Chronic high‐altitude exposure and intracerebral hemorrhage: A novel perspective from the vascular‐immune‐neuronal network

Abstract Intracerebral hemorrhage (ICH) under chronic high‐altitude exposure exhibits distinct epidemiological characteristics: higher incidence, younger age at onset, more severe perihematomal edema, and worse clinical outcomes. However, the specific mechanisms underlying its pathogenesis and progression remain incompletely understood. In this review, we demonstrate that immigrant populations subjected to chronic high‐altitude exposure are at increased risk of ICH relative to indigenous populations (Tibetans, Andeans), primarily due to the lack of adaptive genetic variations such as endothelial PAS domain protein 1 and small ubiquitin‐like modifier‐specific peptidase 1. Additionally, high‐altitude polycythemia, high‐altitude hypertension, and hyperuricemia have been identified as critical risk factors for high‐altitude ICH. Further mechanistic exploration reveals that chronic high‐altitude exposure‐induced brain injury is structurally underpinned by vascular‐immune‐neuronal network dysfunction, which entails the interactive crosstalk of “vascular injury‐immune infiltration‐neurodegeneration” and thereby creates a unique pathological niche for high‐altitude ICH. At the molecular level, the core driving mechanism is the reciprocal activation of the hypoxia‐inducible factor pathway, oxidative stress, and neuroinflammation. This review represents a comprehensive synthesis of chronic high‐altitude exposure‐related brain injury and the subsequent exacerbation of ICH, providing a valuable reference for future research on high‐altitude encephalopathy.

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Publication Details

Journal
Neuroprotection/Neuroprotection (Chichester, England. Print)
Published
2026-10-04
DOI
https://doi.org/10.1002/nep3.70059
Primary Topic
High Altitude and Hypoxia
Type
article
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article

Chronic high‐altitude exposure and intracerebral hemorrhage: A novel perspective from the vascular‐immune‐neuronal network

魏林节, OUYANG Rongjian, Yujie Chen, Rongsu Huang et al.
Neuroprotection/Neuroprotection (Chichester, England. Print)
High Altitude and Hypoxia
article

Chronic high‐altitude exposure and intracerebral hemorrhage: A novel perspective from the vascular‐immune‐neuronal network

魏林节, OUYANG Rongjian, Yujie Chen, Rongsu Huang, Gang Zhu, Bo Wu, Mingxi Li
article en

Abstract

Abstract Intracerebral hemorrhage (ICH) under chronic high‐altitude exposure exhibits distinct epidemiological characteristics: higher incidence, younger age at onset, more severe perihematomal edema, and worse clinical outcomes. However, the specific mechanisms underlying its pathogenesis and progression remain incompletely understood. In this review, we demonstrate that immigrant populations subjected to chronic high‐altitude exposure are at increased risk of ICH relative to indigenous populations (Tibetans, Andeans), primarily due to the lack of adaptive genetic variations such as endothelial PAS domain protein 1 and small ubiquitin‐like modifier‐specific peptidase 1. Additionally, high‐altitude polycythemia, high‐altitude hypertension, and hyperuricemia have been identified as critical risk factors for high‐altitude ICH. Further mechanistic exploration reveals that chronic high‐altitude exposure‐induced brain injury is structurally underpinned by vascular‐immune‐neuronal network dysfunction, which entails the interactive crosstalk of “vascular injury‐immune infiltration‐neurodegeneration” and thereby creates a unique pathological niche for high‐altitude ICH. At the molecular level, the core driving mechanism is the reciprocal activation of the hypoxia‐inducible factor pathway, oxidative stress, and neuroinflammation. This review represents a comprehensive synthesis of chronic high‐altitude exposure‐related brain injury and the subsequent exacerbation of ICH, providing a valuable reference for future research on high‐altitude encephalopathy.

Neuroprotection/Neuroprotection (Chichester, England. Print)
Army Medical University (CN), Chongqing University (CN), General Hospital of Jinan Military Command (CN), People's Liberation Army 401 Hospital (CN), Southwest Hospital (CN), The 309th Hospital of Chinese People's Liberation Army (CN), First People's Hospital of Chongqing (CN)
Openalex Percentile: Top 13%
High Altitude and Hypoxia
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