123
Views
0
CrossRef citations to date
0
Altmetric
Research Article

Physical Activity and Epigenetic Biomarkers in Maternal Blood During Pregnancy

, , , , , , , & show all
Pages 1383-1395 | Received 18 Dec 2017, Accepted 20 Jun 2018, Published online: 16 Oct 2018

References

  • US Department of Health and Human Services . 2008 Physical Activity Guidelines for Americans ( 2008 ). www.health.gov/paguidelines .
  • Aune D , SenA , HenriksenT , SaugstadOD , TonstadS . Physical activity and the risk of gestational diabetes mellitus: a systematic review and dose–response meta-analysis of epidemiological studies . Eur. J. Epidemiol.31 ( 10 ), 967 – 997 ( 2016 ).
  • Aune D , SaugstadOD , HenriksenT , TonstadS . Physical activity and the risk of preeclampsia: a systematic review and meta-analysis . Epidemiology25 ( 3 ), 331 – 343 ( 2014 ).
  • Wiebe HW , BouleNG , ChariR , DavenportMH . The effect of supervised prenatal exercise on fetal growth: a meta-analysis . Obstet. Gynecol.125 ( 5 ), 1185 – 1194 ( 2015 ).
  • Badon SE , WanderPL , QiuC , MillerRS , WilliamsMA , EnquobahrieDA . Maternal leisure time physical activity and infant birth size . Epidemiology27 ( 1 ), 74 – 81 ( 2016 ).
  • Hamer M , StamatakisE . Physical activity and risk of cardiovascular disease events: inflammatory and metabolic mechanisms . Med. Sci. Sports Exerc.41 ( 6 ), 1206 – 1211 ( 2009 ).
  • Genest DS , FalcaoS , GutkowskaJ , LavoieJL . Impact of exercise training on preeclampsia: potential preventive mechanisms . Hypertension60 ( 5 ), 1104 – 1109 ( 2012 ).
  • Retnakaran R , QiY , SermerM , ConnellyPW , ZinmanB , HanleyAJ . Pre-gravid physical activity and reduced risk of glucose intolerance in pregnancy: the role of insulin sensitivity . Clin. Endocrinol.70 ( 4 ), 615 – 622 ( 2009 ).
  • Russell AP , LamonS . Exercise, skeletal muscle and circulating microRNAs . Prog. Mol. Biol. Transl. Sci.135 , 471 – 496 ( 2015 ).
  • Robinson MM , DasariS , KonopkaARet al. Enhanced protein translation underlies improved metabolic and physical adaptations to different exercise training modes in young and old humans . Cell Metab.25 ( 3 ), 581 – 592 ( 2017 ).
  • Barres R , YanJ , EganBet al. Acute exercise remodels promoter methylation in human skeletal muscle . Cell Metab.15 ( 3 ), 405 – 411 ( 2012 ).
  • Nitert MD , DayehT , VolkovPet al. Impact of an exercise intervention on DNA methylation in skeletal muscle from first-degree relatives of patients with type 2 diabetes . Diabetes61 ( 12 ), 3322 – 3332 ( 2012 ).
  • Nielsen S , AkerstromT , RinnovAet al. The miRNA plasma signature in response to acute aerobic exercise and endurance training . PLoS ONE9 ( 2 ), e87308 ( 2014 ).
  • Baggish AL , HaleA , WeinerRBet al. Dynamic regulation of circulating microRNA during acute exhaustive exercise and sustained aerobic exercise training . J. Physiol.589 ( Pt 16 ), 3983 – 3994 ( 2011 ).
  • McCullough LE , MendezMA , MillerEE , MurthaAP , MurphySK , HoyoC . Associations between prenatal physical activity, birth weight, and DNA methylation at genomically imprinted domains in a multiethnic newborn cohort . Epigenetics10 ( 7 ), 597 – 606 ( 2015 ).
  • Wilhelm-Benartzi CS , HousemanEA , MaccaniMAet al. In utero exposures, infant growth, and DNA methylation of repetitive elements and developmentally related genes in human placenta . Environ. Health Perspect.120 ( 2 ), 296 – 302 ( 2012 ).
