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Items: 1 to 20 of 259

1.

Social Stress-Related Epigenetic Changes Associated With Increased Heart Rate Variability in Infants.

Aghagoli G, Conradt E, Padbury JF, Sheinkopf SJ, Tokadjian H, Dansereau LM, Tronick EZ, Marsit CJ, Lester BM.

Front Behav Neurosci. 2020 Jan 15;13:294. doi: 10.3389/fnbeh.2019.00294. eCollection 2019.

2.

Selenium-associated DNA methylation modifications in placenta and neurobehavioral development of newborns: An epigenome-wide study of two U.S. birth cohorts.

Tian FY, Everson TM, Lester B, Punshon T, Jackson BP, Hao K, Lesseur C, Chen J, Karagas MR, Marsit CJ.

Environ Int. 2020 Jan 30;137:105508. doi: 10.1016/j.envint.2020.105508. [Epub ahead of print]

3.

Associations of maternal diet and placenta leptin methylation.

Daniels TE, Sadovnikoff AI, Ridout KK, Lesseur C, Marsit CJ, Tyrka AR.

Mol Cell Endocrinol. 2020 Jan 29;505:110739. doi: 10.1016/j.mce.2020.110739. [Epub ahead of print]

PMID:
32004678
4.

Genome-wide characterization of cytosine-specific 5-hydroxymethylation in normal breast tissue.

Wilkins OM, Johnson KC, Houseman EA, King JE, Marsit CJ, Christensen BC.

Epigenetics. 2019 Dec 16:1-21. doi: 10.1080/15592294.2019.1695332. [Epub ahead of print]

PMID:
31842685
5.

Transcriptome-wide analysis of changes in the fetal placenta associated with prenatal arsenic exposure in the New Hampshire Birth Cohort Study.

Winterbottom EF, Ban Y, Sun X, Capobianco AJ, Marsit CJ, Chen X, Wang L, Karagas MR, Robbins DJ.

Environ Health. 2019 Nov 21;18(1):100. doi: 10.1186/s12940-019-0535-x.

6.

Copper associates with differential methylation in placentae from two US birth cohorts.

Kennedy E, Everson TM, Punshon T, Jackson BP, Hao K, Lambertini L, Chen J, Karagas MR, Marsit CJ.

Epigenetics. 2020 Mar;15(3):215-230. doi: 10.1080/15592294.2019.1661211. Epub 2019 Sep 4.

PMID:
31462129
7.

In-depth characterization of the placental imprintome reveals novel differentially methylated regions across birth weight categories.

Deyssenroth MA, Marsit CJ, Chen J, Lambertini L.

Epigenetics. 2020 Jan - Feb;15(1-2):47-60. doi: 10.1080/15592294.2019.1647945. Epub 2019 Aug 12.

PMID:
31403346
8.

Accurate ethnicity prediction from placental DNA methylation data.

Yuan V, Price EM, Del Gobbo G, Mostafavi S, Cox B, Binder AM, Michels KB, Marsit C, Robinson WP.

Epigenetics Chromatin. 2019 Aug 9;12(1):51. doi: 10.1186/s13072-019-0296-3.

9.

Chrysotile fibers in tissue adjacent to laryngeal squamous cell carcinoma in cases with a history of occupational asbestos exposure.

Wronkiewicz SK, Roggli VL, Hinrichs BH, Kendler A, Butler RA, Christensen BC, Marsit CJ, Nelson HH, McClean MD, Kelsey KT, Langevin SM.

Mod Pathol. 2020 Feb;33(2):228-234. doi: 10.1038/s41379-019-0332-7. Epub 2019 Aug 5.

10.

Environmental exposure to polybrominated biphenyl (PBB) associates with an increased rate of biological aging.

Curtis SW, Cobb DO, Kilaru V, Terrell ML, Marder ME, Barr DB, Marsit CJ, Marcus M, Conneely KN, Smith AK.

