Literature DB >> 32869713

Aluminum reproductive toxicity: a summary and interpretation of scientific reports.

Robert A Yokel1.   

Abstract

Publications addressing aluminum (Al)-induced reproductive toxicity were reviewed. Key details were compiled in summary tables. Approximate systemic Al exposure, a measure of bioavailability, was calculated for each exposure, based on the Al percentage in the dosed Al species, Al bioavailability, and absorption time course reports for the exposure route. This was limited to laboratory animal studies because no controlled-exposure human studies were found. Intended Al exposure was compared to unintended dietary Al exposure. The considerable and variable Al content of laboratory animal diets creates uncertainty about reproductive function in the absence of Al. Aluminum-induced reproductive toxicity in female mice and rats was evident after exposure to ≥25-fold the amount of Al consumed in the diet. Generally, the additional daily Al systemic exposure of studies that reported statistically significant results was greater than 100-fold above the typical human daily Al dietary consumption equivalent. Male reproductive endpoints were significantly affected after exposure to lower levels of Al than females. Increased Al intake increased fetus, placenta, and testes Al concentrations, to a greater extent in the placenta than fetus, and, in some cases, more in the testes than placenta. An adverse outcome pathway (AOP) was constructed for males based on the results of the reviewed studies. The proposed AOP includes oxidative stress as the molecular initiating event and increased malondialdehyde, DNA and spermatozoal damage, and decreased blood testosterone and sperm count as subsequent key events. Recommendations for the design of future studies of reproductive outcomes following exposure to Al are provided.

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Keywords:  Adverse outcome pathways; aluminum; female; fetus; injection; male; mice; oral intake; oxidative stress; placenta; rats; reproduction; spermatozoa; testis; testosterone

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Year:  2020        PMID: 32869713     DOI: 10.1080/10408444.2020.1801575

Source DB:  PubMed          Journal:  Crit Rev Toxicol        ISSN: 1040-8444            Impact factor:   5.635


  2 in total

Review 1.  Peer review of the pesticide risk assessment of the active substance aluminium ammonium sulfate.

Authors:  Fernando Alvarez; Maria Arena; Domenica Auteri; Marco Binaglia; Anna Federica Castoldi; Arianna Chiusolo; Angelo Colagiorgi; Mathilde Colas; Federica Crivellente; Chloe De Lentdecker; Mark Egsmose; Gabriella Fait; Franco Ferilli; Varvara Gouliarmou; Laia Herrero Nogareda; Alessio Ippolito; Frederique Istace; Samira Jarrah; Dimitra Kardassi; Aude Kienzler; Anna Lanzoni; Roberto Lava; Renata Leuschner; Alberto Linguadoca; Christopher Lythgo; Oriol Magrans; Iris Mangas; Ileana Miron; Tunde Molnar; Laura Padovani; Juan Manuel Parra Morte; Rositsa Serafimova; Rachel Sharp; Csaba Szentes; Andrea Terron; Anne Theobald; Manuela Tiramani; Laura Villamar-Bouza
Journal:  EFSA J       Date:  2022-05-13

2.  A Zn(II)-Based Sql Type 2D Coordination Polymer as a Highly Sensitive and Selective Turn-On Fluorescent Probe for Al3.

Authors:  Dmitry I Pavlov; Alexey A Ryadun; Andrei S Potapov
Journal:  Molecules       Date:  2021-12-06       Impact factor: 4.411

  2 in total

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