4.6 Article

Cerebral deficiency of vitamin B5 (D-pantothenic acid; pantothenate) as a potentially-reversible cause of neurodegeneration and dementia in sporadic Alzheimer's disease

期刊

出版社

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.bbrc.2020.05.015

关键词

Alzheimer's disease; Human brain; Vitamin B5 (pantothenic acid Pantothenate); Age-related neurodegeneration; Acetyl-CoA; Metabolic brain disease

资金

  1. Endocore Research Trust [60187]
  2. Oakley Mental Health Research Foundation (NZ) [3456030, 3627092, 3701339, 3703253, 3702879]
  3. Maurice and Phyllis Paykel Trust [3627036]
  4. University of Auckland [PReSS jxu058]
  5. Maurice Wilkins Centre for Molecular Biodiscovery (Tertiary Education Commission) [9341-3622506]
  6. NZ Ministry of Business, Innovation Employment [UOAX0815]
  7. University of Manchester
  8. Northwest Regional Development Agency

向作者/读者索取更多资源

Alzheimer's disease (AD) is the most common cause of age-related neurodegeneration and dementia, and there are no available treatments with proven disease-modifying actions. It is therefore appropriate to study hitherto-unknown aspects of brain structure/function in AD to seek alternative disease-related mechanisms that might be targeted by new therapeutic interventions with disease-modifying actions. During hypothesis-generating metabolomic studies of brain, we identified apparent differences in levels of vitamin B5 between AD cases and controls. We therefore developed a method based on gas chromatography-mass spectrometry by which we quantitated vitamin B5 concentrations in seven brain regions from nine AD cases and nine controls. We found that widespread, severe cerebral deficiency of vitamin B5 occurs in AD. This deficiency was worse in those regions known to undergo severe damage, including the hippocampus, entorhinal cortex, and middle temporal gyms. Vitamin B5 is the obligate precursor of CoA/acetyl-CoA (acetyl-coenzyme A), which plays myriad key roles in the metabolism of all organs, including the brain. In brain, acetyl-CoA is the obligate precursor of the neurotransmitter acetylcholine, and the complex fatty-acyl groups that mediate the essential insulator role of myelin, both processes being defective in AD; moreover, the large cerebral vitamin B5 concentrations co-localize almost entirely to white matter. Vitamin B5 is well tolerated when administered orally to humans and other mammals. We conclude that cerebral vitamin B5 deficiency may well cause neurodegeneration and dementia in AD, which might be preventable or even reversible in its early stages, by treatment with suitable oral doses of vitamin B5. (C) 2020 Elsevier Inc. All rights reserved.

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