Lack of association between endocrine disrupting chemicals and male fertility: A systematic review and meta-analysis.
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Miguel Ángel Martínez | M. Marquès | J. Domingo | J. Salas-Salvadó | N. Babio | A. Salas-Huetos | J. Salas‐Salvadó
[1] L. Priskorn,et al. Environmental factors in declining human fertility , 2021, Nature Reviews Endocrinology.
[2] M. Perry,et al. Environmental and occupational pesticide exposure and human sperm parameters: a Navigation Guide review. , 2021, Toxicology.
[3] R. Mitchell,et al. Endocrine disruptors and the male reproductive system. , 2021, Best practice & research. Clinical endocrinology & metabolism.
[4] M. Yeste,et al. Clinical implications of sperm DNA damage in IVF and ICSI: updated systematic review and meta‐analysis , 2021, Biological reviews of the Cambridge Philosophical Society.
[5] M. Bloom,et al. A pilot investigation of couple-level phthalates exposure and in vitro fertilization (IVF) outcomes. , 2020, Reproductive toxicology.
[6] Laura N. Vandenberg,et al. Endocrine-disrupting chemicals: economic, regulatory, and policy implications. , 2020, The lancet. Diabetes & endocrinology.
[7] S. Rudaz,et al. Semen endocannabinoids are correlated to sperm quality in a cohort of 200 young Swiss men , 2020, Andrology.
[8] R. Ramasamy,et al. Decline in Serum Testosterone Levels Among Adolescent and Young Adult Men in the USA. , 2020, European urology focus.
[9] J. Stanford,et al. Male exposure to bisphenol A (BPA) and semen quality in the Home Observation of Periconceptional Exposures (HOPE) cohort. , 2019, Reproductive toxicology.
[10] Woochang Lee,et al. Body fluid concentrations of bisphenol A and their association with in vitro fertilization outcomes , 2019, Human fertility.
[11] R. Mitchell,et al. Effect of environmental and pharmaceutical exposures on fetal testis development and function: a systematic review of human experimental data , 2019, Human reproduction update.
[12] D. Goulis,et al. Serum Bisphenol A concentrations in men with idiopathic infertility. , 2019, Food and chemical toxicology : an international journal published for the British Industrial Biological Research Association.
[13] C. Wyns,et al. Fertility and infertility: Definition and epidemiology. , 2018, Clinical biochemistry.
[14] G. B. Buck Louis,et al. Preconception seminal plasma concentrations of endocrine disrupting chemicals in relation to semen quality parameters among male partners planning for pregnancy , 2018, Environmental research.
[15] A. Giwercman,et al. Endocrine disruptors and testicular function. , 2018, Metabolism: clinical and experimental.
[16] T. K. Jensen,et al. Reproductive Function in a Population of Young Faroese Men with Elevated Exposure to Polychlorinated Biphenyls (PCBs) and Perfluorinated Alkylate Substances (PFAS) , 2018, International journal of environmental research and public health.
[17] Nashwa A. M. Mostafa,et al. Potential hazards of bisphenol A exposure to semen quality and sperm DNA integrity among infertile men. , 2018, Reproductive toxicology.
[18] G. B. Buck Louis,et al. Endocrine disrupting chemicals in seminal plasma and couple fecundity , 2018, Environmental research.
[19] E. Adoamnei,et al. Urinary concentrations of benzophenone-type ultra violet light filters and reproductive parameters in young men. , 2018, International journal of hygiene and environmental health.
[20] R. Sharpe,et al. ‘Man Up’: the importance and strategy for placing male reproductive health centre stage in the political and research agenda , 2018, Human reproduction.
[21] X. Niu,et al. Biomonitoring PFAAs in blood and semen samples: Investigation of a potential link between PFAAs exposure and semen mobility in China. , 2018, Environment international.
[22] E. Adoamnei,et al. Urinary bisphenol A concentrations are associated with reproductive parameters in young men , 2018, Environmental research.
[23] Niels Jørgensen,et al. Temporal trends in sperm count: a systematic review and meta-regression analysis , 2017, Human reproduction update.
[24] G. B. Buck Louis,et al. Male urinary paracetamol and semen quality , 2017, Andrology.
