4.7 Article

Tannic acid repair of zearalenone-induced damage by regulating the death receptor and mitochondrial apoptosis signaling pathway in mice

期刊

ENVIRONMENTAL POLLUTION
卷 287, 期 -, 页码 -

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.envpol.2021.117557

关键词

Zearalenone; Oxidative stress; Apoptosis; Death receptor signaling pathway; Mitochondrial apoptosis signaling pathway

资金

  1. Double First-Class Disciplinary Construction Project of Hunan Agricultural University [SYL2019049]
  2. Education Department of Hunan Province [19B249]
  3. National Key R&D Program of China [2016YDF0501200]
  4. China Postdoctoral Science Foundation [2017M620346]
  5. Graduate student scientific research in novation projects of Hunan province [CX20190509]
  6. Special Funds for Construc-tion of Innovative Provinces in Hunan Province [2020NK2032]

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The study demonstrates that TA can effectively alleviate the appearance of congestion and redness of the ovary caused by ZEA, increase the number of healthy growing follicles, decrease estrogen content, MDA and ROS levels in the ovaries, reduce ovarian cell apoptosis, modulate the protein expression levels of multiple apoptosis-related proteins, and increase Bcl-2 expression.
Zearalenone (ZEA) is an estrogenic toxin produced by Fusarium strains, that is widely present in crops, and endangers the reproductive system of animals. Tannic acid (TA) is a natural polyphenolic substance that is widespread in the roots, stems, and leaves of plants, and has special pharmacological activity. This study was designed to investigate the therapeutic effect of TA on ZEA-induced ovarian damage in mice and to explore the molecular mechanism involved. Ninety healthy Kunming female mice were divided into six equal groups. All the groups but the control group were administered daily with ZEA [10 mg/kg body weight (bw)] orally, for 7 days, to induce damage to the reproductive system. Some groups were also administered with TA (50, 100, and 200 mg/bw) for 7 days. Mice were euthanized 24 h later to allow for collection of serum and ovaries. TA can effectively alleviate the appearance of congestion and redness of the ovary, caused by ZEA, and increase the number of healthy growing follicles. Moreover, the estrogen content and the levels of MDA and ROS in the ovaries can be effectively reduced by TA. It can also reduce the apoptosis of ovarian cells, decreases the protein expression of the estrogen receptor, Fas, Fasl, caspase-3, caspase-8, caspase-9, and Bax, and increases the protein expression of Bcl-2. Our study indicates that TA reduces the strong estrogen and oxidative damage induced by ZEA, and these therapeutic effects may be partially mediated by the death receptor and mitochondrial apoptosis signaling pathway.

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