Talitha C Ford, Luke A Downey, Tamara Simpson, Grace McPhee, Chris Oliver, Con Stough
Journal: Nutrients 2019;10(12):1860
PMID: 30513795
A diet rich in vitamins and micronutrients, particularly B vitamins, is essential for body and brain functionality. B vitamin supplementation has been found to reduce depression, enhance mood, lessen anxiety and improve cognition. New neuroimaging techniques have shed light on the relationship between blood and neural biomarkers, connecting diet quality and brain function. The aim of this randomised, placebo-controlled, double-blind trial was to investigate the effect of 6-month high-dose B-vitamin supplementation on neural and blood biomarkers of metabolism in 32 healthy adults. Participants were randomised to consume either B-vitamin supplementation or placebo pills twice a day for six months and underwent blood tests and brain imaging before and after supplementation. This study found supplementation effectively increased vitamin B6 and B12 levels and reduced homocysteine with no changes in folate as compared with placebo. Supplementation promoted neural metabolic pathways and reduced oxidative stress and inflammation. Based on these findings, the authors conclude B-group vitamins are important for maintaining brain health in healthy adults and may play a role in prevention and alleviation of neural disease and disability.
A diet rich in B-group vitamins is essential for optimal body and brain function, and insufficient amounts of such vitamins have been associated with higher levels of neural inflammation and oxidative stress, as marked by increased blood plasma homocysteine. Neural biomarkers of oxidative stress quantified through proton magnetic spectroscopy (1H-MRS) are not well understood, and the relationship between such neural and blood biomarkers is seldom studied. The current study addresses this gap by investigating the direct effect of 6-month high-dose B-group vitamin supplementation on neural and blood biomarkers of metabolism. Using a randomized, double-blind, placebo-controlled design, 32 healthy adults (20 female, 12 male) aged 30⁻65 years underwent blood tests (vitamin B6, vitamin B12, folate, and homocysteine levels) and 1H-MRS of the posterior cingulate cortex (PCC) and dorsolateral prefrontal cortex (DLPFC) before and after supplementation. Results confirmed the supplement was effective in increasing vitamin B6 and vitamin B12 levels and reducing homocysteine, whereas there was no change in folate levels. There were significant relationships between vitamin B6 and -acetylaspartate (NAA), choline, and creatine, as well as between vitamin B12 and creatine (s < 0.05), whereas NAA in the PCC increased, albeit not significantly ( > 0.05). Together these data provide preliminary evidence for the efficacy of high-dose B-group supplementation in reducing oxidative stress and inflammation through increasing oxidative metabolism. It may also promote myelination, cellular metabolism, and energy storage.
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