El Salamouni Nehad S, Cater Jordan H, Spenkelink Lisanne M, Yu Haibo
Molecular Horizons and School of Chemistry and Molecular Bioscience, University of Wollongong, Australia.
ARC Centre of Excellence in Quantum Biotechnology, University of Wollongong, Australia.
FEBS Open Bio. 2025 Feb;15(2):236-253. doi: 10.1002/2211-5463.13850. Epub 2024 Jun 19.
Nanobodies, the smallest functional antibody fragment derived from camelid heavy-chain-only antibodies, have emerged as powerful tools for diverse biomedical applications. In this comprehensive review, we discuss the structural characteristics, functional properties, and computational approaches driving the design and optimisation of synthetic nanobodies. We explore their unique antigen-binding domains, highlighting the critical role of complementarity-determining regions in target recognition and specificity. This review further underscores the advantages of nanobodies over conventional antibodies from a biosynthesis perspective, including their small size, stability, and solubility, which make them ideal candidates for economical antigen capture in diagnostics, therapeutics, and biosensing. We discuss the recent advancements in computational methods for nanobody modelling, epitope prediction, and affinity maturation, shedding light on their intricate antigen-binding mechanisms and conformational dynamics. Finally, we examine a direct example of how computational design strategies were implemented for improving a nanobody-based immunosensor, known as a Quenchbody. Through combining experimental findings and computational insights, this review elucidates the transformative impact of nanobodies in biotechnology and biomedical research, offering a roadmap for future advancements and applications in healthcare and diagnostics.
纳米抗体是源自骆驼科仅重链抗体的最小功能性抗体片段,已成为用于多种生物医学应用的强大工具。在这篇全面的综述中,我们讨论了驱动合成纳米抗体设计和优化的结构特征、功能特性以及计算方法。我们探索了它们独特的抗原结合域,强调了互补决定区在靶标识别和特异性中的关键作用。本综述进一步从生物合成角度强调了纳米抗体相对于传统抗体的优势,包括它们的小尺寸、稳定性和溶解性,这使其成为诊断、治疗和生物传感中经济地捕获抗原的理想候选者。我们讨论了纳米抗体建模、表位预测和亲和力成熟的计算方法的最新进展,揭示了它们复杂的抗原结合机制和构象动力学。最后,我们研究了一个直接的例子,即如何实施计算设计策略来改进一种基于纳米抗体的免疫传感器,即淬灭体。通过结合实验结果和计算见解,本综述阐明了纳米抗体在生物技术和生物医学研究中的变革性影响,为医疗保健和诊断领域的未来进展和应用提供了路线图。