Leveraging artificial intelligence in vaccine development: A narrative review

反向疫苗学 重新调整用途 计算机科学 基石 杠杆(统计) 人工智能 表位 数据科学 医学 生物 抗原 免疫学 艺术 生态学 视觉艺术
作者
David B. Olawade,Jennifer Teke,Oluwaseun Fapohunda,Kusal Weerasinghe,Sunday O. Usman,Abimbola O. Ige,Aanuoluwapo Clement David-Olawade
出处
期刊:Journal of Microbiological Methods [Elsevier BV]
卷期号:224: 106998-106998 被引量:15
标识
DOI:10.1016/j.mimet.2024.106998
摘要

Vaccine development stands as a cornerstone of public health efforts, pivotal in curbing infectious diseases and reducing global morbidity and mortality. However, traditional vaccine development methods are often time-consuming, costly, and inefficient. The advent of artificial intelligence (AI) has ushered in a new era in vaccine design, offering unprecedented opportunities to expedite the process. This narrative review explores the role of AI in vaccine development, focusing on antigen selection, epitope prediction, adjuvant identification, and optimization strategies. AI algorithms, including machine learning and deep learning, leverage genomic data, protein structures, and immune system interactions to predict antigenic epitopes, assess immunogenicity, and prioritize antigens for experimentation. Furthermore, AI-driven approaches facilitate the rational design of immunogens and the identification of novel adjuvant candidates with optimal safety and efficacy profiles. Challenges such as data heterogeneity, model interpretability, and regulatory considerations must be addressed to realize the full potential of AI in vaccine development. Integrating emerging technologies, such as single-cell omics and synthetic biology, promises to enhance vaccine design precision and scalability. This review underscores the transformative impact of AI on vaccine development and highlights the need for interdisciplinary collaborations and regulatory harmonization to accelerate the delivery of safe and effective vaccines against infectious diseases.
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