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Mitochondrial DNA methylation in metabolic associated fatty liver disease
Archibold Mposhi
, Fabian Cortés-Mancera
, Janette Heegsma
, Vincent E. de Meijer
, Bart van de Sluis
, Svenja Sydor
, Lars P. Bechmann
, Claudia Theys
, Peter de Rijk
, Tim De Pooter
, Wim Vanden Berghe
, İkbal Agah İnce
, Klaas Nico Faber
, Marianne G. Rots
*
*
Corresponding author for this work
Research output
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Contribution to journal
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Article
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Research
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peer-review
19
Citations (Scopus)
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Keyphrases
Acid Treatment
16%
CpG Methylation
16%
Cytosine
33%
Cytosine Methylation
16%
Differential Methylation
16%
DNA Hypermethylation
16%
DNA Methyltransferase 1 (DNMT1)
16%
Dysfunctional Mitochondria
16%
Fatty Acids
16%
Gene Body
16%
Gene Expression
16%
Gene Expression Activity
16%
Hepatic Lipid Accumulation
33%
HepG2
33%
HepG2 Cells
33%
High Cholesterol
16%
Human Patients
16%
Lipid Accumulation
33%
Lipid Metabolic
16%
Lipid Metabolism
16%
Liver Disease Progression
16%
Metabolic Activity
16%
Metabolic Dysfunction-associated Fatty Liver Disease (MAFLD)
100%
Metabolic Dysfunction-associated Steatohepatitis
16%
Methylation
16%
Mitochondrial DNA
33%
Mitochondrial DNA Content
16%
Mitochondrial DNA Methylation
100%
Mitochondrial Dysfunction
33%
Mitochondrial Gene Expression
16%
Mitochondrial Genes
16%
Mitochondrial Targeting
16%
Molecular Parameters
16%
Nanopore Sequencing
16%
Patient Samples
16%
Pyrosequencing
33%
Quantitative Methylation-specific PCR (Q-MSP)
16%
Simple Steatosis
16%
Viral
16%
Biochemistry, Genetics and Molecular Biology
Cytosine
33%
DNA Content
11%
DNA Methylation
100%
DNA Methyltransferase
11%
Fatty Acid
11%
Gene Expression
22%
Hypercholesterolemia
11%
Lipid Liver Level
22%
Lipid Metabolism
11%
Lipid Storage
44%
Methylation
55%
Mitochondrial Disorder
22%
Mitochondrial DNA
100%
Mitochondrial Gene
22%
Mitochondrion
22%
Pyrosequencing
11%