ArticleFrontiers in aging neuroscience2023
White matter injury, cholesterol dysmetabolism, and APP/Abeta dysmetabolism interact to produce Alzheimer's disease (AD) neuropathology: A hypothesis and review.
Article in Frontiers in aging neuroscience, 2023. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 25 papers.
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Who cites it
25 citing papers in PubMed, 28 citations in OpenAlex.
- Multimodal MRI combined with RNA sequencing reveals pathological signatures in the 9-month-old 3×Tg-AD mouse brain.Neural regeneration research · 2026Article
- CYP46A1 activation by low-dose efavirenz uncovers the link between brain cholesterol metabolism, energetics, and vasculature.Biomedicine & pharmacotherapy = Biomedecine & pharmacotherapie · 2026Article
- CSF Proteomic Profiles Associated With White Matter Integrity in Cognitively Normal Older Adults With and Without Amyloid Pathology.Neurology · 2026Article
- Advancing clinical trial readiness in white matter disease and related dementias: key steps for future research progress.GeroScience · 2026Article
- Metabolic dysfunction and mitochondrial failure in Alzheimer's disease: integrating pathophysiology, clinical evidence and emerging interventions.Frontiers in neurology · 2026Review
- Bioenergetics and lipid metabolism in Alzheimer's disease: From cell biology to systemic health.Journal of internal medicine · 2026Review
- Targeting Oligodendrocyte Dysfunction in Alzheimer's Disease: a New Frontier for Drug Repurposing with Antihistamines and Serotonin Receptor Agonists.Journal of molecular neuroscience : MN · 2025Review
- Review
- Development of Delta Opioid Receptor Antagonists Which Prevent Alzheimer's Disease-Like Pathology in the 5X-Familial Alzheimer's Disease [5XFAD] Mouse Model.ACS pharmacology & translational science · 2025Article
- Emerging Role of Oligodendrocytes Malfunction in the Progression of Alzheimer's Disease.Journal of neuroimmune pharmacology : the official journal of the Society on NeuroImmune Pharmacology · 2025Review
- Clinical Significance of APOE4 Genotyping: Potential for Personalized Therapy and Early Diagnosis of Alzheimer's Disease.Journal of clinical medicine · 2025Review
- Imaging myelin degradation in ex vivo prefrontal cortex tissue blocks in Alzheimer's disease and chronic traumatic encephalopathy.Alzheimer's & dementia : the journal of the Alzheimer's Association · 2025Article
- Relation of Alzheimer's disease-related TDP-43 proteinopathy to metrics from diffusion tensor imaging (DTI) and neurite orientation dispersion and density imaging (NODDI).Neurobiology of aging · 2025Article
- Visualize neuronal membrane cholesterol with split-fluorescent protein tagged YDQA sensor.Journal of lipid research · 2025Article
- The pathophysiology of mixed Alzheimer's disease and vascular dementia.Theranostics · 2025Review
- Article
- Recent Advances in Targeting Transition Metals (Copper, Iron, and Zinc) in Alzheimer's Disease.Molecular neurobiology · 2024Review
- Alzheimer's disease genetic pathways impact cerebrospinal fluid biomarkers and imaging endophenotypes in non-demented individuals.Alzheimer's & dementia : the journal of the Alzheimer's Association · 2024Article
- Testing the structural disconnection hypothesis: Myelin content correlates with memory in healthy aging.Neurobiology of aging · 2024Article
- Reduced rapid eye movement sleep in late middle-aged and older apolipoprotein E ɛ4 allele carriers.Sleep · 2024Article
Corrections and comments
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Authors and funding
4 authors at 1 institution in 1 country.
Funding
Abstract
We postulate that myelin injury contributes to cholesterol release from myelin and cholesterol dysmetabolism which contributes to Abeta dysmetabolism, and combined with genetic and AD risk factors, leads to increased Abeta and amyloid plaques. Increased Abeta damages myelin to form a vicious injury cycle. Thus, white matter injury, cholesterol dysmetabolism and Abeta dysmetabolism interact to produce or worsen AD neuropathology. The amyloid cascade is the leading hypothesis for the cause of Alzheimer's disease (AD). The failure of clinical trials based on this hypothesis has raised other possibilities. Even with a possible new success (Lecanemab), it is not clear whether this is a cause or a result of the disease. With the discovery in 1993 that the apolipoprotein E type 4 allele (APOE4) was the major risk factor for sporadic, late-onset AD (LOAD), there has been increasing interest in cholesterol in AD since APOE is a major cholesterol transporter. Recent studies show that cholesterol metabolism is intricately involved with Abeta (Aβ)/amyloid transport and metabolism, with cholesterol down-regulating the Aβ LRP1 transporter and upregulating the Aβ RAGE receptor, both of which would increase brain Aβ. Moreover, manipulating cholesterol transport and metabolism in rodent AD models can ameliorate pathology and cognitive deficits, or worsen them depending upon the manipulation. Though white matter (WM) injury has been noted in AD brain since Alzheimer's initial observations, recent studies have shown abnormal white matter in every AD brain. Moreover, there is age-related WM injury in normal individuals that occurs earlier and is worse with the APOE4 genotype. Moreover, WM injury precedes formation of plaques and tangles in human Familial Alzheimer's disease (FAD) and precedes plaque formation in rodent AD models. Restoring WM in rodent AD models improves cognition without affecting AD pathology. Thus, we postulate that the amyloid cascade, cholesterol dysmetabolism and white matter injury interact to produce and/or worsen AD pathology. We further postulate that the primary initiating event could be related to any of the three, with age a major factor for WM injury, diet and APOE4 and other genes a factor for cholesterol dysmetabolism, and FAD and other genes for Abeta dysmetabolism.
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