Elevated Sulfides are associated with Cognitive Dysfunction and Brain Atrophy in Alzheimer’s Disease and Related Dementias

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README.md

ADRDSulfides

Neuroimaging dataset for "Elevated Sulfides are associated with Cognitive Dysfunction and Brain Atrophy in Alzheimer’s Disease and Related Dementias". Contains T1, FLAIR, and DTI images for each subject in BIDS format.

datacite.yml
Title Elevated Sulfides are associated with Cognitive Dysfunction and Brain Atrophy in Alzheimer's Disease and Related Dementias
Authors Reekes,Tyler H.;LSUHS;0000-0003-4131-1094
Ledbetter,Christina R.;LSUHS;0000-0001-8581-6065
Pardue,Sibile;LSUHS;0000-0002-5133-7901
Alexander,J. Steven;LSUHS;0000-0001-6975-3711
Stokes,Karen Y.;LSUHS
Bhuiyan,Mohammad Alfrad Nobel;LSUHS;0000-0002-6011-2624
Patterson,James C.;LSUHS;0000-0001-5709-2557
Lofton,Katelyn T.;LSUHS;0000-0001-9620-1162
Kevil,Christopher G.;LSUHS;0000-0003-0863-7260
Disbrow,Elizabeth A.;LSUHS;0000-0002-2133-3221
Description Emerging evidence indicates that vascular stress is an important contributor to the pathophysiology of Alzheimer's disease and related dementias (ADRD). Hydrogen sulfide (H2S) and its metabolites (acid-labile (e.g., iron-sulfur clusters) and bound (e.g., per-, poly-sulfides) have been shown to regulate both vascular and neuronal homeostasis. We recently reported that elevated plasma sulfides were associated with cognitive dysfunction and microvascular disease in ADRD; here we extend our previous work to show associations between elevated sulfides and magnetic resonance-based metrics of brain atrophy and white matter integrity. Elevated bound sulfides were associated with decreased measures of gray matter volume, while increased acid labile sulfides were associated with measures of decreased white matter integrity and increased ventricular volume. These findings are consistent with a ‘toxic’ sulfide model of ADRD. Our results are consistent with a compensatory sulfide response to oxidative stress.
License Creative Commons CC0 1.0 Public Domain Dedication (https://creativecommons.org/publicdomain/zero/1.0/)
References Citation1 [doi::tba] (IsDescribedBy)
Funding NIH, 3P2012130701A1S1
NIH, HL149264-01A1
Keywords Alzheimer's Disease
hydrogen sulfide
dementia
cortical thickness
white matter integrity
neuroimaging
Resource Type Dataset