Oakland University, 146 Library Drive, Rochester, Michigan, 48309-4479, USA.
Department of Chemistry and Biochemistry, University of Windsor, 401 Sunset Avenue, Windsor, ON, N9B 3P4, Canada.
Analyst. 2022 May 17;147(10):2264-2271. doi: 10.1039/d1an02224e.
Kynurenic acid is a by-product of tryptophan metabolism in humans, with abnormal levels indicative of disease. There is a need for water-soluble receptors that selectively bind kynurenic acid, allowing for detection and quantification. We report here the high-affinity binding of kynurenic acid in aqueous media to a resorcinarene salt receptor decorated with four flexible naphthalene groups at the upper rim. Experimental results from H NMR, isothermal titration calorimetry, and electronic absorption and fluorescence spectroscopies all support high-affinity binding and selectivity for kynurenic acid over tryptophan. The measured binding constant ( = 1.46 ± 0.21 × 10 M) is one order of magnitude larger than that observed with other resorcinarene receptors. The present host-guest system can be employed for sensory recognition of kynurenic acid. Computational studies reveal the key role of a series of cooperative attractive intra- and inter-molecular interactions contributing to an optimal binding process in this system.
犬尿酸是人体色氨酸代谢的副产物,其水平异常表明存在疾病。因此需要能够与犬尿酸选择性结合的水溶性受体,以便进行检测和定量分析。本研究报告了在水相介质中,四个柔性萘基修饰的杯[4]芳烃盐受体对犬尿酸的高亲和性结合。来自核磁共振氢谱、等温滴定量热法、电子吸收和荧光光谱的实验结果均支持犬尿酸与色氨酸的高亲和性结合和选择性。测量得到的结合常数( = 1.46 ± 0.21 × 10 M)比其他杯芳烃受体观察到的结合常数大一个数量级。该主体-客体体系可用于犬尿酸的传感识别。计算研究揭示了一系列协同的分子内和分子间吸引力在该体系中对最佳结合过程的关键作用。