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Hypoxia/HIF Modulates Immune Responses

机译:缺氧/ HIF调节免疫应答

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摘要

Oxygen availability varies throughout the human body in health and disease. Under physiological conditions, oxygen availability drops from the lungs over the blood stream towards the different tissues into the cells and the mitochondrial cavities leading to physiological low oxygen conditions or physiological hypoxia in all organs including primary lymphoid organs. Moreover, immune cells travel throughout the body searching for damaged cells and foreign antigens facing a variety of oxygen levels. Consequently, physiological hypoxia impacts immune cell function finally controlling innate and adaptive immune response mainly by transcriptional regulation via hypoxia-inducible factors (HIFs). Under pathophysiological conditions such as found in inflammation, injury, infection, ischemia and cancer, severe hypoxia can alter immune cells leading to dysfunctional immune response finally leading to tissue damage, cancer progression and autoimmunity. Here we summarize the effects of physiological and pathophysiological hypoxia on innate and adaptive immune activity, we provide an overview on the control of immune response by cellular hypoxia-induced pathways with focus on the role of HIFs and discuss the opportunity to target hypoxia-sensitive pathways for the treatment of cancer and autoimmunity.
机译:氧气可用性在整个人体中变化健康和疾病。在生理条件下,氧可用性从肺部血流朝向不同组织的血流滴入细胞和线粒体腔中,导致所有器官的生理低氧气条件或生理缺氧,包括原发性淋巴器官。此外,免疫细胞在整个身体中行驶寻找受损的细胞和面向各种氧水平的外来抗原。因此,生理缺氧影响免疫细胞功能最终通过缺氧诱导因子(HIF)主要通过转录调节来控制先天和适应性免疫应答。在炎症,损伤,感染,缺血和癌症中发现的病理生理病症下,严重缺氧可以改变免疫细胞,导致功能障碍免疫反应最终导致组织损伤,癌症进展和自身免疫。在这里,我们总结了生理和病理生理缺氧对先天性和适应性免疫活动的影响,我们概述了对细胞缺氧诱导的途径的控制,重点是HIF的作用,并讨论靶向缺氧敏感途径的机会用于治疗癌症和自身免疫。

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