Aging (Albany NY). 2019 Aug 2;11(15):5498-5517. doi: 10.18632/aging.102134. Epub 2019 Aug 2.

11.

Association between zidovudine-containing antiretroviral therapy exposure in utero and leukocyte telomere length at birth.

Wang Y, Brummel SS, Beilstein-Wedel E, Dagnall CL, Hazra R, Kacanek D, Chadwick EG, Marsit CJ, Chanock SJ, Savage SA, Poirier MC, Machiela MJ, Engels EA; Pediatric HIV/AIDS Cohort Study.

AIDS. 2019 Nov 1;33(13):2091-2096. doi: 10.1097/QAD.0000000000002317.

PMID:
31335808
12.

Placental epigenetic clocks: estimating gestational age using placental DNA methylation levels.

Lee Y, Choufani S, Weksberg R, Wilson SL, Yuan V, Burt A, Marsit C, Lu AT, Ritz B, Bohlin J, Gjessing HK, Harris JR, Magnus P, Binder AM, Robinson WP, Jugessur A, Horvath S.

Aging (Albany NY). 2019 Jun 24;11(12):4238-4253. doi: 10.18632/aging.102049.

13.

Exposure to polybrominated biphenyl and stochastic epigenetic mutations: application of a novel epigenetic approach to environmental exposure in the Michigan polybrominated biphenyl registry.

Curtis SW, Cobb DO, Kilaru V, Terrell ML, Marder ME, Barr DB, Marsit CJ, Marcus M, Conneely KN, Smith AK.

Epigenetics. 2019 Oct;14(10):1003-1018. doi: 10.1080/15592294.2019.1629232. Epub 2019 Jun 14.

PMID:
31200609
14.

Epigenetically regulated imprinted gene expression associated with IVF and infertility: possible influence of prenatal stress and depression.

Litzky JF, Marsit CJ.

J Assist Reprod Genet. 2019 Jul;36(7):1299-1313. doi: 10.1007/s10815-019-01483-0. Epub 2019 May 24. Review.

PMID:
31127477
15.

Placental Expression of Imprinted Genes, Overall and in Sex-Specific Patterns, Associated with Placental Cadmium Concentrations and Birth Size.

Everson TM, Marable C, Deyssenroth MA, Punshon T, Jackson BP, Lambertini L, Karagas MR, Chen J, Marsit CJ.

Environ Health Perspect. 2019 May;127(5):57005. doi: 10.1289/EHP4264.

16.

DNA methylation of NR3c1 in infancy: Associations between maternal caregiving and infant sex.

Conradt E, Ostlund B, Guerin D, Armstrong DA, Marsit CJ, Tronick E, LaGasse L, Lester BM.

Infant Ment Health J. 2019 Jul;40(4):513-522. doi: 10.1002/imhj.21789. Epub 2019 May 8.

17.

A Neurodevelopmental Model of Combined Pyrethroid and Chronic Stress Exposure.

Vester AI, Chen M, Marsit CJ, Caudle WM.

Toxics. 2019 May 2;7(2). pii: E24. doi: 10.3390/toxics7020024.

18.

Maternal and fetal genetic effects on birth weight and their relevance to cardio-metabolic risk factors.

