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◆ Pharmacological research2026-09-06

HIF-1 exerts a double-edged sword regulatory role in hippocampal neuronal PANoptosis of Alzheimer's disease through HK2/VDAC1/NLRP3 axis and RIPK3 signal.

Siqi Wang, Laixi Luo, Xilin Jiang, Jun Hai, Weilin Liu, Xianhui Zhou, Ying Li, Lichao Yang

原始摘要(英文原文)· Original abstract
Extensive neuronal loss in brain regions critical for learning and memory is a hallmark of Alzheimer's disease (AD). PANoptosis, a newly characterized form of programmed cell death, integrates the key features of pyroptosis, apoptosis and necroptosis, and explains the molecular crosstalk among these pathways. However, whether PANoptosis is a new manner for hippocampal neuron death in AD, and the involved regulatory mechanisms remains largely unknown. Here, we demonstrate that PANoptosis is a crucial mechanism driving hippocampal neuronal loss in an AD mouse model. Moreover, we uncovered that the HIF-1 signaling pathway exerts a double-edged sword effect on hippocampal neuronal PANoptosis by activating the HK2/VDAC1/NLRP3 axis while concurrently suppressing RIPK3 signal. This observation may offer a partial explanation for the double-edged sword role of HIF-1 as both a neuroprotective and neurotoxic factor in AD. Finally, we uncovered that semaglutide, a glucagon-like peptide-1 receptor agonist (GLP-1RA), mitigates hippocampal neuronal PANoptosis by reprograming the double-eged sword effect of HIF-1 mediated by GLP-1R-AMPK signaling pathway, highlighting its potential as a therapeutic avenue for AD. These findings uncover a previously unrecognized role of PANoptosis in AD and provide new insights into the HIF-1-mediated regulatory mechanisms, offering a promising target for therapeutic intervention.
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HIF-1 exerts a double-edged sword regulatory role in hippocampal neuronal PANoptosis of Alzheimer's disease through HK2/VDAC1/NLRP3 axis and RIPK3 signal. — 科研速览 Science Skim