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大鼠、猪、鸡和鲤鱼中T-2毒素的肝脏体外代谢比较。

A comparison of hepatic in vitro metabolism of T-2 toxin in rats, pigs, chickens, and carp.

作者信息

Wu Qinghua, Huang Lingli, Liu Zhaoying, Yao Min, Wang Yulian, Dai Menghong, Yuan Zonghui

机构信息

MOA Key Laboratory of Food Safety Evaluation/National Reference Laboratory of Veterinary Drug Residues (HZAU), Huazhong Agricultural University, Wuhan, Hubei, People's Republic of China.

出版信息

Xenobiotica. 2011 Oct;41(10):863-73. doi: 10.3109/00498254.2011.593206. Epub 2011 Jul 11.

Abstract

T-2 toxin, a highly toxic member of the type-A trichothecenes, is produced by various Fusarium moulds that can potentially affect human health. It is strongly cytotoxic for human hematopoietic progenitors. Alimentary toxic aleukia (ATA), a disease typically associated with human, is primarily induced by T-2 toxin. A comparison of the metabolism of T-2 toxin incubated with hepatocytes of rats, piglets, chickens, and the hepatic subcellular fractions (microsomes and cytosol) of piglets, chickens, rats, and carp (common carp and grass carp) was carried out. The activities of the recombinant pig CYP3A29 on the transformation of T-2 and HT-2 toxins were preliminary studied. Metabolites were identified by novel LC/MS-IT-TOF. Qualitative similarities and differences across the species were observed. In liver microsomes, HT-2 toxin, neosolaniol (NEO), 3'-OH-T-2, and 3'-OH-HT-2 were detected in rats, chickens, and pigs. 3'-OH-HT-2 and HT-2 toxin was not detectable in common carp and grass crap, respectively. Moreover, in liver microsomes, the hydroxyl metabolites accounted for the largest percentage in carp, whereas the hydrolysis product, HT-2 toxin, was the major one for the land animals. Only hydrolysis products such as NEO and HT-2 toxin were detected in hepatocytes. Recombinant pig CYP3A29 was able to convert T-2 and HT-2 toxins to high rates of 3'-OH-T-2 and 3'-OH-HT-2, respectively. Both CYP450 and carboxylesterase enzymes have been found to play a role in the metabolism of T-2 toxin. Metabolism of T-2 toxin across species produces a similar spectrum of metabolites. Preliminary metabolic studies of carp reveal that ester hydrolysis of T-2 toxin in carp may not play as important a role as is the case with land animals.

摘要

T-2毒素是A型单端孢霉烯族毒素中一种剧毒物质,由多种镰刀霉菌产生,可能会对人类健康产生影响。它对人类造血祖细胞具有很强的细胞毒性。人类的一种典型疾病——食物中毒性白细胞缺乏症(ATA)主要由T-2毒素诱发。对T-2毒素与大鼠、仔猪、鸡的肝细胞以及仔猪、鸡、大鼠和鲤鱼(鲤鱼和草鱼)的肝脏亚细胞组分(微粒体和胞质溶胶)共同孵育后的代谢情况进行了比较。初步研究了重组猪CYP3A29对T-2毒素和HT-2毒素转化的活性。通过新型液相色谱/离子阱-飞行时间质谱(LC/MS-IT-TOF)鉴定代谢产物。观察到不同物种之间代谢产物的定性异同。在肝脏微粒体中,在大鼠、鸡和猪体内检测到了HT-2毒素、新茄病镰刀菌烯醇(NEO)、3'-羟基-T-2毒素和3'-羟基-HT-2毒素。在鲤鱼和草鱼体内分别未检测到3'-羟基-HT-2毒素和HT-2毒素。此外,在肝脏微粒体中,羟基代谢产物在鲤鱼中所占比例最大,而水解产物HT-2毒素是陆生动物中的主要代谢产物。在肝细胞中仅检测到NEO和HT-2毒素等水解产物。重组猪CYP3A29能够分别将T-2毒素和HT-2毒素高效转化为3'-羟基-T-2毒素和3'-羟基-HT-2毒素。已发现细胞色素P450(CYP450)和羧酸酯酶在T-2毒素的代谢中均发挥作用。T-2毒素在不同物种中的代谢产生了相似的代谢产物谱。对鲤鱼的初步代谢研究表明,T-2毒素在鲤鱼中的酯水解作用可能不像在陆生动物中那样重要。

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