Ultrahigh‐Affinity Molecular Recognition in Water and Biomedical Applications
Abstract
Abstract Aqueous‐phase molecular recognition pairs with ultrahigh binding affinity hold immense value in biotechnology and chemical applications. However, the rational design of synthetic pairs with such exceptional binding strength has long remained a significant challenge, with notable progress achieved only in recent years. In this minireview, we begin by defining the term “ultrahigh‐affinity” through a comprehensive analysis of available data on aqueous‐phase molecular recognition by water‐soluble macrocyclic hosts. Based on this foundation, we provide a detailed overview of the latest advancements in various classes of ultrahigh‐affinity receptors, extracting key design principles that drive their remarkable performance. We further highlight emerging applications of ultrahigh‐affinity molecular pairs in biomedical materials, spanning bioorthogonal chemistry, biosensing, bioimaging, drug delivery, and toxin sequestration. These examples underscore the transformative potential of ultrahigh‐affinity recognition in addressing real‐world biomedical challenges. Finally, we offer a forward‐looking perspective on the future of this rapidly evolving field, exploring potential directions for designing more diverse and functional ultrahigh‐affinity molecular recognition tools. By bridging the gap between fundamental science and practical applications, this minireview aims to inspire the development of next‐generation molecular recognition systems and foster deeper integration between supramolecular chemistry and biomedical materials, paving the way for innovative solutions to pressing biomedical needs.
Article Details
Authors (6)
Fang‐Yuan Chen
College of Chemistry State Key Laboratory of Elemento‐Organic Chemistry Key Laboratory of Functional Polymer Materials (Ministry of Education) Frontiers Science Center for New Organic Matter Collaborative Innovation Center of Chemical Science and Engineering Nankai University Tianjin 300071 China
Rong Fu
Optogenetics & Synthetic Biology Interdisciplinary Research Center, Shanghai Frontiers Science Center of Optogenetic Techniques for Cell Metabolism, School of Pharmacy, East China University of Science and Technology, 130 Mei Long Road, Shanghai 200237, China
Zhihao Gong
Academy of Interdisciplinary Studies on Intelligent Molecules, Tianjin Key Laboratory of Structure and Performance for Functional Molecules, College of Chemistry, Tianjin Normal University 3 , Tianjin 300387,
Chunju Li
Academy of Interdisciplinary Studies on Intelligent Molecules, Tianjin Key Laboratory of Structure and Performance for Functional Molecules, College of Chemistry
Dong‐Sheng Guo
College of Chemistry, State Key Laboratory of Medicinal Chemical Biology Key Laboratory of Functional Polymer Materials (Ministry of Education) Frontiers Science Center For New Organic Matter Collaborative Innovation Center of Chemical Science and Engineering (Tianjin) Nankai University Tianjin China
Kang Cai
College of Chemistry, State Key Laboratory of Elemento-Organic Chemistry, Frontiers Science Center for New Organic Matter, Nankai University, 94 Weijin Road, Nankai District, Tianjin 300071, China