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Development of an Effective and Stable Genotype-Matched Live Attenuated Newcastle Disease Virus Vaccine Based on a Novel Naturally Recombinant Malaysian Isolate Using Reverse Genetics

机译:一种有效和稳定的基因型匹配的减毒活的新城疫病毒疫苗的开发使用反向遗传学的新型自然重组马来西亚分离株。

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摘要

Genotype VII Newcastle disease viruses are associated with huge economic losses in the global poultry industry. Despite the intensive applications of vaccines, disease outbreaks caused by those viruses continue to occur frequently even among the vaccinated poultry farms. An important factor in the suboptimal protective efficacy of the current vaccines is the genetic mismatch between the prevalent strains and the vaccine strains. Therefore, in the present study, an effective and stable genotype-matched live attenuated Newcastle disease virus (NDV) vaccine was developed using reverse genetics, based on a recently isolated virulent naturally recombinant NDV IBS025/13 Malaysian strain. First of all, the sequence encoding the fusion protein (F) cleavage site of the virus was modified in silico from virulent polybasic (RRQKRF) to avirulent monobasic (GRQGRL) motif. The entire modified sequence was then chemically synthesized and inserted into pOLTV5 transcription vector for virus rescue. A recombinant virus termed mIBS025 was successfully recovered and shown to be highly attenuated based on OIE recommended pathogenicity assessment indices. Furthermore, the virus was shown to remain stably attenuated and retain the avirulent monobasic F cleavage site after 15 consecutive passages in specific-pathogen-free embryonated eggs and 12 passages in one-day-old chicks. More so, the recombinant virus induced a significantly higher hemagglutination inhibition antibody titre than LaSota although both vaccines fully protected chicken against genotype VII NDV induced mortality and morbidity. Finally, mIBS025 was shown to significantly reduce both the duration and quantity of cloacal and oropharyngeal shedding of the challenged genotype VII virus compared to the LaSota vaccine. These findings collectively indicate that mIBS025 provides a better protective efficacy than LaSota and therefore can be used as a promising vaccine candidate against genotype VII NDV strains.
机译:基因型VII新城疫病毒与全球家禽业造成巨大的经济损失。尽管广泛使用了疫苗,但由这些病毒引起的疾病暴发仍然频繁发生,即使在已接种疫苗的家禽农场中也是如此。当前疫苗的次优保护功效中的重要因素是流行菌株和疫苗菌株之间的遗传错配。因此,在本研究中,基于最近分离的有毒天然重组NDV IBS025 / 13马来西亚菌株,利用反向遗传学开发了一种有效且稳定的基因型匹配的减毒活新城疫病毒(NDV)疫苗。首先,在计算机上将编码病毒融合蛋白(F)切割位点的序列从有毒的多价碱基(RRQKRF)修改为无毒的一价碱基(GRQGRL)。然后化学合成整个修饰序列,并将其插入pOLTV5转录载体中以进行病毒拯救。根据OIE建议的致病性评估指标,成功回收了重组病毒mIBS025,并被高度减毒。此外,在无特定病原体的胚胎卵中连续传代15次后,在一天的雏鸡中传12次传代后,该病毒显示稳定地减毒并保留了无毒的一元F裂解位点。更重要的是,尽管两种疫苗都完全保护了鸡免受基因型VII NDV诱导的死亡率和发病率,但重组病毒诱导的血凝抑制抗体滴度明显高于LaSota。最后,与LaSota疫苗相比,mIBS025被证明可以显着减少受攻击的基因型VII病毒的泄殖腔和口咽脱落的持续时间和数量。这些发现共同表明,mIBS025比LaSota提供更好的保护功效,因此可以用作抗VII型NDV基因株的有前途的疫苗候选者。

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