Pietsch Constanze, Junge Ranka
Zurich University of Applied Sciences (ZHAW), Institute of Natural Resource Sciences (IUNR), Gruental, P.O. Box, CH-8820 Waedenswil, Switzerland.
Zurich University of Applied Sciences (ZHAW), Institute of Natural Resource Sciences (IUNR), Gruental, P.O. Box, CH-8820 Waedenswil, Switzerland.
Comp Biochem Physiol C Toxicol Pharmacol. 2016 Oct;188:52-9. doi: 10.1016/j.cbpc.2016.06.004. Epub 2016 Jun 25.
Zearalenone (ZEN) is a frequent contaminant of animal feeds, but systemic effects on fish and possible metabolic costs have not yet been investigated. In order to fill this gap a feeding trial with juvenile carp was conducted. The fish were fed ZEN-contaminated diets at three concentrations (low: 332μgkg(-1), medium: 621μgkg(-1), and high: 797μgkg(-1) final feed, respectively) for four weeks. Possible reversible effects of ZEN were evaluated by feeding an additional group with the mycotoxin for four weeks period and the uncontaminated diet for further two weeks. After that possible ZEN effects on enzyme activities in kidney, spleen, liver and muscle tissue were investigated to get an organism-wide aspect of ZEN effects. Most organs appeared to (over)compensate ZEN effects during the exposure to this mycotoxin, which caused metabolic costs. Oxygen consumption increased in fish treated with the two higher ZEN concentrations via the diet. The differences between the treatments persisted also after the recovery phase of two weeks. Thus, the present study provided evidence of effects of ZEN on carbohydrate metabolism, lipid peroxidation in organs and metabolic oxygen demand. This is the first evidence for increased metabolic costs in a fish species due to exposure to the mycotoxin ZEN.
玉米赤霉烯酮(ZEN)是动物饲料中常见的污染物,但尚未对其对鱼类的全身影响及可能的代谢成本进行研究。为填补这一空白,对幼鲤进行了一项饲养试验。分别以三种浓度(低:332μg/kg、中:621μg/kg、高:797μg/kg最终饲料)的ZEN污染饲料喂养鱼类四周。通过给另一组投喂霉菌毒素四周,然后投喂未受污染的饲料两周,来评估ZEN可能的可逆影响。之后,研究了ZEN对肾脏、脾脏、肝脏和肌肉组织中酶活性的可能影响,以全面了解ZEN的影响。在接触这种霉菌毒素期间,大多数器官似乎(过度)补偿了ZEN的影响,这导致了代谢成本。通过饲料接受两种较高ZEN浓度处理的鱼类耗氧量增加。在两周的恢复期后,各处理之间的差异仍然存在。因此,本研究提供了ZEN对碳水化合物代谢、器官脂质过氧化和代谢需氧量影响的证据。这是首次有证据表明鱼类因接触霉菌毒素ZEN而导致代谢成本增加。