  • Fu G , BrkicJ , HayderH , PengC . MicroRNAs in human placental development and pregnancy complications . Int. J. Mol. Sci.14 ( 3 ), 5519 – 5544 ( 2013 ).
  • Wu P , FarrellWE , HaworthKEet al. Maternal genome-wide DNA methylation profiling in gestational diabetes shows distinctive disease-associated changes relative to matched healthy pregnancies . Epigenetics13 ( 2 ), 122 – 128 ( 2018 ).
  • Tsochandaridis M , NascaL , TogaC , Levy-MozziconacciA . Circulating microRNAs as clinical biomarkers in the predictions of pregnancy complications . BioMed. Res. Int. 2015 , 294954 ( 2015 ).
  • Jiang H , WenY , HuL , MiaoT , ZhangM , DongJ . Serum microRNAs as diagnostic biomarkers for macrosomia . Reprod. Sci.22 ( 6 ), 664 – 671 ( 2015 ).
  • Clifton VL . Review: sex and the human placenta: mediating differential strategies of fetal growth and survival . Placenta31 ( Suppl. ), S33 – S39 ( 2010 ).
  • Rudra CB , SorensenTK , LuthyDA , WilliamsMA . A prospective analysis of recreational physical activity and preeclampsia risk . Med. Sci. Sports Exerc.40 ( 9 ), 1581 – 1588 ( 2008 ).
  • Montoye HJ , KemperHC , SarisWH , WashburnRA . Measuring Physical Activity and Energy Expenditure . Human Kinetics , Champaign, IL, USA , 34 – 41 ( 1996 ).
  • Marabita F , de CandiaP , TorriA , TegnerJ , AbrignaniS , RossiRL . Normalization of circulating microRNA expression data obtained by quantitative real-time RT-PCR . Brief. Bioinform.17 ( 2 ), 204 – 212 ( 2016 ).
  • Roberts TC , Coenen-StassAM , WoodMJ . Assessment of RT-qPCR normalization strategies for accurate quantification of extracellular microRNAs in murine serum . PLoS ONE9 ( 2 ), e89237 ( 2014 ).
  • Wardle SL , BaileyME , KilikeviciusAet al. Plasma microRNA levels differ between endurance and strength athletes . PLoS ONE10 ( 4 ), e0122107 ( 2015 ).
  • Gibson CS , MacLennanAH , DekkerGAet al. Genetic polymorphisms and spontaneous preterm birth . Obstet. Gynecol.109 ( 2 Pt 1 ), 384 – 391 ( 2007 ).
  • Shimodaira M , NakayamaT , SatoIet al. Glucocorticoid synthesis-related genes: HSD11B1 and HSD11B2 in hypertensive disorders in pregnancy . Gynecol. Endocrinol.29 ( 7 ), 657 – 661 ( 2013 ).
  • Amaral LM , PaleiAC , SandrimVCet al. Maternal iNOS genetic polymorphisms and hypertensive disorders of pregnancy . J. Hum. Hypertens.26 ( 9 ), 547 – 552 ( 2012 ).
  • Bhatnagar S , BhattacharjeeJ , VaidM , MadanT , TrivediSS , SarmaPU . Inducible nitric oxide synthase (iNOS) gene polymorphism in pre-eclampsia: a pilot study in North India . Aust. NZJ Obstet. Gynaecol.47 ( 6 ), 477 – 482 ( 2007 ).
  • Zhao Y , GongX , ChenLet al. Site-specific methylation of placental HSD11B2 gene promoter is related to intrauterine growth restriction . Eur. J. Hum. Genet.22 ( 6 ), 734 – 740 ( 2014 ).
  • Hromadnikova I , KotlabovaK , HympanovaL , DouchaJ , KroftaL . First trimester screening of circulating C19MC microRNAs can predict subsequent onset of gestational hypertension . PLoS ONE9 ( 12 ), e113735 ( 2014 ).
  • Panni T , MehtaAJ , SchwartzJDet al. Genome-wide analysis of DNA methylation and fine particulate matter air pollution in three study populations: KORA F3, KORA F4, and the normative aging study . Environ. Health Perspect.124 ( 7 ), 983 – 990 ( 2016 ).
  • Chou CH , ChangNW , ShresthaSet al. miRTarBase 2016: updates to the experimentally validated miRNA-target interactions database . Nucleic Acids Res.44 ( D1 ), D239 – D247 ( 2016 ).
