2022
Biomarkers of Stress and Male Fertility
Spitzer TL, Trussell JC, Coward RM, Hansen KR, Barnhart KT, Cedars MI, Diamond MP, Krawetz SA, Sun F, Zhang H, Santoro N, Steiner AZ. Biomarkers of Stress and Male Fertility. Reproductive Sciences 2022, 29: 1262-1270. PMID: 35106743, PMCID: PMC9078052, DOI: 10.1007/s43032-022-00853-x.Peer-Reviewed Original ResearchConceptsLive birth rateSemen parametersSalivary levelsSperm countPregnancy/live birth rateBirth rateTotal motile sperm countMale factor infertilityMotile sperm countDNA fragmentationTotal sperm countSalivary cortisol levelsMale fertilityStress-related biomarkersChi-square testingSalivary alpha-amylaseInfertility trialsCohort studyHighest quintileIntrauterine inseminationPregnancy rateUpper quintileInfertile menPhysiologic measuresBiomarkers of stress
2021
Male vitamin D status and male factor infertility
Banks N, Sun F, Krawetz SA, Coward RM, Masson P, Smith JF, Trussell JC, Santoro N, Zhang H, Steiner AZ. Male vitamin D status and male factor infertility. Fertility And Sterility 2021, 116: 973-979. PMID: 34289935, PMCID: PMC8561776, DOI: 10.1016/j.fertnstert.2021.06.035.Peer-Reviewed Original ResearchMeSH KeywordsAbortion, SpontaneousAdultBiomarkersClomipheneDietary SupplementsDouble-Blind MethodFemaleFertilityFertility Agents, FemaleHumansInfertility, MaleInsemination, Artificial, HomologousLive BirthMalePregnancyPregnancy RateProspective StudiesRisk FactorsSemenSemen AnalysisTime FactorsTreatment OutcomeUnited StatesVitamin DVitamin D DeficiencyConceptsVitamin D deficiencyLive birth rateMale factor infertilityD deficiencyFactor infertilityD levelsSemen parametersMild male factor infertilityMale partnersVitamin D levelsVitamin D statusRate of miscarriageFemale partnersSperm concentrationBirth rateClinical pregnancyClomiphene citrateD statusDNA fragmentationCumulative pregnancySperm DNA fragmentationVitamin DFertility centerIntrauterine inseminationMonth 4
2020
Factors associated with study protocol adherence and bio banking participation in reproductive medicine clinical trials and their relationship to live birth
Engmann L, Sun F, Legro RS, Diamond MP, Zhang H, Santoro N, Bartlebaugh C, Dodson W, Estes S, Ober J, Brzyski R, Easton C, Hernandez A, Leija M, Pierce D, Robinson R, Awonuga A, Cedo L, Cline A, Collins K, Krawetz S, Puscheck E, Singh M, Yoscovits M, Barnhart K, Coutifaris C, Lecks K, Martino L, Marunich R, Snyder P, Alvero R, Comfort A, Crow M, Schlaff W, Casson P, Hohmann A, Mallette S, Christman G, Ohl D, Ringbloom M, Tang J, Bates G, Mason S, DiMaria N, Usadi R, Lucidi R, Rhea M, Baker V, Turner K, Trussell J, DelBasso D, Huang H, Li Y, Makuch R, Patrizio P, Sakai L, Scahill L, Taylor H, Thomas T, Tsang S, Yan Q, Zhang M, Haisenleder D, Lamar C, DePaolo L, Herring A, Redmond J, Thomas M, Turek P, Wactawski-Wende J, Rebar R, Cato P, Dukic V, Lewis V, Schlegel P, Witter F. Factors associated with study protocol adherence and bio banking participation in reproductive medicine clinical trials and their relationship to live birth. Human Reproduction 2020, 35: 2819-2831. PMID: 33190149, PMCID: PMC8453415, DOI: 10.1093/humrep/deaa232.Peer-Reviewed Original ResearchConceptsPolycystic ovary syndromeClinical trial protocolMedicine clinical trialsU10 HD055942U10 HD38998Baseline characteristicsTrial protocolClinical trialsLive birthsPolycystic Ovary Syndrome IIU10 HD38992U10 HD39005U10 HD27049STUDY FUNDING/COMPETINGMultiple Intrauterine GestationsStudy protocol adherenceUS multicenter trialRegular ovulatory cyclesClinical trial findingsPolycystic ovarian morphologyPARTICIPANTS/MATERIALSROLE OF CHANCELower household incomeAfrican AmericansAspects of adherence