An epigenome-wide association study of Alzheimer's disease blood highlights robust DNA hypermethylation in the HOXB6 gene is a research paper published in Neurobiology of Aging (2020). On theSindex it has a DataRank of 0.688. It has been cited 97 times.
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Base Score Contribution
0.688
From this paper's citation signal
Citation Network Contribution
0
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Learn more about DataRank methodology →Medical Research Council
Grant: HDR-9003
Medical Research Council
Grant: HDR-9004
Alzheimer's Society
Grant: 14
Medical Research Council
Grant: MR/N027973/1
JPND: Targeting epigenetic dysregulation in the brainstem in Alzheimer's Disease (EPI-AD)
Medical Research Council
Grant: 1790286
Medical Research Council
Grant: MC_PC_17214
Medical Research Council
Grant: HDR-2007
NIA NIH HHS
Grant: R01 AG036039
Medical Research Council
Grant: HDR-9002
National Institutes of Health
Grant: 5R01AG036039-02
A multi-faceted approach to epigenomic profiling in Alzheimer's disorder
European Commission
Grant: 643417
ERA-NET for establishing synergies between the Joint Programming on Neurodegenerative Diseases Research and Horizon 2020
Wellcome Trust
Grant: unidentified
unidentified
British Heart Foundation
EU Joint Programme – Neurodegenerative Disease Research
National Institute for Health Research (NIHR)
Wellcome Trust
Alzheimer’s Research UK
Alzheimer's Society
Chief Scientist Office
National Institutes of Health
Medical Research Council
Fields of Study
MeSH Terms
Keywords
Sustainable Development Goals
Additional file 1 of Epigenome-wide association study of Alzheimer’s disease replicates 22 differentially methylated positions and 30 differentially methylated regions
Additional file 1 of Epigenome-wide association study of Alzheimer’s disease replicates 22 differentially methylated positions and 30 differentially methylated regions
Additional file 1 of Association of peripheral blood DNA methylation level with Alzheimer’s disease progression
Additional file 1 of Association of peripheral blood DNA methylation level with Alzheimer’s disease progression
Additional file 1 of Blood-based epigenome-wide analyses of cognitive abilities
Additional file 1 of Blood-based epigenome-wide analyses of cognitive abilities
Additional file 2 of Blood-based epigenome-wide analyses of cognitive abilities
Additional file 2 of Blood-based epigenome-wide analyses of cognitive abilities
Additional file 3 of Blood-based epigenome-wide analyses of cognitive abilities
Additional file 3 of Blood-based epigenome-wide analyses of cognitive abilities
Additional file 4 of Blood-based epigenome-wide analyses of cognitive abilities
Additional file 4 of Blood-based epigenome-wide analyses of cognitive abilities
Additional file 1 of Distinct sex-specific DNA methylation differences in Alzheimer’s disease
Additional file 1 of Distinct sex-specific DNA methylation differences in Alzheimer’s disease
Additional file 1 of Systemic interindividual epigenetic variation in humans is associated with transposable elements and under strong genetic control
Additional file 1 of Systemic interindividual epigenetic variation in humans is associated with transposable elements and under strong genetic control
Additional file 2 of Distinct sex-specific DNA methylation differences in Alzheimer’s disease
Additional file 2 of Distinct sex-specific DNA methylation differences in Alzheimer’s disease
Additional file 2 of Systemic interindividual epigenetic variation in humans is associated with transposable elements and under strong genetic control
Additional file 2 of Systemic interindividual epigenetic variation in humans is associated with transposable elements and under strong genetic control