EDC IMPACT: Chemical UV filters can affect human sperm function in a progesterone-like manner

Human sperm cell function must be precisely regulated to achieve natural fertilization. Progesterone released by the cumulus cells surrounding the egg induces a Ca2+ influx into human sperm cells via the CatSper Ca2+-channel and thereby controls sperm function. Multiple chemical UV filters have been...

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Main Authors: A Rehfeld, D L Egeberg, K Almstrup, J H Petersen, S Dissing, N E Skakkebæk
Format: Article
Language:English
Published: Bioscientifica 2017-12-01
Series:Endocrine Connections
Subjects:
Online Access:http://www.endocrineconnections.com/content/7/1/16.full
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spelling doaj-29ed8fc8592d4ec7aeaba326106a5c482020-11-25T01:00:24ZengBioscientificaEndocrine Connections2049-36142049-36142017-12-0171162510.1530/EC-17-0156EDC IMPACT: Chemical UV filters can affect human sperm function in a progesterone-like mannerA Rehfeld0D L Egeberg1K Almstrup2J H Petersen3S Dissing4N E Skakkebæk5Department of Growth and Reproduction, Copenhagen University Hospital, Rigshospitalet, Denmark; Department of Cellular and Molecular Medicine, Faculty of Health Sciences, University of Copenhagen, Copenhagen, Denmark; International Center for Research and Research Training in Endocrine Disruption of Male Reproduction and Child Health (EDMaRC), University of Copenhagen, Rigshospitalet, DenmarkDepartment of Growth and Reproduction, Copenhagen University Hospital, Rigshospitalet, Denmark; International Center for Research and Research Training in Endocrine Disruption of Male Reproduction and Child Health (EDMaRC), University of Copenhagen, Rigshospitalet, DenmarkDepartment of Growth and Reproduction, Copenhagen University Hospital, Rigshospitalet, Denmark; International Center for Research and Research Training in Endocrine Disruption of Male Reproduction and Child Health (EDMaRC), University of Copenhagen, Rigshospitalet, DenmarkDepartment of Growth and Reproduction, Copenhagen University Hospital, Rigshospitalet, Denmark; International Center for Research and Research Training in Endocrine Disruption of Male Reproduction and Child Health (EDMaRC), University of Copenhagen, Rigshospitalet, Denmark; Department of Biostatistics, University of Copenhagen, Copenhagen, DenmarkDepartment of Cellular and Molecular Medicine, Faculty of Health Sciences, University of Copenhagen, Copenhagen, DenmarkDepartment of Growth and Reproduction, Copenhagen University Hospital, Rigshospitalet, Denmark; International Center for Research and Research Training in Endocrine Disruption of Male Reproduction and Child Health (EDMaRC), University of Copenhagen, Rigshospitalet, DenmarkHuman sperm cell function must be precisely regulated to achieve natural fertilization. Progesterone released by the cumulus cells surrounding the egg induces a Ca2+ influx into human sperm cells via the CatSper Ca2+-channel and thereby controls sperm function. Multiple chemical UV filters have been shown to induce a Ca2+ influx through CatSper, thus mimicking the effect of progesterone on Ca2+ signaling. We hypothesized that these UV filters could also mimic the effect of progesterone on sperm function. We examined 29 UV filters allowed in sunscreens in the US and/or EU for their ability to affect acrosome reaction, penetration, hyperactivation and viability in human sperm cells. We found that, similar to progesterone, the UV filters 4-MBC, 3-BC, Meradimate, Octisalate, BCSA, HMS and OD-PABA induced acrosome reaction and 3-BC increased sperm penetration into a viscous medium. The capacity of the UV filters to induce acrosome reaction and increase sperm penetration was positively associated with the ability of the UV filters to induce a Ca2+ influx. None of the UV filters induced significant changes in the proportion of hyperactivated cells. In conclusion, chemical UV filters that mimic the effect of progesterone on Ca2+ signaling in human sperm cells can similarly mimic the effect of progesterone on acrosome reaction and sperm penetration. Human exposure to these chemical UV filters may impair fertility by interfering with sperm function, e.g. through induction of premature acrosome reaction. Further studies are needed to confirm the results in vivo.http://www.endocrineconnections.com/content/7/1/16.fullendocrine disrupting chemicalsUV filtersfertilityCatSperprogesteronehuman sperm
collection DOAJ
language English
format Article
sources DOAJ
author A Rehfeld
D L Egeberg
K Almstrup
J H Petersen
S Dissing
N E Skakkebæk
spellingShingle A Rehfeld
D L Egeberg
K Almstrup
J H Petersen
S Dissing
N E Skakkebæk
EDC IMPACT: Chemical UV filters can affect human sperm function in a progesterone-like manner
Endocrine Connections
endocrine disrupting chemicals
UV filters
fertility
CatSper
progesterone
human sperm
author_facet A Rehfeld
D L Egeberg
K Almstrup
J H Petersen
S Dissing
N E Skakkebæk
author_sort A Rehfeld
title EDC IMPACT: Chemical UV filters can affect human sperm function in a progesterone-like manner
title_short EDC IMPACT: Chemical UV filters can affect human sperm function in a progesterone-like manner
title_full EDC IMPACT: Chemical UV filters can affect human sperm function in a progesterone-like manner
title_fullStr EDC IMPACT: Chemical UV filters can affect human sperm function in a progesterone-like manner
title_full_unstemmed EDC IMPACT: Chemical UV filters can affect human sperm function in a progesterone-like manner
title_sort edc impact: chemical uv filters can affect human sperm function in a progesterone-like manner
publisher Bioscientifica
series Endocrine Connections
issn 2049-3614
2049-3614
publishDate 2017-12-01
description Human sperm cell function must be precisely regulated to achieve natural fertilization. Progesterone released by the cumulus cells surrounding the egg induces a Ca2+ influx into human sperm cells via the CatSper Ca2+-channel and thereby controls sperm function. Multiple chemical UV filters have been shown to induce a Ca2+ influx through CatSper, thus mimicking the effect of progesterone on Ca2+ signaling. We hypothesized that these UV filters could also mimic the effect of progesterone on sperm function. We examined 29 UV filters allowed in sunscreens in the US and/or EU for their ability to affect acrosome reaction, penetration, hyperactivation and viability in human sperm cells. We found that, similar to progesterone, the UV filters 4-MBC, 3-BC, Meradimate, Octisalate, BCSA, HMS and OD-PABA induced acrosome reaction and 3-BC increased sperm penetration into a viscous medium. The capacity of the UV filters to induce acrosome reaction and increase sperm penetration was positively associated with the ability of the UV filters to induce a Ca2+ influx. None of the UV filters induced significant changes in the proportion of hyperactivated cells. In conclusion, chemical UV filters that mimic the effect of progesterone on Ca2+ signaling in human sperm cells can similarly mimic the effect of progesterone on acrosome reaction and sperm penetration. Human exposure to these chemical UV filters may impair fertility by interfering with sperm function, e.g. through induction of premature acrosome reaction. Further studies are needed to confirm the results in vivo.
topic endocrine disrupting chemicals
UV filters
fertility
CatSper
progesterone
human sperm
url http://www.endocrineconnections.com/content/7/1/16.full
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