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Journal Article

Plasma homocysteine level and trajectories in association with longitudinal increase in plasma neurofilament light among urban adults

May A. Beydoun; Nicole Noren Hooten; Michael F. Georgescu; Hind A. Beydoun; Marie T. Fanelli-Kuczmarski; Jordan Weiss; Michele K. Evans; Alan B. Zonderman
GeroScience · Vol. 47, Issue 3 · pp. 4663-4678 · 2025

Abstract

We tested whether homocysteine (Hcy) was linked to longitudinal change in plasma neurofilament light chain (NfL) overall and differentially across sex and race in a sample of middle-aged urban adults. We used data from the Healthy Aging in Neighborhoods of Diversity across the Life Span (HANDLS) study [ n = 690, Age at visit 1 (v 1 :2004–2009): 30-66y, 42.1% male, 55.4% African American] to evaluate relationships between NfL levels and both visit 1 Hcy (Hcy v1 ) and time-dependent Hcy concentrations (Hcy td ). Specifically, we examined the relationship between these measures and visit 1 NfL (NfL v1 ) as well as annualized change in NfL (δNfL) over the study period of ~ 8y [2004–2009 (v 1 ), 2009–2013 (v 2 ) and/or 2013–2017 (v 3 )] using mixed effects linear regression models. Hcy v1 was positively associated with NfL v1 , but not with δNfL. However, when Hcy td was considered along with time-dependent covariates on multiple-imputed data, both NfL v1 and δNfL were associated with Hcy td , with some significant sex difference in the longitudinal association, whereby this relationship was stronger among males. The Hcy exposure obtained from group-based trajectory models, indicated that individuals belonging to the "High increasing" group were consistently associated with both higher NfL v1 and faster increase in NfL (overall, fully adjusted, High vs . Low: γ 0gbtm = + 0.226 ± 0.058, P < 0.001; γ 1gbtm = + 0.022 ± 0.007, P < 0.010). Dynamic Hcy exposures (Hcy td and Hcy gbtm ) were associated with faster rate of increase in NfL over time, reflecting potentially faster rate of axonal degeneration. Further studies are needed in comparable populations to replicate our findings.

Bibliographic Information

JournalGeroScience
PublisherSpringer
Publication Date2025-02-19
Publication Year2025
Volume47
Issue3
Pages4663-4678
Document TypeJournal Article
eISSN2509-2723
DOI10.1007/s11357-025-01567-z

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NARA Access Coverage1978-01-01~Current
Journal Homepagehttps://www.springer.com/journal/11357
Publisher PageOpen Publisher Page
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