Centre for Interdisciplinary Research and Education, Kolkata, India.
Jagadis Bose National Science Talent Search, Kolkata, India.
Methods Mol Biol. 2020;2131:17-30. doi: 10.1007/978-1-0716-0389-5_2.
With the increasing frequency of viral epidemics, vaccines to augment the human immune response system have been the medium of choice to combat viral infections. The tragic consequences of the Zika virus pandemic in South and Central America a few years ago brought the issues into sharper focus. While traditional vaccine development is time-consuming and expensive, recent advances in information technology, immunoinformatics, genetics, bioinformatics, and related sciences have opened the doors to new paradigms in vaccine design and applications.Peptide vaccines are one group of the new approaches to vaccine formulation. In this chapter, we discuss the various issues involved in the design of peptide vaccines and their advantages and shortcomings, with special reference to the Zika virus for which no drugs or vaccines are as yet available. In the process, we outline our work in this field giving a detailed step-by-step description of the protocol we follow for such vaccine design so that interested researchers can easily follow them and do their own designing. Several flowcharts and figures are included to provide a background of the software to be used and results to be anticipated.
随着病毒疫情的频繁发生,增强人体免疫系统的疫苗已成为对抗病毒感染的首选媒介。几年前,南美洲和中美洲的寨卡病毒大流行带来了更尖锐的问题。虽然传统的疫苗开发既耗时又昂贵,但信息技术、免疫信息学、遗传学、生物信息学和相关科学的最新进展为疫苗设计和应用开辟了新的范例。肽疫苗是疫苗配方的新方法之一。在本章中,我们讨论了设计肽疫苗所涉及的各种问题及其优缺点,特别提到了目前尚无药物或疫苗的寨卡病毒。在这个过程中,我们概述了我们在这一领域的工作,详细描述了我们遵循的用于此类疫苗设计的方案,以便感兴趣的研究人员可以轻松遵循并进行自己的设计。我们还包含了几个流程图和图片,为将要使用的软件和预期的结果提供背景。