Roles of glycolytic and pyruvate metabolism enzymes in Alzheimer’s disease glycometabolic reprogramming and their therapeutic potential

Abstract Alzheimer’s disease (AD) is characterized by cerebral glucose hypome-tabolism, an early hallmark through neuroimaging and neuropathological investigations. Previous researches have established the phenomenon of reduced glucose uptake. Building upon this established knowledge, the field is now increasingly focused on elucidating the underlying molecular mecha-nisms that govern these metabolic changes. In this review, we synthesize current evidence regarding the dysregulation of major glycolytic and pyruvate-metabolizing enzymes, including hexokinase (HK), phosphofructokinase-1 (PFK1), pyruvate kinase (PK), lactate dehydrogenase (LDH), and the pyruvate dehydrogenase complex (PDHc), in both neurons and glial cells. As well as compromising cerebral energy homeostasis, these enzymatic disruptions engage in bidirectional feedback mechanisms with neuroinflammatory pathways and amyloid-β/Tau pathology. By consolidating recent mechanism research, this review offers a potential framework for understanding how metabolic enzyme dysregulation contributes to AD pathogenesis at a molecular level. Emerging therapeutic strategies targeting these metabolic enzymes are also discussed, along with an evaluation of both their preclinical promise and the translational challenges that remain.

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Publication Details

Journal
Discover Neuroscience
Published
2026-09-04
DOI
https://doi.org/10.1186/s13064-026-00314-0
Primary Topic
Alzheimer's disease research and treatments
Type
article
Field-Weighted Citation Impact
0.00

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article

Roles of glycolytic and pyruvate metabolism enzymes in Alzheimer’s disease glycometabolic reprogramming and their therapeutic potential

Zeshan Yao, Runzhi Li, Jinlong Zhang, Changmin Zuo et al.
Discover Neuroscience
Alzheimer's disease research and treatments
article

Roles of glycolytic and pyruvate metabolism enzymes in Alzheimer’s disease glycometabolic reprogramming and their therapeutic potential

Zeshan Yao, Runzhi Li, Jinlong Zhang, Changmin Zuo, Li Cheng, Liping Li, Minmin Chen
article en

Abstract

Abstract Alzheimer’s disease (AD) is characterized by cerebral glucose hypome-tabolism, an early hallmark through neuroimaging and neuropathological investigations. Previous researches have established the phenomenon of reduced glucose uptake. Building upon this established knowledge, the field is now increasingly focused on elucidating the underlying molecular mecha-nisms that govern these metabolic changes. In this review, we synthesize current evidence regarding the dysregulation of major glycolytic and pyruvate-metabolizing enzymes, including hexokinase (HK), phosphofructokinase-1 (PFK1), pyruvate kinase (PK), lactate dehydrogenase (LDH), and the pyruvate dehydrogenase complex (PDHc), in both neurons and glial cells. As well as compromising cerebral energy homeostasis, these enzymatic disruptions engage in bidirectional feedback mechanisms with neuroinflammatory pathways and amyloid-β/Tau pathology. By consolidating recent mechanism research, this review offers a potential framework for understanding how metabolic enzyme dysregulation contributes to AD pathogenesis at a molecular level. Emerging therapeutic strategies targeting these metabolic enzymes are also discussed, along with an evaluation of both their preclinical promise and the translational challenges that remain.

Discover NeuroscienceVol. 21(1)
Shanxi Medical University (CN), Jingdong (China) (CN), Shanxi Provincial People’s Hospital (CN)
National Natural Science Foundation of China, Shanxi Province Science Foundation for Youths
Affordable and clean energy
Openalex Percentile: Top 11%
Alzheimer's disease research and treatments
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