygenase and Aryl Hydrocarbon Receptor-Mediated Immunosuppressive Effects in Endotoxin Tolerance and Cancer and Its Implications for Immunoparalysis
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Endotoxin-Induced Tryptophan Degradation along the Kynurenine Pathway: The Role of Indolamine 23-Dioxygenase and Aryl Hydrocarbon Receptor-Mediated Immunosuppressive Effects in Endotoxin Tolerance and Cancer and Its Implications for Immunoparalysis

机译:内毒素诱导的沿Kureurenine途径的色氨酸降解:吲哚胺23-二加氧酶和芳烃受体介导的免疫抑制作用在内毒素耐受性和癌症中的作用及其对免疫麻痹的影响

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摘要

The degradation of tryptophan (TRP) along the kynurenine pathway plays a crucial role as a neuro- and immunomodulatory mechanism in response to inflammatory stimuli, such as lipopolysaccharides (LPS). In endotoxemia or sepsis, an enhanced activation of the rate-limiting enzyme indoleamine 2,3-dioxygenase (IDO) is associated with a higher mortality risk. It is assumed that IDO induced immunosuppressive effects provoke the development of a protracted compensatory hypoinflammatory phase up to a complete paralysis of the immune system, which is characterized by an endotoxin tolerance. However, the role of IDO activation in the development of life-threatening immunoparalysis is still poorly understood. Recent reports described the impact of inflammatory IDO activation and aryl hydrocarbon receptor- (AhR-) mediated pathways on the development of LPS tolerance and immune escape of cancer cells. These immunosuppressive mechanisms offer new insights for a better understanding of the development of cellular dysfunctions in immunoparalysis. This review provides a comprehensive update of significant biological functions of TRP metabolites along the kynurenine pathway and the complex regulation of LPS-induced IDO activation. In addition, the review focuses on the role of IDO-AhR-mediated immunosuppressive pathways in endotoxin tolerance and carcinogenesis revealing the significance of enhanced IDO activity for the establishment of life-threatening immunoparalysis in sepsis.
机译:色氨酸(TRP)沿犬尿氨酸途径的降解在响应炎症刺激(例如脂多糖(LPS))的神经和免疫调节机制中起着至关重要的作用。在内毒素血症或败血症中,限速酶吲哚胺2,3-双加氧酶(IDO)的增强激活与更高的死亡风险相关。据推测,IDO诱导的免疫抑制作用会导致长期的代偿性消炎期发展,直至免疫系统完全瘫痪,其特征是内毒素耐受性。但是,IDO激活在威胁生命的免疫麻痹发展中的作用仍然知之甚少。最近的报道描述了炎症IDO激活和芳烃受体(AhR-)介导的途径对LPS耐受性发展和癌细胞的免疫逃逸的影响。这些免疫抑制机制为更好地了解免疫麻痹中细胞功能障碍的发展提供了新的见解。这篇综述提供了沿犬尿氨酸途径的TRP代谢产物重要生物学功能的全面更新,以及LPS诱导的IDO激活的复杂调控。此外,本综述着重于IDO-AhR介导的免疫抑制途径在内毒素耐受和致癌作用中的作用,揭示了IDO活性增强对于脓毒症中危及生命的免疫麻痹建立的重要性。

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