Zhang Yafeng, Wang Huizhen, Yu Hu, Sun Xiaoxia
Jiangxi Key Laboratory of Organic Chemistry, Jiangxi Science and Technology Normal University Nanchang 330013 China
College of Chemistry, Nanchang University Nanchang China.
RSC Adv. 2022 Apr 19;12(19):11967-11973. doi: 10.1039/d2ra00803c. eCollection 2022 Apr 13.
Phenylalanine an essential aromatic amino acid for humans and animals, cannot be synthesized by humans and animals on their own. However, it synthesizes important neurotransmitters and hormones in the body and is involved in gluconeogenesis and lipid metabolism. Moreover, the two opposite configurations of phenylalanine have different activities. For example, l-phenylalanine is a biologically active optical isomer involved in crucial biological processes, the lack of which will lead to intellectual disability, while d-phenylalanine only acts as a chiral intermediate. In this research, an H-BINOL chiral fluorescent sensor modified with 1,2,3-triazole was synthesized in high yield (95%) by nucleophilic substitution and click reaction. The chiral fluorescent sensor showed high enantioselectivity toward phenylalanine. l-Phenylalanine enhanced the fluorescence response of the probe significantly, while d-phenylalanine had no obvious fluorescence response change. The enantioselective fluorescence enhancement ratio [ef = ( - )/( - ), where is the fluorescence of the sensor without amino acids] for the highest fluorescence intensity at 20.0 equivalents of amino acids was 104.48. In this way, the probe could be used to identify and differentiate different configurations of phenylalanine.
苯丙氨酸是人和动物必需的芳香族氨基酸,人和动物自身无法合成。然而,它在体内合成重要的神经递质和激素,并参与糖异生和脂质代谢。此外,苯丙氨酸的两种相反构型具有不同的活性。例如,L-苯丙氨酸是一种参与关键生物过程的具有生物活性的旋光异构体,缺乏它会导致智力残疾,而D-苯丙氨酸仅作为手性中间体。在本研究中,通过亲核取代和点击反应高产率(95%)合成了一种用1,2,3-三唑修饰的H-BINOL手性荧光传感器。该手性荧光传感器对苯丙氨酸表现出高对映选择性。L-苯丙氨酸显著增强了探针的荧光响应,而D-苯丙氨酸的荧光响应没有明显变化。在20.0当量氨基酸时,最高荧光强度的对映选择性荧光增强率[ef = ( - )/( - ),其中 是不含氨基酸的传感器的荧光]为104.48。通过这种方式,该探针可用于识别和区分苯丙氨酸的不同构型。