Department of Chemistry , Korea University , Seoul 02841 , Korea.
Department of Chemistry , Tulane University , New Orleans , Louisiana 70118 , United States.
Chem Rev. 2019 Aug 28;119(16):9657-9721. doi: 10.1021/acs.chemrev.8b00605. Epub 2019 Jul 15.
Calix[]arenes ( = 4, 5, 6, 8) are "chalicelike" phenol-based macrocycles that are among the most fascinating and highly studied scaffolds in supramolecular chemistry. This stems from the functional and tunable diversity at both their upper and lower rims, their preorganized nonpolar cavities and preorganized ion-binding sites, and their well-defined conformations. Conjugation of calixarene scaffolds with various fluorogenic groups has led to the development of smart fluorescent probes that have been utilized as molecular sensors, in bioimaging, for drug and gene delivery, in self-assembly/aggregation, and as smart materials. The fine-tuning and incorporation of different ligating sites in the calix[4]arene scaffold have produced numerous molecular sensors for cations, anions, and biomolecules. Moreover, the aqueous solubility of -sulfonatocalix[4]arenes has engendered their potential use in drug/gene delivery and enzymatic assays. In addition, because of their strong optical properties, fluorescent calix[4]arenes have been used to develop smart materials, including gels as well as nonlinear optical, organic light-emitting diode, and multiphoton materials. Finally, significant developments in the utility of fluorescent higher calixarenes have been made for bioapplications. This review critically summarizes the recent advances made in all of these different areas.
杯芳烃(= 4,5,6,8)是“杯状”的酚类大环化合物,是超分子化学中最引人关注和研究最多的支架之一。这源于其上下边缘的功能和可调多样性、其预组织的非极性空腔和预组织的离子结合位点,以及其明确的构象。将杯芳烃支架与各种荧光团偶联,导致了智能荧光探针的发展,这些探针已被用作分子传感器,用于生物成像、药物和基因传递、自组装/聚集以及智能材料。在杯[4]芳烃支架中精细调整和引入不同的配位位点,产生了许多用于阳离子、阴离子和生物分子的分子传感器。此外,-磺酸钠杯[4]芳烃的水溶性使其有可能用于药物/基因传递和酶测定。此外,由于其强光学性质,荧光杯[4]芳烃已被用于开发智能材料,包括凝胶以及非线性光学、有机发光二极管和多光子材料。最后,荧光高杯芳烃在生物应用中的用途取得了重大进展。这篇综述批判性地总结了在所有这些不同领域取得的最新进展。