Yin Hang, Cheng Qian, Bardelang David, Wang Ruibing
State Key Laboratory of Quality Research in Chinese Medicine, Institute of Chinese Medical Sciences, University of Macau, Taipa, Macau 999078, China.
CNRS, ICR, Aix Marseille Univ, 13013 Marseille, France.
JACS Au. 2023 Aug 28;3(9):2356-2377. doi: 10.1021/jacsau.3c00273. eCollection 2023 Sep 25.
Cucurbit[]uril (CB[]) macrocycles (especially CB[5] to CB[8]) have shown exceptional attributes since their discovery in 2000. Their stability, water solubility, responsiveness to several stimuli, and remarkable binding properties have enabled a growing number of biological applications. Yet, soon after their discovery, the challenge of their functionalization was set. Nevertheless, after more than two decades, a myriad of CB[] derivatives has been described, many of them used in cells or in vivo for advanced applications. This perspective summarizes key advances of this burgeoning field and points to the next opportunities and remaining challenges to fully express the potential of these fascinating macrocycles in biology and biomedical sciences.
葫芦脲(CB[])大环化合物(尤其是CB[5]至CB[8])自2000年被发现以来展现出了非凡的特性。它们的稳定性、水溶性、对多种刺激的响应性以及卓越的结合特性促成了越来越多的生物学应用。然而,在它们被发现后不久,其功能化的挑战便随之而来。尽管如此,经过二十多年,已经描述了无数种CB[]衍生物,其中许多被用于细胞或体内的先进应用。本综述总结了这一新兴领域的关键进展,并指出了下一个机遇以及充分发挥这些迷人的大环化合物在生物学和生物医学科学中的潜力所面临的剩余挑战。