Immunoinformatics and Vaccine Development: An Overview.

IF 6.2 Q1 IMMUNOLOGY ImmunoTargets and Therapy Pub Date : 2020-02-26 eCollection Date: 2020-01-01 DOI:10.2147/ITT.S241064
Angus Nnamdi Oli, Wilson Okechukwu Obialor, Martins Ositadimma Ifeanyichukwu, Damian Chukwu Odimegwu, Jude Nnaemeka Okoyeh, George Ogonna Emechebe, Samson Adedeji Adejumo, Gordon C Ibeanu
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引用次数: 105

Abstract

The use of vaccines have resulted in a remarkable improvement in global health. It has saved several lives, reduced treatment costs and raised the quality of animal and human lives. Current traditional vaccines came empirically with either vague or completely no knowledge of how they modulate our immune system. Even at the face of potential vaccine design advance, immune-related concerns (as seen with specific vulnerable populations, cases of emerging/re-emerging infectious disease, pathogens with complex lifecycle and antigenic variability, need for personalized vaccinations, and concerns for vaccines' immunological safety -specifically vaccine likelihood to trigger non-antigen-specific responses that may cause autoimmunity and vaccine allergy) are being raised. And these concerns have driven immunologists toward research for a better approach to vaccine design that will consider these challenges. Currently, immunoinformatics has paved the way for a better understanding of some infectious disease pathogenesis, diagnosis, immune system response and computational vaccinology. The importance of this immunoinformatics in the study of infectious diseases is diverse in terms of computational approaches used, but is united by common qualities related to host-pathogen relationship. Bioinformatics methods are also used to assign functions to uncharacterized genes which can be targeted as a candidate in vaccine design and can be a better approach toward the inclusion of women that are pregnant into vaccine trials and programs. The essence of this review is to give insight into the need to focus on novel computational, experimental and computation-driven experimental approaches for studying of host-pathogen interactions and thus making a case for its use in vaccine development.

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免疫信息学与疫苗发展综述
疫苗的使用使全球健康得到了显著改善。它挽救了几条生命,降低了治疗费用,提高了动物和人类的生活质量。目前的传统疫苗是经验之谈,对它们如何调节我们的免疫系统知之甚少或完全不了解。即使面对潜在的疫苗设计进展,与免疫相关的问题(如特定易感人群、新发/再发传染病病例、具有复杂生命周期和抗原变异性的病原体、个性化疫苗接种的需求,以及对疫苗免疫安全性的担忧——特别是疫苗可能引发可能导致自身免疫和疫苗过敏的非抗原特异性反应)正在提高。这些担忧促使免疫学家研究更好的疫苗设计方法,考虑到这些挑战。目前,免疫信息学已经为更好地理解一些传染病的发病机制、诊断、免疫系统反应和计算疫苗学铺平了道路。这种免疫信息学在传染病研究中的重要性在使用的计算方法方面是多种多样的,但与宿主-病原体关系相关的共同特性是统一的。生物信息学方法还用于为未表征的基因分配功能,这些基因可以作为疫苗设计的候选基因,并且可以更好地将怀孕妇女纳入疫苗试验和计划。这篇综述的本质是深入了解需要关注新的计算、实验和计算驱动的实验方法来研究宿主-病原体相互作用,从而为其在疫苗开发中的应用提供理由。
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来源期刊
CiteScore
16.50
自引率
0.00%
发文量
7
审稿时长
16 weeks
期刊介绍: Immuno Targets and Therapy is an international, peer-reviewed open access journal focusing on the immunological basis of diseases, potential targets for immune based therapy and treatment protocols employed to improve patient management. Basic immunology and physiology of the immune system in health, and disease will be also covered.In addition, the journal will focus on the impact of management programs and new therapeutic agents and protocols on patient perspectives such as quality of life, adherence and satisfaction.
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