Gajęcka Magdalena, Tarasiuk Michał, Zielonka Łukasz, Dąbrowski Michał, Nicpoń Jakub, Baranowski Mirosław, Gajęcki Maciej Tadeusz
Department of Epizootiology, Faculty of Veterinary Medicine, University of Warmia and Mazury in Olsztyn, Oczapowskiego 13/01, 10-718 Olsztyn, Poland; Department of Veterinary Prevention and Feed Hygiene, Faculty of Veterinary Medicine, University of Warmia and Mazury in Olsztyn, Oczapowskiego 13/29, 10-718 Olsztyn, Poland.
Boehringer Ingelheim Sp. z o.o., Wolska 5, 02-675 Warsaw, Poland.
Toxicon. 2017 Jan;125:32-43. doi: 10.1016/j.toxicon.2016.11.007. Epub 2016 Nov 10.
The aim of this study was to determine whether exposure to low doses of ZEN + DON induces changes in serum biochemical and hematological parameters in pre-pubertal gilts. In the evaluated groups, minor but statistically significant changes were noted in selected serum biochemical parameters, including glucose, total cholesterol, ALT, AST, AP, total bilirubin, P, Fe, K and Cl, and in hematological parameters, including WBC, eosinophils, basophils, monocytes, Ht, Hb, MCHC, HDW and PLT. A statistical analysis of the results revealed significant differences between groups in the values of WBC, eosinophils, basophils, Hb, Ht, PLT, glucose, ALT, AP, total bilirubin, Fe and K. Change trends were noted mainly in weeks II and V-VI. An analysis of the metabolic profile of pre-pubertal gilts exposed to ZEN + DON indicates that homeostasis and biotransformation of ZEN + DON can be toned down at the expense of the animals' energy reserves. Body weight gains were lower in group E, and BW gains were not observed in weeks II and VI. The activity levels of gilts decreased in the first weeks of exposure (I and II), but the drop was minimized by a compensatory effect, or in the last two weeks of exposure due to nutrient deficiency or insufficient supply of protein and energy with feed and feed additives, which decreased BW gains. Low doses of mycotoxins induce completely different changes in the metabolic test than higher doses. The above can probably be attributed to: (i) a negative compensatory effect, (ii) initiation of adaptive mechanisms and stimulation of the immune system, probably due to the allergizing properties of mycotoxins, (iii) excessive loss of energy and protein due to more effective feed utilization, or (iv) involvement in detoxification processes which leads to fatigue. Depending on the body's energy stores, the above processes tend to tone down the biotransformation of low doses of the examined mycotoxins but in the present study, the BW of gilts did not increase under exposure to a combination of ZEN + DON.
本研究的目的是确定低剂量玉米赤霉烯酮(ZEN)+呕吐毒素(DON)暴露是否会引起青春期前后备母猪血清生化和血液学参数的变化。在评估组中,选定的血清生化参数(包括葡萄糖、总胆固醇、谷丙转氨酶、谷草转氨酶、碱性磷酸酶、总胆红素、磷、铁、钾和氯)以及血液学参数(包括白细胞、嗜酸性粒细胞、嗜碱性粒细胞、单核细胞、红细胞压积、血红蛋白、平均血红蛋白浓度、红细胞分布宽度和血小板)出现了轻微但具有统计学意义的变化。对结果的统计分析显示,各组之间在白细胞、嗜酸性粒细胞、嗜碱性粒细胞、血红蛋白、红细胞压积、血小板、葡萄糖、谷丙转氨酶、碱性磷酸酶、总胆红素、铁和钾的值上存在显著差异。变化趋势主要出现在第II周以及第V - VI周。对暴露于ZEN + DON的青春期前后备母猪的代谢谱分析表明,ZEN + DON的体内平衡和生物转化可能会以动物的能量储备为代价而减弱。E组的体重增加较低,在第II周和第VI周未观察到体重增加。后备母猪的活动水平在暴露的最初几周(第I和II周)有所下降,但这种下降通过代偿作用降至最低,或者在暴露的最后两周由于营养缺乏或饲料及饲料添加剂中蛋白质和能量供应不足而导致体重增加减少。低剂量的霉菌毒素与高剂量相比,在代谢测试中会引起完全不同的变化。上述情况可能归因于:(i)负代偿作用,(ii)适应性机制的启动和免疫系统的刺激,可能是由于霉菌毒素的致敏特性,(iii)由于饲料利用率提高导致能量和蛋白质过度损失,或(iv)参与解毒过程导致疲劳。根据身体的能量储备情况,上述过程往往会减弱低剂量受试霉菌毒素的生物转化,但在本研究中,暴露于ZEN + DON组合下的后备母猪体重并未增加。