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Role of vaccination-induced immunity and antigenic distance in the transmission dynamics of highly pathogenic avian influenza H5N1

机译:疫苗诱导的免疫力和抗原距离在高致病性禽流感H5N1传播动力学中的作用

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摘要

Highly pathogenic avian influenza (HPAI) H5N1 epidemics in poultry cause huge economic losses as well as sporadic human morbidity and mortality. Vaccination in poultry has often been reported as being ineffective in preventing transmission and as a potential driving force in the selection of immune escape mutants. We conducted transmission experiments to evaluate the transmission dynamics of HPAI H5N1 strains in chickens vaccinated with high and low doses of immune escape mutants we have previously selected, and analysed the data using mathematical models. Remarkably, we demonstrate that the effect of antigenic distances between the vaccine and challenge strains used in this study is too small to influence the transmission dynamics of the strains used. This is because the effect of a sufficient vaccine dose on antibody levels against the challenge viruses is large enough to compensate for any decrease in antibody titres due to antigenic differences between vaccine and challenge strains. Our results show that at least under experimental conditions, vaccination will remain effective even after antigenic changes as may be caused by the initial selection in vaccinated birds.
机译:家禽中的高致病性禽流感(HPAI)H5N1流行病会造成巨大的经济损失,并导致零星的人类发病率和死亡率。经常报告家禽中的疫苗接种不能有效预防传播,并且在选择免疫逃逸突变体方面可能是潜在的驱动力。我们进行了传播实验以评估HPAI H5N1菌株在接种了我们先前选择的高剂量和低剂量免疫逃逸突变体的鸡中的传播动力学,并使用数学模型分析了数据。值得注意的是,我们证明了疫苗与本研究中使用的攻击菌株之间抗原距离的影响太小,无法影响所使用菌株的传播动力学。这是因为足够的疫苗剂量对针对攻击病毒的抗体水平的影响足够大,以补偿由于疫苗和攻击菌株之间的抗原差异而导致的抗体效价的任何降低。我们的结果表明,至少在实验条件下,即使在抗原改变之后,疫苗接种仍将保持有效,这可能是由接种禽类的最初选择引起的。

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