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首页> 外文期刊>Cellular Physiology and Biochemistry >Supplementation of Vitamin E Protects Chickens from Newcastle Disease Virus-Mediated Exacerbation of Intestinal Oxidative Stress and Tissue Damage
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Supplementation of Vitamin E Protects Chickens from Newcastle Disease Virus-Mediated Exacerbation of Intestinal Oxidative Stress and Tissue Damage

机译:补充维生素E保护鸡免受新城疫病毒介导的肠道氧化应激和组织损伤的恶化

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Background/Aims Newcastle disease virus (NDV) causes a highly devastating and contagious disease in poultry, which is mainly attributed to extensive tissue damages in the digestive, respiratory and nervous systems. However, nature and dynamics of NDV-induced oxidative stresses in the intestine of chickens remain elusive. Methods In this study, we examined the magnitude of intestinal oxidative stress and histopathological changes caused by the virulent NDV infection, and explored the protective roles of vitamin E (vit. E) in ameliorating these pathological changes. For these purposes, chickens were divided into four groups namely i) non supplemented and non-challenged (negative control, CON); ii) no supplementation of vit. E but challenged with ZJ1 (positive control, NS+CHA); iii) vit. E supplementation at the dose of 50 IU/day/Kg body weight and ZJ1 challenge (VE50+CHA); and 4) vit. E supplementation at the dose of 100 IU/day/Kg body weight and ZJ1 challenge (VE100+CHA). In all groups, we analyzed concentrations of glutathione (GSH), malondialdehyde (MDA), nitric oxide (NO), total antioxidant capacity (T-AOC), and activity of glutathione S-transferase (GST), superoxide dismutase (SOD), catalase (CAT) using biochemical methods. The virus loads were determined by quantitative RT-PCR and antibody titers by hemagglutination inhibition assays. We also examined the histopathological changes in the duodenal and jejunal mucosa at 3 and 5-day post infection (dpi) with NDV. Results A significant elevation in the NO level was observed in NDV challenged chickens compared to the CON chickens at 2 dpi. The MDA contents were significantly increased whereas GSH was significantly decreased in NDV-challenged chickens compared to control. Furthermore, activities of GST, CAT, SOD, as well as the TOAC were markedly decreased in challenged chickens in comparison with control. Virus copy numbers were higher in NDV infected NS+CHA group compared to other groups. Severe histopathological changes including inflammation, degeneration and broken villi were observed in the intestine of NDV challenged chickens. However, all these malfunctions of antioxidant system and pathological changes in the intestine were partially or completely reversed by the vit. E supplementation. Conclusions Our results suggest that NDV infection causes oxidative stress and histopathological changes in the duodenum and jejunum of chickens, which can be partially or fully ameliorated by supplementation of vit. E. Additionally, these findings suggest that oxidative stress contributes to the intestinal damages in NDV infected chickens. These findings will help to understand the pathogenesis of NDV and further investigation of therapeutic agents for control of Newcastle disease.
机译:背景/目的新城疫病毒(NDV)在禽类中引起高度毁灭性和传染性,主要归因于消化,呼吸和神经系统的广泛组织损伤。但是,NDV诱导的鸡肠氧化应激的性质和动力学仍然难以捉摸。方法在本研究中,我们检查了由强毒NDV感染引起的肠道氧化应激的程度和组织病理学变化,并探讨了维生素E(vit。E)在减轻这些病理变化中的保护作用。为此,将鸡分为四组,即:i)不补充和不挑战(阴性对照,CON); ii)不补充维生素。 E,但用ZJ1攻击(阳性对照,NS + CHA); iii)维生素以50 IU /天/ Kg体重和ZJ1攻击剂量(VE50 + CHA)补充E;和4)vit。以100 IU /天/ Kg体重和ZJ1攻击(VE100 + CHA)的剂量补充E。在所有组中,我们分析了谷胱甘肽(GSH),丙二醛(MDA),一氧化氮(NO),总抗氧化能力(T-AOC)和谷胱甘肽S-转移酶(GST),超氧化物歧化酶(SOD)的浓度,过氧化氢酶(CAT)使用生化方法。通过定量RT-PCR确定病毒载量,通过血凝抑制试验确定抗体滴度。我们还检查了NDV感染后第3天和第5天(dpi)的十二指肠和空肠黏膜的组织病理学变化。结果与2 dpi的CON鸡相比,NDV挑战鸡的NO水平明显升高。与对照组相比,NDV攻击鸡的MDA含量显着增加,而GSH显着降低。此外,与对照相比,受挑战的鸡的GST,CAT,SOD和TOAC的活性明显降低。与其他组相比,NDV感染的NS + CHA组的病毒拷贝数更高。在受到NDV攻击的鸡的肠道中观察到严重的组织病理学变化,包括炎症,变性和绒毛破裂。然而,所有这些抗氧化系统的功能失调和肠道的病理变化都被部分或全部逆转了。 E补充。结论我们的结果表明,NDV感染会引起鸡肉十二指肠和空肠的氧化应激和组织病理学改变,补充vit可以部分或完全缓解。 E.此外,这些发现表明,氧化应激有助于NDV感染鸡的肠道损伤。这些发现将有助于了解NDV的发病机理,并进一步研究用于控制新城疫的治疗剂。

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