Swart Iris C, Van Gelder Willem, De Haan Cornelis A M, Bosch Berend-Jan, Oliveira Sabrina
Cell Biology, Neurobiology and Biophysics, Department of Biology, Faculty of Science, Utrecht University, Utrecht, Netherlands.
Virology Section, Infectious Diseases and Immunology Division, Department Biomolecular Health Sciences, Faculty Veterinary Medicine, Utrecht University, Utrecht, Netherlands.
Front Mol Biosci. 2024 May 9;11:1389548. doi: 10.3389/fmolb.2024.1389548. eCollection 2024.
The global impact of zoonotic viral outbreaks underscores the pressing need for innovative antiviral strategies, particularly against respiratory zoonotic RNA viruses. These viruses possess a high potential to trigger future epidemics and pandemics due to their high mutation rate, broad host range and efficient spread through airborne transmission. Recent pandemics caused by coronaviruses and influenza A viruses underscore the importance of developing targeted antiviral strategies. Single-domain antibodies (sdAbs), originating from camelids, also known as nanobodies or VHHs (Variable Heavy domain of Heavy chain antibodies), have emerged as promising tools to combat current and impending zoonotic viral threats. Their unique structure, coupled with attributes like robustness, compact size, and cost-effectiveness, positions them as strong alternatives to traditional monoclonal antibodies. This review describes the pivotal role of sdAbs in combating respiratory zoonotic viruses, with a primary focus on enhancing sdAb antiviral potency through optimization techniques and diverse administration strategies. We discuss both the promises and challenges within this dynamically growing field.
人畜共患病毒爆发的全球影响凸显了创新抗病毒策略的迫切需求,尤其是针对呼吸道人畜共患RNA病毒的策略。由于这些病毒具有高突变率、广泛的宿主范围以及通过空气传播的高效传播能力,它们极有可能引发未来的流行病和大流行。由冠状病毒和甲型流感病毒引起的近期大流行凸显了制定针对性抗病毒策略的重要性。源自骆驼科动物的单域抗体(sdAbs),也称为纳米抗体或VHH(重链抗体的可变重域),已成为应对当前和即将到来的人畜共患病毒威胁的有前途的工具。它们独特的结构,再加上诸如稳健性、紧凑尺寸和成本效益等特性,使它们成为传统单克隆抗体的有力替代品。本综述描述了单域抗体在对抗呼吸道人畜共患病毒中的关键作用,主要侧重于通过优化技术和多种给药策略提高单域抗体的抗病毒效力。我们讨论了这个动态发展领域中的前景和挑战。