Literature DB >> 25039897

Dietary intake of high-dose biotin inhibits spermatogenesis in young rats.

Hiromi Sawamura1, Chieko Ikeda, Ryoko Shimada, Yui Yoshii, Toshiaki Watanabe.   

Abstract

To characterize a new function of the water-soluble vitamin, biotin, in reproduction and early growth in mammals, the effects of high dietary doses of biotin on early spermatogenesis were biochemically and histologically investigated in male rats. Weaned rats were fed a CE-2 (control) diet containing 0.00004% biotin, or a control diet supplemented with 0.01%, 0.1%, or 1.0% biotin. Pair-fed rats were fed a control diet that was equal in calories to the amount ingested by the 1.0% biotin group, because food intake was decreased in the 1.0% biotin group. Food intake and body weight gain were lower in the 1.0% biotin group than in the control group. The kidney, brain and testis weights were significantly lower in the 1.0% biotin group than in the pair-fed group after 6 weeks of feeding. The accumulation of biotin in the liver and testis increased in a dose-dependent manner. In the 1.0% biotin group, the number of mature sperm was markedly lower, that of sperm with morphologically abnormal heads, mainly consisting of round heads, had increased. In addition, the development of seminiferous tubules was inhibited, and few spermatogonia and no spermatocytes were histologically observed. These results demonstrated that the long-term intake of high-dose biotin inhibited spermatogenesis in young male rats.
© 2014 Japanese Teratology Society.

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Keywords:  biotin; dietary intake; high-dose; rat; spermatogenesis

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Year:  2015        PMID: 25039897     DOI: 10.1111/cga.12070

Source DB:  PubMed          Journal:  Congenit Anom (Kyoto)        ISSN: 0914-3505            Impact factor:   1.409


  1 in total

1.  Dietary Biotin Supplementation Modifies Hepatic Morphology without Changes in Liver Toxicity Markers.

Authors:  Leticia Riverón-Negrete; Gloria Sicilia-Argumedo; Carolina Álvarez-Delgado; Elvia Coballase-Urrutia; Jonathan Alcántar-Fernández; Cristina Fernandez-Mejia
Journal:  Biomed Res Int       Date:  2016-12-25       Impact factor: 3.411

  1 in total

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