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Disrupted erythrocyte S1P-eNOS axis promotes hypoxia, hypertension and fibrosis in obstructive sleep apnoea-hypopnoea syndrome

delete2026-07-07
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PRE
AI
Y
Yuhua Fan
C
Changhan Chen
C
Cheng Luo
S
Simin Zhou
H
Hongan Lu
F
Fang Yu
Z
Zhiying He
Y
Yiyan Wang
Y
Yuyu Chou
Y
Yanxiu Li
X
Xianjing Feng
T
Tingting Xie
L
Linlin Wan
X
Xi Long
Y
Yidan Wang
D
Danjie Luo
Y
Yuexiang Qin
X
Xin Zhang
J
Juan Liu
R
Ruiwen Mao
Z
Zhiyu Yang
Y
Yujin Zhang
R
Rodney E Kellems *
D
Donghai Huang *
Y
Yang Xia *
DOI:10.1093/eurheartj/ehag405delete
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Abstract

Abstract

En 中文
Obstructive sleep apnoea-hypopnoea syndrome (OSAHS) has emerged as a global epidemic with profound cardiovascular and renal consequences, yet its early pathogenic mechanisms remain poorly understood. Whether red blood cells (RBCs) act as the primary hypoxia sensor that transduces intermittent apnoea into irreversible outcomes remains enigmatic. This study aims to define the pathogenic nature of RBCs during the progression of OSAHS with a goal of identifying early biomarkers and targeted treatments to prevent detrimental outcomes.

Journal

European Heart Journal cover
European Heart Journal
IF:
35.6
Papers:
3.0W
Citations:
9.1W

Organization

C
central south university
Scholars:
1.7W
Papers: 5.0K
Citations: 3
T
the university of texas mcgovern medical school
Scholars:
5
Papers: 4
Citations: 0
Cited Papers

Cited Papers

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