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缺氧与炎症:来自高原生理学的见解

Hypoxia and Inflammation: Insights From High-Altitude Physiology.

作者信息

Pham Kathy, Parikh Keval, Heinrich Erica C

机构信息

Division of Biomedical Sciences, School of Medicine, University of California, Riverside, Riverside, CA, United States.

出版信息

Front Physiol. 2021 May 26;12:676782. doi: 10.3389/fphys.2021.676782. eCollection 2021.

Abstract

The key regulators of the transcriptional response to hypoxia and inflammation (hypoxia inducible factor, HIF, and nuclear factor-kappa B, NF-κB, respectively) are evolutionarily conserved and share significant crosstalk. Tissues often experience hypoxia and inflammation concurrently at the site of infection or injury due to fluid retention and immune cell recruitment that ultimately reduces the rate of oxygen delivery to tissues. Inflammation can induce activity of HIF-pathway genes, and hypoxia may modulate inflammatory signaling. While it is clear that these molecular pathways function in concert, the physiological consequences of hypoxia-induced inflammation and how hypoxia modulates inflammatory signaling and immune function are not well established. In this review, we summarize known mechanisms of HIF and NF-κB crosstalk and highlight the physiological consequences that can arise from maladaptive hypoxia-induced inflammation. Finally, we discuss what can be learned about adaptive regulation of inflammation under chronic hypoxia by examining adaptive and maladaptive inflammatory phenotypes observed in human populations at high altitude. We aim to provide insight into the time domains of hypoxia-induced inflammation and highlight the importance of hypoxia-induced inflammatory sensitization in immune function, pathologies, and environmental adaptation.

摘要

对缺氧和炎症转录反应的关键调节因子(分别为缺氧诱导因子,即HIF,和核因子κB,即NF-κB)在进化上是保守的,并且存在显著的相互作用。由于液体潴留和免疫细胞募集,组织在感染或损伤部位常常同时经历缺氧和炎症,这最终会降低氧气输送到组织的速率。炎症可诱导HIF信号通路基因的活性,而缺氧可能调节炎症信号传导。虽然很明显这些分子途径协同发挥作用,但缺氧诱导的炎症的生理后果以及缺氧如何调节炎症信号传导和免疫功能尚未完全明确。在本综述中,我们总结了HIF和NF-κB相互作用的已知机制,并强调了适应性不良的缺氧诱导炎症可能产生的生理后果。最后,我们通过研究在高海拔人群中观察到的适应性和适应性不良的炎症表型,讨论了关于慢性缺氧下炎症的适应性调节可以学到什么。我们旨在深入了解缺氧诱导炎症的时域,并强调缺氧诱导的炎症致敏在免疫功能、病理学和环境适应中的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b190/8188852/0c81630e14b9/fphys-12-676782-g001.jpg

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