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Serum BDNF levels show a significant inverse association with age in adults over 60Serum BDNF Levels Decline in Older Adults

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Key Takeaway
Note that serum BDNF levels show a significant inverse association with age specifically in adults aged 60 and older.

This meta-analysis evaluates the association between age and serum BDNF levels across various human populations. The analysis synthesized data to determine how BDNF levels fluctuate across the lifespan, specifically focusing on the transition into older adulthood.

The meta-analysis found a significant inverse association with age for serum BDNF in older adults (>=60 years) with a Fisher's z of -0.139 (95% CI -0.166 to -0.111; p < 0.0001). In contrast, the association was not significant in younger adults (<60 years) (Fisher's z = -0.098; 95% CI -0.344 to 0.148; p = 0.435). Across all ages, a significant inverse association was observed (Fisher's z = -0.127; 95% CI -0.245 to -0.009; p = 0.035).

The authors noted substantial heterogeneity across all ages (I^2 = 64.4%) as a primary limitation. These findings provide a reference point for future research into the role of BDNF in cognitive aging and neurodegenerative risk, though the results indicate that the decline is not a feature of early or mid-adulthood.

Researchers analyzed data regarding serum BDNF levels, a protein often studied in relation to brain health. The study looked at people across different age groups to see how these levels changed as people got older. The results showed a clear link between aging and lower BDNF levels in adults aged 60 and older.

In contrast, the study did not find a significant change in BDNF levels for adults under the age of 60. When looking at the entire population across all ages, the data showed a consistent downward trend in BDNF as age increased. This suggests that the decline becomes more noticeable in later life.

Because this was a meta-analysis of existing data, there was a lot of variation in the results across different groups. While these findings provide a useful baseline for understanding how the body changes over time, they are currently used for research purposes. These results do not provide a specific medical treatment or a way to change these levels.

What this means for you:
Serum BDNF levels show a significant decline in adults aged 60 and older, while levels in younger adults remain stable.

Common questions

What is BDNF and how does it change with age?

BDNF is a protein that researchers study in relation to brain health. This study found that serum BDNF levels have a negative association with age. Specifically, levels were found to decrease in adults aged 60 and older, while no significant change was found in adults under the age of 60.

Is the decline in BDNF significant for everyone?

The study found that the decline in serum BDNF becomes pronounced in older age. While the data showed an inverse association with age across all groups, the change was not statistically significant for adults under 60 years old. This means the decline is specifically noted in the older population.

What does this mean for brain health research?

These findings provide a reference point for future studies. By establishing that BDNF levels drop in older adults, researchers can better study how this protein relates to cognitive aging and the risks of neurodegenerative conditions in the future.

Study Details

Study typeMeta analysis
EvidenceLevel 1
PublishedSep 2026
View Original Abstract ↓
Background: Bone marrow megakaryocytes, the primary source of brain-derived neurotrophic factor (BDNF) in the blood, secrete BDNF-packed platelets into the bloodstream. Reduced BDNF serum levels, a proxy for circulating blood-BDNF, have been linked to age-related neurological disorders, including dementia. Whether circulating BDNF levels decline with healthy aging or only in pathological contexts is unclear. Methods: We searched PubMed, Embase, Web of Science, and ScienceDirect up to September 2025 for human studies reporting associations between age and serum BDNF in non-clinical populations. Fifteen studies were included. Effect sizes were extracted or converted as Pearson's r and synthesized using a three-level random-effects meta-analysis, with subgroup analyses by age, heterogeneity, and quality. Findings: Serum BDNF showed an age-specific decline. Among older adults (>=60 years), age was negatively associated with serum BDNF (pooled Fisher's z=-0.139, 95% CI -0.166 to -0.111; p < 0.0001; I^2=0.16%). In younger adults (<60 years), the association was not significant (pooled z=-0.098, 95% CI -0.344 to 0.148; p=0.435; I^2 = 87.2%). Across all ages, serum BDNF was inversely associated with age (pooled z=-0.127, 95% CI -0.245 to -0.009; p = 0.035), though heterogeneity was substantial (I^2 = 64.4%; Q (16) = 87.25, p < 0.0001). Interpretation: Though not a feature of early or mid-adulthood, declining serum BDNF becomes pronounced in older age. This age-specific trajectory provides a reference point for future studies examining BDNF's relation to cognitive aging and neurodegenerative risk.
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