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Deoxynivalenol and its metabolite deepoxy-deoxynivalenol: multi-parameter analysis for the evaluation of cytotoxicity and cellular effects

机译:脱氧雪腐烯醇及其代谢产物深氧-脱氧雪腐烯醇:用于评估细胞毒性和细胞效应的多参数分析

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摘要

The mycotoxin deoxynivalenol (DON) contaminates agricultural commodities worldwide, posing health threats to humans and animals. Associated with DON are derivatives, such as deepoxy-deoxynivalenol (DOM-1), produced by enzymatic transformation of certain intestinal bacteria, which are naturally occurring or applied as feed additives. Using differentiated porcine intestinal epithelial cells (IPEC-J2), we provide the first multi-parameter comparative cytotoxicity analysis of DON and DOM-1, based on the parallel evaluation of lysosomal activity, total protein content, membrane integrity, mitochondrial metabolism and ATP synthesis. The study investigated the ability of DON and—for the first time of its metabolite DOM-1—to induce apoptosis, mitogen-activated protein kinase (MAPK) signalling, oxidative events and alterations of mitochondrial structure in porcine intestinal epithelial cells (IECs). The degree of DON toxicity strongly varied, depending on the cytotoxicity parameter evaluated. DON compromised viability according to the parameters of lysosomal activity, total protein content and membrane integrity, but increased viability according to assays based on mitochondrial metabolism and ATP synthesis. DON induced expression of cleaved caspase-3 (maximum induction 3.9-fold) and MAPK p38 and p42/p44 (maximum induction 2.51- and 2.30-fold, respectively). DON altered mitochondrial morphology, but did not increase intracellular ROS. DOM-1-treated IPEC-J2 remained unaffected at equimolar concentrations in all assays, thereby confirming the safety of feed additives using DON- to DOM-1-transforming bacteria. The study additionally highlights that an extensive multi-parameter analysis significantly contributes to the quality of in vitro data.
机译:霉菌毒素脱氧雪腐酚(DON)污染了全世界的农产品,对人类和动物构成了健康威胁。与DON有关的是衍生物,如深氧脱氧雪腐酚(DOM-1),是通过某些肠道细菌的酶促转化而产生的,这些细菌是天然存在的或用作饲料添加剂。基于溶酶体活性,总蛋白含量,膜完整性,线粒体代谢和ATP合成的平行评估,我们使用分化的猪肠上皮细胞(IPEC-J2),提供了DON和DOM-1的首个多参数比较细胞毒性分析。 。这项研究调查了DON及其首次在其代谢产物DOM-1中诱导猪肠道上皮细胞凋亡,丝裂原活化蛋白激酶(MAPK)信号,氧化事件和线粒体结构改变的能力。 DON毒性的程度变化很大,这取决于所评估的细胞毒性参数。 DON根据溶酶体活性,总蛋白质含量和膜完整性的参数降低了生存能力,但根据基于线粒体代谢和ATP合成的检测方法,增加了生存能力。 DON诱导裂解的caspase-3(最大诱导量为3.9倍)和MAPK p38和p42 / p44(最大诱导量分别为2.51和2.30倍)的表达。 DON改变了线粒体的形态,但没有增加细胞内ROS。在所有测定中,经DOM-1处理的IPEC-J2在等摩尔浓度下均不受影响,从而证实了使用DON-转化DOM-1转化细菌的饲料添加剂的安全性。该研究还强调指出,广泛的多参数分析可显着提高体外数据的质量。

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