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1.
Lange de Luna, J. et al.: Epigenome-wide association study of dietary fatty acid intake. Clin. Epigenet. 16:29 (2024)
2.
Costeira, R.* et al.: Metabolomic biomarkers of habitual B vitamin intakes unveil novel differentially methylated positions in the human epigenome. Clin. Epigenet. 15:166 (2023)
3.
Feil, D.* et al.: DNA methylation as a potential mediator of the association between indoor air pollution and neurodevelopmental delay in a South African birth cohort. Clin. Epigenet. 15:31 (2023)
4.
Giel, K.E.* et al.: OXTR DNA methylation differentiates men on the obesity spectrum with and without binge eating disorder. Clin. Epigenet. 14:108 (2022)
5.
Kilanowski, A. et al.: DNA methylation and aeroallergen sensitization: The chicken or the egg? Clin. Epigenet. 14:114 (2022)
6.
Sammallahti, S.* et al.: Longitudinal associations of DNA methylation and sleep in children: A meta-analysis. Clin. Epigenet. 14:83 (2022)
7.
Sharma, R. et al.: Maternal-fetal stress and DNA methylation signatures in neonatal saliva: An epigenome-wide association study. Clin. Epigenet. 14:87 (2022)
8.
Chen, Y.* et al.: Impact of BMI and waist circumference on epigenome-wide DNA methylation and identification of epigenetic biomarkers in blood: An EWAS in multi-ethnic Asian individuals. Clin. Epigenet. 13:195 (2021)
9.
Gomez Alonso, M.D.C. et al.: DNA methylation and lipid metabolism: An EWAS of 226 metabolic measures. Clin. Epigenet. 13:7 (2021)
10.
Maas, S.C.E.* et al.: Validating biomarkers and models for epigenetic inference of alcohol consumption from blood. Clin. Epigenet. 13:198 (2021)
11.
Marttila, S.* et al.: Methylation status of nc886 epiallele reflects periconceptional conditions and is associated with glucose metabolism through nc886 RNAs. Clin. Epigenet. 13:143 (2021)
12.
Matias-Garcia, P.R. et al.: DNAm-based signatures of accelerated aging and mortality in blood are associated with low renal function. Clin. Epigenet. 13:121 (2021)
13.
Yao, C.* et al.: Epigenome-wide association study of whole blood gene expression in Framingham Heart Study participants provides molecular insight into the potential role of CHRNA5 in cigarette smoking-related lung diseases. Clin. Epigenet. 13:60 (2021)
14.
Yaskolka Meir, A.* et al.: Lifestyle weight-loss intervention may attenuate methylation aging: The CENTRAL MRI randomized controlled trial. Clin. Epigenet. 13:48 (2021)
15.
Maas, S.C.E.* et al.: Smoking-related changes in DNA methylation and gene expression are associated with cardio-metabolic traits. Clin. Epigenet. 12:157 (2020)
16.
Wiechmann, T.* et al.: Identification of dynamic glucocorticoid-induced methylation changes at the FKBP5 locus. Clin. Epigenet. 11:83 (2019)
17.
Beck, A.* et al.: Overexpression of UHRF1 promotes silencing of tumor suppressor genes and predicts outcome in hepatoblastoma. Clin. Epigenet. 10:27 (2018)
18.
Ward-Caviness, C.K. et al.: Analysis of repeated leukocyte DNA methylation assessments reveals persistent epigenetic alterations after an incident myocardial infarction. Clin. Epigenet. 10:161 (2018)
19.
Al Muftah, W.A.* et al.: Epigenetic associations of type 2 diabetes and BMI in an Arab population. Clin. Epigenet. 8:13 (2016)
20.
Zaghlool, S.B.* et al.: Mendelian inheritance of trimodal CpG methylation sites suggests distal cis-acting genetic effects. Clin. Epigenet. 8:124 (2016)