1. Toxicity and oxidative stress induced by T-2 toxin and HT-2 toxin in broilers and broiler hepatocytes
- Author
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Zhenlei Zhou, Jiafa Hou, Yifeng Deng, Jun Cui, Zhiyong Zhao, Lingchen Yang, and Zezhong Yu
- Subjects
Male ,0301 basic medicine ,Cell Survival ,Food Contamination ,Biology ,Weight Gain ,Toxicology ,medicine.disease_cause ,Zea mays ,Feed conversion ratio ,Andrology ,Eating ,03 medical and health sciences ,chemistry.chemical_compound ,medicine ,Animals ,Aspartate Aminotransferases ,RNA, Messenger ,Viability assay ,Messenger RNA ,L-Lactate Dehydrogenase ,Molecular Structure ,Toxin ,Broiler ,Alanine Transaminase ,General Medicine ,Glutathione ,Oxidative Stress ,T-2 Toxin ,030104 developmental biology ,Gene Expression Regulation ,Liver ,chemistry ,Biochemistry ,Toxicity ,Hepatocytes ,Female ,Chickens ,Oxidative stress ,Food Science - Abstract
T-2 and HT-2 toxins belong to mycotoxins which are found in human foods and animal chow. We investigated the toxicity and oxidative stress induced by T-2/HT-2 in broilers and chicken hepatocytes. Maize cultures of Fusarium poae was fed to broilers for 42 d, and the physiological index, biochemical index and expression of mRNAs related to oxidative stress were analyzed. Chicken hepatocytes were treated with different levels of T-2/HT-2, and the following parameters were detected: cell viability, GSH and MDA concentration, LDH leakage, activities of ALT/AST, ROS, GSH-PX, SOD and CAT, and expression of mRNA related to oxidative stress. In vivo, high levels of mycotoxins (4 mg/kg T-2 and 0.667 mg/kg HT-2) in feed caused significant reductions in body weight, weight gain, and serum total protein, and significant increases in feed conversion ratio, ALP, ALT/AST activities, and expression of mRNA related to oxidative stress. In vitro, cells treated with T-2/HT-2 showed reductions of GSH concentration and significant increases in LDH leakage, ALT/AST ROS, GSH-PX, SOD and CAT activities, MDA concentration, and expression of mRNA related to oxidative stress. Consequently, F. poae culture material and T-2/HT-2 induced toxicity and oxidative stress in vivo and in vitro, respectively.
- Published
- 2016
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