TY - JOUR
T1 - Global DNA hypomethylation is associated with in utero exposure to cotinine and perfluorinated alkyl compounds
AU - Guerrero-Preston, Rafael
AU - Goldman, Lynn R.
AU - Brebi-Mieville, Priscilla
AU - Ili-Gangas, Carmen
AU - LeBron, Cynthia
AU - Hernández-Arroyo, Mireya
AU - Witter, Frank R.
AU - Apelberg, Benjamin
AU - Roystacher, Marina
AU - Jaffe, Andrew
AU - Halden, Rolf U.
AU - Sidransky, David
N1 - Funding Information:
This research was supported in part by the NCI 5U01CA13-8. It also received support from the Maryland Cigarette Restitution Program Research Grant given to the Johns Hopkins Medical Institutions and by funding from the NIOSH Education and Research Center for Occupational Safety and Health at the Johns Hopkins Bloomberg School of Public Health (#T42CCT310419). R.U.H. was supported in part by grant 1R01ES015445 of the National Institute of Environmental Health Sciences (NIEHS).
PY - 2010/8
Y1 - 2010/8
N2 - Environmental exposures in utero may alter the epigenome, thus impacting chromosomal stability and gene expression. We hypothesized that in utero exposures to maternal smoking and perfluoroalkyl compounds (PFCs) are associated with global DNA hypomethylation in umbilical cord serum. Our objective was to determine if global DNA methylation could be used as a biomarker of in utero exposures to maternal smoking and PFCs. Using an ELISA-based method, global DNA methylation was quantified in umbilical cord serum from 30 newborns with high (>10 ng/ml, mean 123.8 ng/ml), low (range 1-10 ng/ml, mean 1.6 ng/ml) and very low (<1 ng/ml, mean 0.06 ng/ml) cord serum cotinine levels. Y chromosome analysis was performed to rule out maternal DNA cross-contamination. Cord serum global DNA methylation showed an inverse dose response to serum cotinine levels (p < 0.001). Global DNA methylation levels in cord blood were the lowest among newborns with smoking mothers (mean = 15.04%; 95% CI, 8.4, 21.7) when compared to babies of mothers who were second-hand smokers (21.1%; 95% CI, 16.6, 25.5) and non-smokers (mean = 29.2%; 95% CI, 20.1, 38.1). Global DNA methylation was inversely correlated with serum PFOA (r = -0.35, p = 0.06) but not PFOS levels. Serum Y chromosome analyses did not detect maternal DNA cross-contamination. This study supports the use of global DNA methylation status as a biomarker of in utero exposure to cigarette smoke and PFCs.
AB - Environmental exposures in utero may alter the epigenome, thus impacting chromosomal stability and gene expression. We hypothesized that in utero exposures to maternal smoking and perfluoroalkyl compounds (PFCs) are associated with global DNA hypomethylation in umbilical cord serum. Our objective was to determine if global DNA methylation could be used as a biomarker of in utero exposures to maternal smoking and PFCs. Using an ELISA-based method, global DNA methylation was quantified in umbilical cord serum from 30 newborns with high (>10 ng/ml, mean 123.8 ng/ml), low (range 1-10 ng/ml, mean 1.6 ng/ml) and very low (<1 ng/ml, mean 0.06 ng/ml) cord serum cotinine levels. Y chromosome analysis was performed to rule out maternal DNA cross-contamination. Cord serum global DNA methylation showed an inverse dose response to serum cotinine levels (p < 0.001). Global DNA methylation levels in cord blood were the lowest among newborns with smoking mothers (mean = 15.04%; 95% CI, 8.4, 21.7) when compared to babies of mothers who were second-hand smokers (21.1%; 95% CI, 16.6, 25.5) and non-smokers (mean = 29.2%; 95% CI, 20.1, 38.1). Global DNA methylation was inversely correlated with serum PFOA (r = -0.35, p = 0.06) but not PFOS levels. Serum Y chromosome analyses did not detect maternal DNA cross-contamination. This study supports the use of global DNA methylation status as a biomarker of in utero exposure to cigarette smoke and PFCs.
KW - Cigarette smoke
KW - Epigenomics
KW - Global DNA methylation
KW - Hypomethylation
KW - Perfluorooctane sulfonate
KW - Perfluorooctanoate
KW - Umbilical cord serum
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U2 - 10.4161/epi.5.6.12378
DO - 10.4161/epi.5.6.12378
M3 - Article
C2 - 20523118
AN - SCOPUS:77957373808
SN - 1559-2294
VL - 5
SP - 539
EP - 546
JO - Epigenetics
JF - Epigenetics
IS - 6
ER -