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Published on: August 13, 2019
Effects of estrogenic xenobiotics on human and mouse spermatozoa
Lynn R Fraser1, Ergin Beyret, Stuart R Milligan
1Reproduction and Rhythms Group, School of Biomedical and Health Sciences, King's College London, London, UK. lynn.fraser@kcl.ac.uk
Objective:
To investigate human sperm responsiveness to the estrogenic xenobiotic genistein and seek further information regarding the mechanism of action of estrogenic xenobiotics using mouse spermatozoa.
Methods:
Uncapacitated human spermatozoa were incubated with genistein and assessed using chlortetracycline (CTC) fluorescence. CTC was also used to evaluate mouse sperm responses to daidzein and combinations of genistein, 8-prenylnaringenin and nonylphenol. Several steroids were tested to determine structure-function relationships, and possible involvement of cAMP and G proteins in responses was also investigated.
Results:
Genistein significantly accelerated capacitation and acrosome loss in human spermatozoa, with 1, 10 and 100 nmol/l being equally effective. In mouse spermatozoa, daidzein produced significant responses, and combinations of xenobiotics at low concentrations were more effective than used singly. The compounds appear to act at the cell surface, and responses to three different steroids were nonidentical. A protein kinase-A inhibitor blocked responses to xenobiotics, while genistein and nonylphenol significantly stimulated cAMP production. Pertussis toxin and dideoxyadenosine blocked responses, suggesting involvement of inhibitory G proteins and membrane-associated adenylyl cyclases.
Conclusion:
Human and mouse sperm responses to genistein are very similar, but human gametes appear to be even more sensitive. The mechanism of action may involve unregulated stimulation of cAMP production, leading to significant acrosome loss, undesirable because already acrosome-reacted cells are nonfertilizing. Xenobiotics were even more effective in combination. Since simultaneous exposure to low concentrations of multiple xenobiotics is likely to occur in animals and humans, further investigation is needed to determine whether this could impair fertility.
Insights
Estrogenic xenobiotics like genistein accelerate human sperm capacitation and acrosome loss, potentially impairing fertility. These compounds may act via unregulated cAMP production, with combinations being more potent.
Area of Science:
- Environmental toxicology
- Reproductive biology
- Endocrinology
Background:
- Estrogenic xenobiotics are environmental contaminants.
- Their effects on human sperm are not fully understood.
- Genistein is a prominent soy isoflavone with estrogenic activity.
Purpose of the Study:
- Investigate human sperm responsiveness to genistein.
- Elucidate the mechanism of action for estrogenic xenobiotics.
- Utilize mouse spermatozoa as a model system.
Main Methods:
- Human spermatozoa incubated with genistein, assessed via chlortetracycline (CTC) fluorescence.
- Mouse sperm responses evaluated with CTC for various xenobiotics and steroids.
- Investigated involvement of cAMP and G proteins.
Main Results:
- Genistein accelerated human sperm capacitation and acrosome loss.
- Mouse sperm showed significant responses to daidzein; xenobiotic combinations were more effective.
- Mechanism involves cAMP stimulation and G protein signaling.
Conclusions:
- Human and mouse sperm exhibit similar responses to genistein, with human gametes being more sensitive.
- Unregulated cAMP stimulation may lead to non-fertilizing acrosome-reacted sperm.
- Combined exposure to xenobiotics could pose a risk to fertility.
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