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Fibroblasts as an in vitro model of circadian genetic and genomic studies
Marcelo Francia
*
, Merel Bot
, Toni Boltz
, Juan F. de la Hoz
,
Marco Boks
, René S. Kahn
, Roel A. Ophoff
*
Corresponding author for this work
University of California at Los Angeles
Utrecht University
Icahn School of Medicine at Mount Sinai
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peer-review
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Keyphrases
Genetic Architecture
100%
Genetic Studies
100%
Fibroblasts
100%
In Vitro Model
100%
Genomic Studies
100%
Circadian Rhythm
66%
Circadian Pattern
66%
ATAC-seq
66%
Biological Pathways
33%
Healthy Individuals
33%
Cell Culture
33%
Disease Risk
33%
Glucocorticoid Receptor
33%
Expression Pattern
33%
Gene number
33%
Receptor Targets
33%
Primary Cells
33%
Depressive Episode
33%
Genomic Features
33%
Open Chromatin
33%
Basic Helix-loop-helix (bHLH)
33%
Manic Episode
33%
RNA Sequencing (RNA-seq)
33%
Circadian System
33%
Transcription Factor Family
33%
PER3
33%
Heritable Disorders
33%
ARNTL
33%
Linkage Disequilibrium Score Regression
33%
Cryptochrome
33%
RNA-seq Data
33%
Transcriptomic Data
33%
Other Psychiatric Disorders
33%
Circadian Genes
33%
Circadian Modelling
33%
Helix-loop-helix Motifs
33%
NR1D2
33%
Temporal Genomics
33%
Biochemistry, Genetics and Molecular Biology
Fibroblast
100%
Genetic Architecture
100%
RNA Sequencing
66%
Circadian Rhythm
66%
ATAC-Seq
66%
Clinical Study
33%
Gene Linkage Disequilibrium
33%
Cell Culture
33%
Glucocorticoid Receptor
33%
Transcription Factor
33%
Basic Helix-Loop-Helix
33%
Primary Cell
33%
PER3
33%
ARNTL
33%
Chromatin
33%
Transcriptomics
33%
Biological Pathway
33%
Heritable Disorder
33%