Xu Jiawei, Cao Fangling, Lu Chenxiang, Song Zhe, Dai Zhenya
Department of Medicinal Chemistry, School of Pharmacy, China Pharmaceutical University 24 Tongjiaxiang Nanjing 210009 P. R. China.
Department of Pharmaceutical Analysis, School of Science, China Pharmaceutical University 24 Tongjiaxiang Nanjing 210009 P. R. China.
RSC Adv. 2024 Jan 9;14(3):1970-1976. doi: 10.1039/d3ra07890f. eCollection 2024 Jan 3.
Arginine (Arg) plays a crucial and multifaceted role in various biological processes, encompassing cell division, wound healing, immune system modulation, and plant signaling. This study introduced a pair of novel chiral fluorescent probes, ()-5 and ()-5, constructed upon the BINOL framework, which exhibited enantiomeric selectivity and sensitivity to d-Arg/l-Arg in fluorescence experiments. These probes offered a simple, rapid, low-cost, and highly selective method for detecting Arg enantiomers, thereby providing a highly sensitive approach for their qualitative and quantitative analysis. The enantioselective fluorescence enhancement ratios {ef = [( - )/( - ) = Δ/Δ]} of ()-5 and ()-5 to Arg were 1694 and 5163, respectively. Moreover, the probes demonstrated the capability to detect the concentration of d-Arg and l-Arg with a limit of detection of 4.84 × 10 M and 3.35 × 10 M, respectively, as well as determine the enantiomeric excess. These probes exhibited high chemical selectivity and enantioselectivity, enabling the identification of different configurations of Arg, quantification of Arg concentrations, and determination of the enantiomeric composition of Arg. This study provides valuable insights for the development of sensitive and selective chiral molecular detection methods, significantly advancing our comprehension of the relationship between Arg concentration and probe fluorescence response.
精氨酸(Arg)在多种生物过程中发挥着至关重要且多方面的作用,包括细胞分裂、伤口愈合、免疫系统调节和植物信号传导。本研究引入了一对基于联萘酚(BINOL)骨架构建的新型手性荧光探针,()-5和()-5,它们在荧光实验中对d-Arg/l-Arg表现出对映体选择性和敏感性。这些探针为检测精氨酸对映体提供了一种简单、快速、低成本且高度选择性的方法,从而为其定性和定量分析提供了一种高灵敏度的方法。()-5和()-5对精氨酸的对映选择性荧光增强比率{ef = [( - )/( - ) = Δ/Δ]}分别为1694和5163。此外,这些探针能够分别以4.84×10 M和3.35×10 M的检测限检测d-Arg和l-Arg的浓度,并确定对映体过量。这些探针表现出高化学选择性和对映选择性,能够识别精氨酸的不同构型、定量精氨酸浓度并确定精氨酸的对映体组成。本研究为开发灵敏且选择性的手性分子检测方法提供了有价值的见解,显著推进了我们对精氨酸浓度与探针荧光响应之间关系的理解。