Lithium deficiency in Alzheimer’s disease: from cerebral bioenergetic failure to therapeutic intervention

Alzheimer’s disease (AD) is traditionally defined as a proteinopathy marked by amyloid-β plaques and neurofibrillary tangles. Emerging evidence, however, now characterizes AD as a disorder of cerebral bioenergetics stemming from mitochondrial dysfunction. A recent paradigm shift proposes that endogenous lithium deficiency may exacerbate AD. Considering the roles of lithium in bioenergetic regulation, it may serve as a link between the cerebral bioenergetic failure and cognitive impairment in AD. In this review, we outline the multifaceted mechanisms of lithium, including glycogen synthase kinase‑3 inhibition, improved mitochondrial function, reduced neuroinflammation, and enhanced cellular resilience, by which lithium collectively restores cerebral bioenergetics and metabolic homeostasis in AD. Next-generation lithium formulations addressing cerebral bioenergetic failure with therapeutic promise against AD are also discussed. In addition, we further propose a precision framework emphasizing early intervention, biomarker-guided strategies, and rational combination therapies. By targeting cerebral bioenergetic failure, lithium-based strategies may open a new door for the disease-modifying therapy against AD.

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Publication Details

Journal
BMC Medicine
Published
2026-09-17
DOI
https://doi.org/10.1186/s12916-026-05245-5
Primary Topic
Bipolar Disorder and Treatment
Type
article
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article

Lithium deficiency in Alzheimer’s disease: from cerebral bioenergetic failure to therapeutic intervention

Zhifeng Lei, Song Li, Jun Tan, Chuanbin Cai et al.
BMC Medicine
Bipolar Disorder and Treatment
article

Lithium deficiency in Alzheimer’s disease: from cerebral bioenergetic failure to therapeutic intervention

Zhifeng Lei, Song Li, Jun Tan, Chuanbin Cai, Jiang Chen
article en

Abstract

Alzheimer’s disease (AD) is traditionally defined as a proteinopathy marked by amyloid-β plaques and neurofibrillary tangles. Emerging evidence, however, now characterizes AD as a disorder of cerebral bioenergetics stemming from mitochondrial dysfunction. A recent paradigm shift proposes that endogenous lithium deficiency may exacerbate AD. Considering the roles of lithium in bioenergetic regulation, it may serve as a link between the cerebral bioenergetic failure and cognitive impairment in AD. In this review, we outline the multifaceted mechanisms of lithium, including glycogen synthase kinase‑3 inhibition, improved mitochondrial function, reduced neuroinflammation, and enhanced cellular resilience, by which lithium collectively restores cerebral bioenergetics and metabolic homeostasis in AD. Next-generation lithium formulations addressing cerebral bioenergetic failure with therapeutic promise against AD are also discussed. In addition, we further propose a precision framework emphasizing early intervention, biomarker-guided strategies, and rational combination therapies. By targeting cerebral bioenergetic failure, lithium-based strategies may open a new door for the disease-modifying therapy against AD.

BMC Medicine
Guiyang Medical University (CN), Zunyi Medical University (CN), Dalian Medical University (CN), Ministry of Education (RO), First Affiliated Hospital of Dalian Medical University (CN)
Openalex Percentile: Top 10%
Bipolar Disorder and Treatment
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Lithium deficiency in Alzheimer’s disease: from cerebral bioenergetic failure to therapeutic intervention — Zhifeng Lei, Song Li, et al. · BMC Medicine (2026) | TGRS Research Map | TGRS