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Deoxynivalenol Impairs Hepatic and Intestinal Gene Expression of Selected Oxidative Stress Tight Junction and Inflammation Proteins in Broiler Chickens but Addition of an Adsorbing Agent Shifts the Effects to the Distal Parts of the Small Intestine

机译:脱氧雪腐酚会损害肉鸡所选氧化应激紧密连接和炎症蛋白的肝和肠基因表达但添加吸附剂会改变对小肠远端的影响

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摘要

Broiler chickens are rather resistant to deoxynivalenol and thus, clinical signs are rarely seen. However, effects of subclinical concentrations of deoxynivalenol on both the intestine and the liver are less frequently studied at the molecular level. During our study, we investigated the effects of three weeks of feeding deoxynivalenol on the gut wall morphology, intestinal barrier function and inflammation in broiler chickens. In addition, oxidative stress was evaluated in both the liver and intestine. Besides, the effect of a clay-based mycotoxin adsorbing agent on these different aspects was also studied. Our results show that feeding deoxynivalenol affects the gut wall morphology both in duodenum and jejenum of broiler chickens. A qRT-PCR analysis revealed that deoxynivalenol acts in a very specific way on the intestinal barrier, since only an up-regulation in mRNA expression of claudin 5 in jejunum was observed, while no effects were seen on claudin 1, zona occludens 1 and 2. Addition of an adsorbing agent resulted in an up-regulation of all the investigated genes coding for the intestinal barrier in the ileum. Up-regulation of Toll-like receptor 4 and two markers of oxidative stress (heme-oxigenase or HMOX and xanthine oxidoreductase or XOR) were mainly seen in the jejunum and to a lesser extent in the ileum in response to deoxynivalenol, while in combination with an adsorbing agent main effect was seen in the ileum. These results suggest that an adsorbing agent may lead to higher concentrations of deoxynivalenol in the more distal parts of the small intestine. In the liver, XOR was up-regulated due to DON exposure. HMOX and HIF-1α (hypoxia-inducible factor 1α) were down-regulated due to feeding DON but also due to feeding the adsorbing agent alone or in combination with DON.
机译:肉鸡对脱氧雪茄烯醇具有相当的抗性,因此很少见到临床症状。但是,亚临床浓度的脱氧雪腐烯醇对肠道和肝脏的影响在分子水平上的研究较少。在我们的研究中,我们调查了喂食三周脱氧雪腐烯酚对肉鸡肠道壁形态,肠屏障功能和炎症的影响。另外,在肝脏和肠中都评估了氧化应激。此外,还研究了粘土基霉菌毒素吸附剂对这些不同方面的影响。我们的结果表明,饲喂脱氧雪腐烯酚会影响肉鸡十二指肠和空肠的肠壁形态。 qRT-PCR分析表明,脱氧雪腐烯醇以非常特定的方式作用于肠屏障,因为仅观察到空肠中claudin 5的mRNA表达上调,而对claudin 1,Zona阻塞物1和2均未见作用。添加吸附剂导致编码回肠中肠屏障的所有研究基因的上调。 Toll样受体4和两个氧化应激标志物(血红素氧化酶或HMOX和黄嘌呤氧化还原酶或XOR)的上调主要见于空肠,而回肠中对脱氧雪腐烯酚的反应较小(回肠)回肠可见吸附剂的主要作用。这些结果表明,吸附剂可能导致小肠远端部分的脱氧雪腐烯醇浓度更高。在肝脏中,由于DON暴露,XOR上调。 HMOX和HIF-1α(低氧诱导因子1α)由于饲喂DON而下调,也归因于单独或与DON一起饲喂吸附剂。

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