  • Murphy MS , CasselmanRC , TayadeC , SmithGN . Differential expression of plasma microRNA in preeclamptic patients at delivery and 1 year postpartum . Am. J. Obstet. Gynecol.213 ( 3 ), 367.e361 – e369 ( 2015 ).
  • Lasabova Z , VazanM , ZibolenovaJ , SvecovaI . Overexpression of miR-21 and miR-122 in preeclamptic placentas . Neuro Endocrinol. Lett.36 ( 7 ), 695 – 699 ( 2015 ).
  • Yang S , LiH , GeQ , GuoL , ChenF . Deregulated microRNA species in the plasma and placenta of patients with preeclampsia . Mol. Med. Rep.12 ( 1 ), 527 – 534 ( 2015 ).
  • Jiang H , WuW , ZhangMet al. Aberrant upregulation of miR-21 in placental tissues of macrosomia . J. Perinatol.34 ( 9 ), 658 – 663 ( 2014 ).
  • Hromadnikova I , KotlabovaK , OndrackovaMet al. Expression profile of C19MC microRNAs in placental tissue in pregnancy-related complications . DNA Cell Biol.34 ( 6 ), 437 – 457 ( 2015 ).
  • Penailillo R , GuajardoA , LlanosM , HirschS , RoncoAM . Folic acid supplementation during pregnancy induces sex-specific changes in methylation and expression of placental 11beta-hydroxysteroid dehydrogenase 2 in rats . PLoS ONE10 ( 3 ), e0121098 ( 2015 ).
  • Cuffe JS , DickinsonH , SimmonsDG , MoritzKM . Sex specific changes in placental growth and MAPK following short term maternal dexamethasone exposure in the mouse . Placenta32 ( 12 ), 981 – 989 ( 2011 ).
  • Stark MJ , WrightIM , CliftonVL . Sex-specific alterations in placental 11beta-hydroxysteroid dehydrogenase 2 activity and early postnatal clinical course following antenatal betamethasone . Am. J. Physiol.297 ( 2 ), R510 – R514 ( 2009 ).
  • Bro-Rasmussen F , BuusO , TrolleD . Ratio cortisone/cortisol in mother and infant at birth . Acta Endocrinol.40 , 579 – 583 ( 1962 ).
  • Liu Y , LiG , ZhangW . Effect of fetal gender on pregnancy outcomes in Northern China . J. Matern. Fetal Neonatal. Med.30 ( 7 ), 858 – 863 ( 2017 ).
  • Shiozaki A , MatsudaY , SatohS , SaitoS . Impact of fetal sex in pregnancy-induced hypertension and preeclampsia in Japan . J. Reprod. Immunol.89 ( 2 ), 133 – 139 ( 2011 ).
  • Wander PL , BoykoEJ , HevnerKet al. Circulating early- and mid-pregnancy microRNAs and risk of gestational diabetes . Diabetes Res. Clin. Pract.132 , 1 – 9 ( 2017 ).
  • Wolf M , SaukJ , ShahAet al. Inflammation and glucose intolerance: a prospective study of gestational diabetes mellitus . Diabetes Care27 ( 1 ), 21 – 27 ( 2004 ).
  • Kotlabova K , DouchaJ , HromadnikovaI . Placental-specific microRNA in maternal circulation–identification of appropriate pregnancy-associated microRNAs with diagnostic potential . J. Reprod. Immunol.89 ( 2 ), 185 – 191 ( 2011 ).
  • Vandesompele J , De PreterK , PattynFet al. Accurate normalization of real-time quantitative RT-PCR data by geometric averaging of multiple internal control genes . Genome Biol.3 ( 7 ), Research 0034 ( 2002 ).
  • Andersen CL , JensenJL , OrntoftTF . Normalization of real-time quantitative reverse transcription-PCR data: a model-based variance estimation approach to identify genes suited for normalization, applied to bladder and colon cancer data sets . Cancer Res.64 ( 15 ), 5245 – 5250 ( 2004 ).
  • Evenson KR , WenF . Measuring physical activity among pregnant women using a structured one-week recall questionnaire: evidence for validity and reliability . Int. J. Behav. Nutr. Phys. Act.7 , 21 ( 2010 ).

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.