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(H)如有适用情况:通过缺血后诱导的 HIF-2 信号促进神经发生。

(H)IF applicable: promotion of neurogenesis by induced HIF-2 signalling after ischaemia.

机构信息

Institute of Physiology, University Duisburg-Essen, 45147, Essen, Germany.

Institute of Physiology, Pathophysiology and Toxicology and Center for Biomedical Education and Research (ZBAF), University of Witten/Herdecke, 58453, Witten, Germany.

出版信息

Pflugers Arch. 2021 Aug;473(8):1287-1299. doi: 10.1007/s00424-021-02600-8. Epub 2021 Jul 12.

Abstract

HIF-2 represents a tissue-specific isoform of the hypoxia-inducible factors (HIFs) which regulate oxygen homeostasis in the cell. In acute oxygen deficiency, HIF transcription factors ensure the timely restoration of adequate oxygen supply. Particularly in medical conditions such as stroke, which have a high mortality risk due to ischaemic brain damage, rapid recovery of oxygen supply is of extraordinary importance. Nevertheless, the endogenous mechanisms are often not sufficient to respond to severe hypoxic stress with restoring oxygenation and fail to protect the tissue. Herein, we analysed murine neurospheres without functioning HIF-2α and found that special importance in the differentiation of neurons can be attributed to HIF-2 in the brain. Other processes, such as cell migration and signal transduction of different signalling pathways, appear to be mediated to some extent via HIF-2 and illustrate the function of HIF-2 in brain remodelling. Without hypoxic stress, HIF-2 in the brain presumably focuses on the fine-tuning of the neural network. However, a therapeutically increase of HIF-2 has the potential to regenerate or replace destroyed brain tissue and help minimize the consequences of an ischaemic stroke.

摘要

HIF-2 代表缺氧诱导因子 (HIFs) 的组织特异性同工型,调节细胞中的氧稳态。在急性氧缺乏时,HIF 转录因子确保及时恢复足够的氧供应。特别是在中风等医学条件下,由于缺血性脑损伤导致的死亡率很高,快速恢复氧供应非常重要。然而,内源性机制通常不足以应对严重的低氧应激,无法恢复氧合作用并不能保护组织。在此,我们分析了没有功能的 HIF-2α 的小鼠神经球,发现 HIF-2 在大脑中的神经元分化中具有特殊重要性。其他过程,如细胞迁移和不同信号通路的信号转导,似乎在一定程度上通过 HIF-2 介导,并说明了 HIF-2 在脑重塑中的作用。在没有低氧应激的情况下,大脑中的 HIF-2 可能专注于神经网络的微调。然而,治疗性增加 HIF-2 有可能再生或替代受损的脑组织,并有助于最大限度地减少缺血性中风的后果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e8ff/8302505/69334dfb2a90/424_2021_2600_Fig1_HTML.jpg

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