Barć Justyna, Kowalski Zygmunt Maciej, Jagusiak Wojciech
Department of Animal Nutrition and Fisheries, University of Agriculture in Krakow, Al. Mickiewicza 24/28, 30-059 Krakow, Poland.
Department of Animal Genetics, Breeding and Ethology, University of Agriculture in Krakow, Al. Mickiewicza 24/28, 30-059 Krakow, Poland.
Int J Mol Sci. 2025 Jul 16;26(14):6827. doi: 10.3390/ijms26146827.
Zearalenone (ZEN), a mycotoxin commonly present in maize-based feed, poses a health risk to dairy cows. While the hepatic effects of ZEN are increasingly studied, little is known about its impact on cows with altered energy metabolism. This study investigated the transcriptional response of liver cells isolated from healthy and ketotic cows to ZEN exposure using a novel in vitro model. Hepatocytes were obtained via biopsy from 12 cows, cultured under standardized conditions, and exposed to ZEN (0-100 µM) for 1, 3, and 6 h. Gene expression analysis focused on targets related to glucose and lipid metabolism. ZEN induced time- and dose-dependent changes in gene expression, with the most prominent effects observed after 1 h. Key metabolic genes were differentially regulated depending on the cow's metabolic status. Notably, hepatocytes from healthy cows showed a stronger transcriptional response than those from ketotic cows, indicating reduced metabolic adaptability in energy-compromised animals. Significant interaction effects between ZEN dose and metabolic status were observed, especially for genes involved in glycolysis and fatty acid metabolism. This study presents a novel in vitro model and emphasizes the need to consider metabolic health when assessing the risks of mycotoxin exposure in dairy cattle.
玉米赤霉烯酮(ZEN)是一种常见于以玉米为基础的饲料中的霉菌毒素,对奶牛健康构成风险。虽然对ZEN的肝脏影响研究越来越多,但对其对能量代谢改变的奶牛的影响却知之甚少。本研究使用一种新型体外模型,研究了从健康和酮病奶牛分离的肝细胞对ZEN暴露的转录反应。通过活检从12头奶牛获取肝细胞,在标准化条件下培养,并暴露于ZEN(0 - 100 μM)1、3和6小时。基因表达分析集中在与葡萄糖和脂质代谢相关的靶点上。ZEN诱导基因表达的时间和剂量依赖性变化,1小时后观察到最显著的影响。关键代谢基因根据奶牛的代谢状态受到不同调节。值得注意的是,健康奶牛的肝细胞比酮病奶牛的肝细胞表现出更强的转录反应,表明能量受损动物的代谢适应性降低。观察到ZEN剂量与代谢状态之间存在显著的相互作用效应,特别是对于参与糖酵解和脂肪酸代谢的基因。本研究提出了一种新型体外模型,并强调在评估奶牛霉菌毒素暴露风险时需要考虑代谢健康。