[25] N. Ortuño,et al. Relationship between serum dioxin-like polychlorinated biphenyls and post-testicular maturation in human sperm. , 2017, Reproductive toxicology.
[26] M. Hill,et al. Associations of bisphenol A and polychlorinated biphenyls with spermatogenesis and steroidogenesis in two biological fluids from men attending an infertility clinic. , 2016, Environment international.
[27] H. Zhang,et al. Environmental Exposure to Triclosan and Semen Quality , 2016, International journal of environmental research and public health.
[28] F. Dong,et al. Association between phthalate metabolites and biomarkers of reproductive function in 1066 Chinese men of reproductive age. , 2015, Journal of hazardous materials.
[29] T. K. Jensen,et al. Spermatogenic capacity in fertile men with elevated exposure to polychlorinated biphenyls. , 2015, Environmental research.
[30] J. Bonde,et al. Serum Phthalate Levels and Time to Pregnancy in Couples from Greenland, Poland and Ukraine , 2015, PloS one.
[31] A. Lenzi,et al. Exposure to polychlorinated biphenyls and hexachlorobenzene, semen quality and testicular cancer risk , 2015, Journal of Endocrinological Investigation.
[32] J. Mendiola,et al. Associations between urinary organophosphate pesticide metabolite levels and reproductive parameters in men from an infertility clinic. , 2015, Environmental research.
[33] Dinesh Tiwari,et al. Mutagenic effect of Bisphenol A on adult rat male germ cells and their fertility. , 2013, Reproductive toxicology.
[34] Yankai Xia,et al. Association of exposure to phenols and idiopathic male infertility. , 2013, Journal of hazardous materials.
[35] B. Le Bizec,et al. PFOS (perfluorooctanesulfonate) in serum is negatively associated with testosterone levels, but not with semen quality, in healthy men. , 2014, Human reproduction.
[36] J. Yoshinaga,et al. Endocrine disrupting chemicals in urine of Japanese male partners of subfertile couples: a pilot study on exposure and semen quality. , 2012, International journal of hygiene and environmental health.
[37] Heqing Shen,et al. Environmental exposure to arsenic may reduce human semen quality: associations derived from a Chinese cross-sectional study , 2012, Environmental Health.
[38] T J Woodruff,et al. Endocrine-disrupting chemicals and public health protection: a statement of principles from The Endocrine Society. , 2012, Endocrinology.
[39] Y. Ainmelk,et al. Polybrominated diphenyl ethers and sperm quality. , 2011, Reproductive toxicology.
[40] T. Toth,et al. Semen quality and sperm DNA damage in relation to urinary bisphenol A among men from an infertility clinic. , 2010, Reproductive toxicology.
[41] J. Ioannidis,et al. The PRISMA Statement for Reporting Systematic Reviews and Meta-Analyses of Studies That Evaluate Health Care Interventions: Explanation and Elaboration , 2009, Annals of Internal Medicine [serial online].
[42] L. Giudice,et al. Endocrine-disrupting chemicals: an Endocrine Society scientific statement. , 2009, Endocrine reviews.
[43] A. A. Jensen,et al. Do Perfluoroalkyl Compounds Impair Human Semen Quality? , 2009, Environmental health perspectives.
[44] Lee B. Smith,et al. Identification in rats of a programming window for reproductive tract masculinization, disruption of which leads to hypospadias and cryptorchidism. , 2008, The Journal of clinical investigation.
[45] Paolo Brambilla,et al. Dioxin Exposure, from Infancy through Puberty, Produces Endocrine Disruption and Affects Human Semen Quality , 2007, Environmental health perspectives.
[46] F. Rousseau,et al. Reduced seminal parameters associated with environmental DDT exposure and p,p'-DDE concentrations in men in Chiapas, Mexico: a cross-sectional study. , 2006, Journal of andrology.
[47] L. Hagmar,et al. Exposure to CB-153 and p,p'-DDE and male reproductive function. , 2004, Human reproduction.
[48] S. Swan,et al. Have sperm densities declined? A reanalysis of global trend data. , 1997, Environmental health perspectives.
[49] K. Kannan,et al. Urinary bisphenol A and semen quality, the LIFE Study. , 2015, Reproductive toxicology.