认知功能衰退
小胶质细胞
神经退行性变
神经炎症
心力衰竭
医学
神经科学
射血分数保留的心力衰竭
重编程
白质
转录组
炎症
疾病
内科学
认知
缺血
冲程(发动机)
射血分数
糖酵解
生物
心血管健康
生物信息学
内分泌学
焊剂(冶金)
氧化应激
效应器
信号转导
冲程容积
心脏病学
心脏病
中风恢复
作者
Swapna Patil,Connor Lantz,Axel A. Bonačić Marinović,Ripon Sarkar,Bo Ryung Lee,Matthew DeBerge
出处
期刊:
[Cold Spring Harbor Laboratory]
日期:2025-09-16
标识
DOI:10.1101/2025.09.10.675257
摘要
Heart failure with preserved ejection fraction (HFpEF) is a rapidly growing public health concern and an emerging contributor to dementia, yet the mechanisms linking cardiometabolic dysfunction to neurodegeneration remain poorly understood. Here, we demonstrate that HFpEF drives a sustained neuroinflammatory state through microglial metabolic reprogramming. Using a clinically relevant murine model of HFpEF, we identified robust induction of HIF-1α signaling in microglia via integrated transcriptomics and metabolomics, coupled with increased glycolytic metabolism revealed by extracellular flux analysis. Conditional deletion of Hif1a in microglia during HFpEF attenuated neuroinflammation, preserved white matter integrity, and rescued cognitive performance. We further identify Sema4D as a HIF-1α-dependent, microglia-derived effector linking metabolic stress to white matter injury. These findings establish a mechanistic bridge between cardiovascular disease and cognitive dysfunction and reveal microglial HIF-1α signaling as a tractable therapeutic strategy for preventing cognitive decline in cardiometabolic disease.
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