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Use of computational and recombinant technologies for developing novel influenza vaccines

机译:使用计算机和重组技术开发新型流感疫苗

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Influenza vaccine design has changed considerably with advancements in bioinformatics and computational biology. Improved surveillance efforts provide up-to-date information about influenza sequence diversity and assist with monitoring the spread of epidemics and vaccine efficacy rates. The advent of next-generation sequencing, epitope scanning and high-throughput analysis all help decipher influenza-associated protein interactions as well as predict immune responsiveness based on host genetic diversity. Computational approaches are utilized in nearly all aspects of vaccine design, from modeling, compatibility predictions, and optimization of antigens in various platforms. This overview discusses how computational techniques strengthen vaccine efforts against highly diverse influenza species.
机译:随着生物信息学和计算生物学的发展,流感疫苗的设计已发生了很大变化。改进的监视工作可提供有关流感序列多样性的最新信息,并有助于监视流行病的传播和疫苗的有效率。下一代测序,表位扫描和高通量分析的问世都有助于破译与流感相关的蛋白质相互作用,并基于宿主的遗传多样性预测免疫反应。计算方法几乎用于疫苗设计的所有方面,包括建模,相容性预测以及抗原在各种平台中的优化。本概述讨论了计算技术如何加强针对高度多样化的流感物种的疫苗工作。

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