Warrington NM, Beaumont RN, Horikoshi M, Day FR, Helgeland Ø, Laurin C, Bacelis J, Peng S, Hao K, Feenstra B, Wood AR, Mahajan A, Tyrrell J, Robertson NR, Rayner NW, Qiao Z, Moen GH, Vaudel M, Marsit CJ, Chen J, Nodzenski M, Schnurr TM, Zafarmand MH, Bradfield JP, Grarup N, Kooijman MN, Li-Gao R, Geller F, Ahluwalia TS, Paternoster L, Rueedi R, Huikari V, Hottenga JJ, Lyytikäinen LP, Cavadino A, Metrustry S, Cousminer DL, Wu Y, Thiering E, Wang CA, Have CT, Vilor-Tejedor N, Joshi PK, Painter JN, Ntalla I, Myhre R, Pitkänen N, van Leeuwen EM, Joro R, Lagou V, Richmond RC, Espinosa A, Barton SJ, Inskip HM, Holloway JW, Santa-Marina L, Estivill X, Ang W, Marsh JA, Reichetzeder C, Marullo L, Hocher B, Lunetta KL, Murabito JM, Relton CL, Kogevinas M, Chatzi L, Allard C, Bouchard L, Hivert MF, Zhang G, Muglia LJ, Heikkinen J; EGG Consortium, Morgen CS, van Kampen AHC, van Schaik BDC, Mentch FD, Langenberg C, Luan J, Scott RA, Zhao JH, Hemani G, Ring SM, Bennett AJ, Gaulton KJ, Fernandez-Tajes J, van Zuydam NR, Medina-Gomez C, de Haan HG, Rosendaal FR, Kutalik Z, Marques-Vidal P, Das S, Willemsen G, Mbarek H, Müller-Nurasyid M, Standl M, Appel EVR, Fonvig CE, Trier C, van Beijsterveldt CEM, Murcia M, Bustamante M, Bonas-Guarch S, Hougaard DM, Mercader JM, Linneberg A, Schraut KE, Lind PA, Medland SE, Shields BM, Knight BA, Chai JF, Panoutsopoulou K, Bartels M, Sánchez F, Stokholm J, Torrents D, Vinding RK, Willems SM, Atalay M, Chawes BL, Kovacs P, Prokopenko I, Tuke MA, Yaghootkar H, Ruth KS, Jones SE, Loh PR, Murray A, Weedon MN, Tönjes A, Stumvoll M, Michaelsen KF, Eloranta AM, Lakka TA, van Duijn CM, Kiess W, Körner A, Niinikoski H, Pahkala K, Raitakari OT, Jacobsson B, Zeggini E, Dedoussis GV, Teo YY, Saw SM, Montgomery GW, Campbell H, Wilson JF, Vrijkotte TGM, Vrijheid M, de Geus EJCN, Hayes MG, Kadarmideen HN, Holm JC, Beilin LJ, Pennell CE, Heinrich J, Adair LS, Borja JB, Mohlke KL, Eriksson JG, Widén EE, Hattersley AT, Spector TD, Kähönen M, Viikari JS, Lehtimäki T, Boomsma DI, Sebert S, Vollenweider P, Sørensen TIA, Bisgaard H, Bønnelykke K, Murray JC, Melbye M, Nohr EA, Mook-Kanamori DO, Rivadeneira F, Hofman A, Felix JF, Jaddoe VWV, Hansen T, Pisinger C, Vaag AA, Pedersen O, Uitterlinden AG, Järvelin MR, Power C, Hyppönen E, Scholtens DM, Lowe WL Jr, Davey Smith G, Timpson NJ, Morris AP, Wareham NJ, Hakonarson H, Grant SFA, Frayling TM, Lawlor DA, Njølstad PR, Johansson S, Ong KK, McCarthy MI, Perry JRB, Evans DM, Freathy RM.

Nat Genet. 2019 May;51(5):804-814. doi: 10.1038/s41588-019-0403-1. Epub 2019 May 1.

19.

Microorganisms in the Placenta: Links to Early-Life Inflammation and Neurodevelopment in Children.

Tomlinson MS, Lu K, Stewart JR, Marsit CJ, O'Shea TM, Fry RC.

Clin Microbiol Rev. 2019 May 1;32(3). pii: e00103-18. doi: 10.1128/CMR.00103-18. Print 2019 Jun 19. Review.

PMID:
31043389
20.

Maternal circadian disruption is associated with variation in placental DNA methylation.

Clarkson-Townsend DA, Everson TM, Deyssenroth MA, Burt AA, Hermetz KE, Hao K, Chen J, Marsit CJ.

PLoS One. 2019 Apr 26;14(4):e0215745. doi: 10.1371/journal.pone.0215745. eCollection 2019.

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