Study finds lower normal B12 levels tied to brain changes

A University of California San Francisco study has linked lower but still normal levels of active vitamin B12 to slower thinking and white matter damage in healthy older adults. The research, published in Annals of Neurology in 2025, suggests current guidelines may miss early neurological risks. Researchers examined 231 participants with an average age of 71.

The study focused on older adults without dementia or mild cognitive impairment. Participants had an average blood B12 level of 414.8 pmol/L, well above the U.S. minimum of 148 pmol/L. Those with lower active B12 showed slower processing speed and delayed visual responses after adjustments for age, sex, education, and cardiovascular risks.

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Realistic illustration of a fatigued young adult overlaid with brain MRI and blood cell visuals highlighting altered ATP energy patterns linked to depression.
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Study links major depression in young adults to altered cellular energy patterns in brain and blood

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Researchers studying young adults with major depressive disorder have reported an unusual energy “signature” in both the brain and immune blood cells: higher ATP-related measures at rest, paired with a reduced ability to increase energy production when demand rises. The findings, published in Translational Psychiatry, may help explain common symptoms such as fatigue and low motivation, though the work is early and based on a small sample.

A new study has found that adults with higher vitamin D levels in their 30s and 40s tend to have lower levels of tau protein in their brains about 16 years later. Tau is a key biomarker associated with dementia. The research, published this week, highlights a potential modifiable risk factor for brain health.

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New research from the University of Southern California suggests that subtle declines in brain blood flow and oxygen delivery may be early indicators of Alzheimer's disease. The study, published in Alzheimer's and Dementia, used noninvasive scans to connect vascular health with amyloid plaques and hippocampal shrinkage. These findings highlight the role of brain circulation in the disease process beyond traditional markers like amyloid and tau.

Scientists at Washington University School of Medicine in St. Louis have developed a blood test that estimates when Alzheimer's symptoms may begin, using levels of the protein p-tau217. The model predicts onset within about three to four years, potentially aiding clinical trials and early interventions. This advance relies on data from 603 older adults in ongoing studies.

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Researchers at the University of California, San Francisco report that higher levels of the iron-associated protein FTL1 in the hippocampus of older mice are tied to weaker neural connections and worse performance on cognitive tests. In the experiments, reducing FTL1 in older mice was associated with increased neuronal connectivity and improved memory performance, findings published in Nature Aging.

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