4.4 Article

Potential protective effect of lactic acid bacteria against zearalenone causing reprotoxicity in male mice

期刊

TOXICON
卷 209, 期 -, 页码 56-65

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.toxicon.2022.02.011

关键词

Zearalenone; Lactic acid bacteria; Testicular damages; DAMM1; PREP

资金

  1. academy of sciences for the developing world (TWAS)
  2. United Nations Educational, Scientific and Cultural Organization (UNESCO)
  3. Tunisian Ministry of higher Education and Scientific Research (Laboratory of Genetic, Biodiversity and Bio-resources Valorisation, University of Monastir, Monastir, Tunisia)
  4. Tunisian Ministry of higher Education and Scientific Research (Higher Institute of Biotechnology of Beja (Animal biotechnology Dept.)
  5. Dipartimento di Medicina-Sperimentale, Universit a Degli Studi Della Campania Luigi Vanvitelli - Napoli, Italy

向作者/读者索取更多资源

This study examined the effects of ZEN on adult mouse testis and found that it altered sperm parameters, induced oxidative stress, and caused structural alterations. It was also the first to evaluate the ability of ZEN to alter the protein levels and localization of DAAM1 and PREP. The co-treatment with Lactobacillus plantarum MON03 (LP) showed protective effects against ZEN-induced reprotoxicity.
Zearalenone (ZEN) is a worldwide fusarotoxin that poses a threat to the consumer due to its chronic toxicity. Herein we examined the effects of ZEN on adult mouse testis, focusing on oxidative stress, biochemical and morphological parameters. In addition, since cytoskeletal remodeling is a key event for the production of good quality gametes, the expression and localization of two proteins, Dishevelled-associated activator of morphogenesis 1 (DAAM1) and Prolyl endopeptidase (PREP), involved in cytoskeletal dynamics during spermatogenesis were evaluated. To ameliorate the testicular dysfunction induced by ZEN we tested the eventual protective effects of lactic bacteria Lactobacillus plantarum MON03 (LP) on its reprotoxicity. Adult male mice were then treated daily for 2 wks by oral gavage with ZEN and/or LP. The results confirmed that ZEN altered sperm parameters, generated oxidative stress and provoked structural alteration, evidenced by the increased number of abnormal seminiferous tubules and of apoptotic cells, particularly Leydig cells. Interestingly, at molecular level we evaluated, for the first time, the ability of ZEN to alter DAAM1 and PREP protein level and localization. Moreover, the co-treatment with LP, thanks to its capacity to reduce ZEN bioavailability in the gastrointestinal tract, ameliorated all the considered parameters. These results suggest the use of this probiotic as food supplement to prevent/counteract ZEN-induced reprotoxicity.

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