2023
Leukocyte telomere length and DNA methylome as biomarkers of ovarian reserve and embryo aneuploidy: the intricate relationship between somatic and reproductive aging
Garg A, Seli E. Leukocyte telomere length and DNA methylome as biomarkers of ovarian reserve and embryo aneuploidy: the intricate relationship between somatic and reproductive aging. Fertility And Sterility 2023, 121: 26-33. PMID: 37979607, DOI: 10.1016/j.fertnstert.2023.11.011.Peer-Reviewed Original ResearchConceptsPoor ovarian responseLeukocyte telomere lengthOvarian reserveTelomere lengthAssisted Reproductive TechnologyOvarian responseFollicular somatic cellsMethylome changesDNA methylomePrevalence of infertilityDiminished ovarian reserveSomatic cellsCellular agingEpigenetic clocksDNA methylation ageReproductive potentialReproductive declineOvarian agingSurrogate biomarkerCommon causeMethylomeART outcomesChronologic ageEmbryo aneuploidyReproductive function
2020
Young women with poor ovarian response exhibit epigenetic age acceleration based on evaluation of white blood cells using a DNA methylation-derived age prediction model
Hanson BM, Tao X, Zhan Y, Jenkins TG, Morin SJ, Scott RT, Seli EU. Young women with poor ovarian response exhibit epigenetic age acceleration based on evaluation of white blood cells using a DNA methylation-derived age prediction model. Human Reproduction 2020, 35: 2579-2588. PMID: 33049778, DOI: 10.1093/humrep/deaa206.Peer-Reviewed Original ResearchConceptsPoor ovarian responseWhite blood cellsPolycystic ovary syndromeOvarian responseOvarian stimulationChronologic ageWBC samplesEpigenetic age accelerationCumulus cellsAge accelerationYoung womenSTUDY FUNDING/COMPETINGBlood cellsProspective cohort studyGood responder groupCommon clinical challengePeripheral blood samplesPARTICIPANTS/MATERIALSROLE OF CHANCEYears of agePatient's chronologic ageGeneral health consequencesCC samplesAge-related changesAge prediction model
2018
DNA methylation-based age prediction and telomere length in white blood cells and cumulus cells of infertile women with normal or poor response to ovarian stimulation
Morin SJ, Tao X, Marin D, Zhan Y, Landis J, Bedard J, Scott RT, Seli E. DNA methylation-based age prediction and telomere length in white blood cells and cumulus cells of infertile women with normal or poor response to ovarian stimulation. Aging 2018, 10: 3761-3773. PMID: 30530921, PMCID: PMC6326671, DOI: 10.18632/aging.101670.Peer-Reviewed Original ResearchConceptsChronologic agePremature reproductive agingReproductive-age womenWhite blood cellsOvarian stimulationInfertile womenOvarian responsePatient ageInfertile patientsAge womenPoor responseFollicular somatic cellsReproductive agingFertility treatmentCumulus cellsBlood cellsTelomere lengthAgeWomenPatientsStimulationWBCFemale ageRiskReproductive senescence