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Validation of differential DNA methylation in newborns exposed to tobacco smoke during gestation using bisulfite pyrosequencing.

Publication ,  Journal Article
Crute, C; Liao, Y; Son, E; Grenier, C; Huang, Z; Hoyo, C; Murphy, SK
Published in: MicroPubl Biol
2022

Maternal exposure to tobacco smoke during pregnancy has been associated with many negative child health outcomes. Tobacco smoke exposure alters DNA methylation in the developing embryo/fetus and may be a mechanism that increases risk of later life disease. Previous studies have identified CpG sites in umbilical cord blood that are associated with in utero tobacco smoke exposure. We sought to validate findings for CpG sites within several of the top hit genes, AHRR , CYP1A1 , and GFI1, using targeted quantitative bisulfite pyrosequencing. Comparing results from cord blood specimens of tobacco smoke-exposed to unexposed newborns, we confirmed significance at all previously identified CpG sites tested, including one in AHRR (p=0.007), three in CYP1A1 (p<0.0001), and one in GFI1 (p=0.008). These assays also captured novel differentially methylated CpGs located near the identified sites that were not included in the prior array-based studies (p value range, 0.02 to <0.0001). These results validate the prior findings and provide a simplified and more economical approach to analysis of CpG sites for expanded use as biomarkers of in utero tobacco smoke exposure.

Duke Scholars

Published In

MicroPubl Biol

DOI

EISSN

2578-9430

Publication Date

2022

Volume

2022

Location

United States
 

Citation

APA
Chicago
ICMJE
MLA
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Crute, C., Liao, Y., Son, E., Grenier, C., Huang, Z., Hoyo, C., & Murphy, S. K. (2022). Validation of differential DNA methylation in newborns exposed to tobacco smoke during gestation using bisulfite pyrosequencing. MicroPubl Biol, 2022. https://doi.org/10.17912/micropub.biology.000509
Crute, Christine, Yihan Liao, Esther Son, Carole Grenier, Zhiqing Huang, Cathrine Hoyo, and Susan K. Murphy. “Validation of differential DNA methylation in newborns exposed to tobacco smoke during gestation using bisulfite pyrosequencing.MicroPubl Biol 2022 (2022). https://doi.org/10.17912/micropub.biology.000509.
Crute C, Liao Y, Son E, Grenier C, Huang Z, Hoyo C, et al. Validation of differential DNA methylation in newborns exposed to tobacco smoke during gestation using bisulfite pyrosequencing. MicroPubl Biol. 2022;2022.
Crute, Christine, et al. “Validation of differential DNA methylation in newborns exposed to tobacco smoke during gestation using bisulfite pyrosequencing.MicroPubl Biol, vol. 2022, 2022. Pubmed, doi:10.17912/micropub.biology.000509.
Crute C, Liao Y, Son E, Grenier C, Huang Z, Hoyo C, Murphy SK. Validation of differential DNA methylation in newborns exposed to tobacco smoke during gestation using bisulfite pyrosequencing. MicroPubl Biol. 2022;2022.

Published In

MicroPubl Biol

DOI

EISSN

2578-9430

Publication Date

2022

Volume

2022

Location

United States