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硒纳米颗粒增强了鸡用同源疫苗对高致病性禽流感H5N1病毒的效力。

Selenium nanoparticles enhance the efficacy of homologous vaccine against the highly pathogenic avian influenza H5N1 virus in chickens.

作者信息

Yehia Nahed, AbdelSabour Mohammed A, Erfan Ahmed M, Mohammed Ali Zeinab, Soliman Reem A, Samy Ahmed, Mohamed Soliman Mohamed, Abd El-Hack Mohamed E, El-Saadony Mohamed T, Ahmed Kawkab A

机构信息

Reference Laboratory for Veterinary Quality Control on Poultry Production (RLQP), Animal Health Research Institute (AHRI), Agricultural Research Center (ARC), Dokki, Giza 12618, Egypt.

Poultry Viral Vaccines Production and Research Department, Veterinary Serum and Vaccine Research Institute (VSVRI), Agriculture Research Center (ARC), Egypt.

出版信息

Saudi J Biol Sci. 2022 Apr;29(4):2095-2111. doi: 10.1016/j.sjbs.2021.11.051. Epub 2021 Nov 25.

Abstract

A proper vaccination against avian influenza viruses in chicken can significantly reduce the risk of human infection. Egypt has the highest number of recorded humans highly pathogenic avian influenza (HPAI)-H5N1 infections worldwide despite the widespread use of homologous vaccines in poultry. Enhancing H5N1 vaccine efficacy is ultimately required to better control HPAI-H5N1. The aim of this study is to boost chicken immunity by combined with inactivated HPAI-H5N1 with selenium nanoparticles (SeNPs). The chickens groups 1-3 were fed diets supplemented with SeNPs concentrations (0.25, 0.5, and 1 mg/kg) for 3 weeks and then vaccinated (inactivated HPAI-H5N1). while groups 4,5 and 6 were fed with SeNPs free diets and administered with 0.5 ml of the vaccine combined with 0.02, 0.06, and 0.1 mg/dose of SeNPs and then all groups were challenged with homologous virus 3 weeks post-vaccination (WPV). Group 7, 8 were used as control positive and negative respectively. At 4, 5, and 6 WPV, antibody titer was considerably higher in the group fed a meal supplemented with 1 mg SeNPs/kg. In contrast, both methods of SeNPs supplementation significantly increased the Interleukin 2 (IL2), Interleukin 6 (IL6), and Interferon γ (IFNγ) expressions in the blood cells in a dose-dependent manner, with a higher expression observed in the group that was vaccinated with 0.1 mg/dose. After the challenge, all groups that received SeNPs via diet or vaccines dose showed significant reduction in viral shedding and milder inflammation in lung, trachea, spleen, and liver in addition to higher expression of IL2, IL6, and IFNγ, with the highest expression observed in the group that was vaccinated with 0.1 mg/dose compared the plain vaccinated group. The groups of 1 mg SeNPs/kg and combined vaccinated with 0.1 mg/dose showed the best vaccine efficacy. However, the group vaccinated with 0.1 mg/dose showed the earliest reduction in viral shedding. Overall, SeNPs supplementation in the diet and the administration of the vaccine formula with SeNPs could enhance vaccine efficacy and provide better protection against HPAI-H5N1 in chickens by enhancing cellular immunity and reducing inflammation. We recommend using SeNPs as a vaccine combination or feeding with diet to increase the immunity and vaccine efficacy against H5N1.

摘要

对鸡进行适当的禽流感病毒疫苗接种可显著降低人类感染风险。尽管在禽类中广泛使用同源疫苗,但埃及仍是全球记录的人类高致病性禽流感(HPAI)-H5N1感染病例数最多的国家。最终需要提高H5N1疫苗的效力,以更好地控制HPAI-H5N1。本研究的目的是通过将灭活的HPAI-H5N1与硒纳米颗粒(SeNPs)结合来增强鸡的免疫力。第1-3组鸡连续3周喂食添加了不同浓度SeNPs(0.25、0.5和1毫克/千克)的日粮,然后进行疫苗接种(灭活的HPAI-H5N1)。而第4、5和6组鸡喂食不含SeNPs的日粮,并分别接种0.5毫升疫苗,同时添加0.02、0.06和0.1毫克/剂量的SeNPs,然后在接种疫苗后3周(WPV),所有组均用同源病毒进行攻毒。第7、8组分别作为阳性和阴性对照。在接种疫苗后4、5和6周时,喂食添加1毫克SeNPs/千克日粮的组抗体滴度显著更高。相比之下,两种SeNPs添加方法均以剂量依赖的方式显著增加了血细胞中白细胞介素2(IL2)、白细胞介素6(IL6)和干扰素γ(IFNγ)的表达,在接种0.1毫克/剂量SeNPs的组中观察到更高的表达。攻毒后,所有通过日粮或疫苗剂量接受SeNPs的组病毒排毒量均显著降低,肺、气管、脾脏和肝脏的炎症也较轻,此外IL2、IL6和IFNγ的表达更高,与单纯接种疫苗的组相比,在接种0.1毫克/剂量SeNPs的组中观察到最高的表达。添加1毫克SeNPs/千克日粮的组和接种0.1毫克/剂量SeNPs联合疫苗的组显示出最佳的疫苗效力。然而,接种0.1毫克/剂量SeNPs的组病毒排毒量最早降低。总体而言,日粮中添加SeNPs以及使用含SeNPs的疫苗配方可通过增强细胞免疫和减轻炎症来提高疫苗效力,并为鸡提供更好的针对HPAI-H5N1的保护。我们建议将SeNPs用作疫苗佐剂或添加到日粮中,以提高针对H5N1的免疫力和疫苗效力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/19db/9072940/6cccf79e7fe6/gr1.jpg

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