Wu Luling, Gardiner Jordan E, Kumawat Lokesh K, Han Hai-Hao, Guo Ruiying, Li Xin, He Xiao-Peng, Elmes Robert B P, Sedgwick Adam C, Bull Steven D, James Tony D
Department of Chemistry, University of Bath Bath BA2 7AY UK
Department of Chemistry, Maynooth University Human Health Institute, Maynooth University, National University of Ireland Maynooth, County Kildare Ireland
RSC Adv. 2019 Aug 27;9(45):26425-26428. doi: 10.1039/c9ra04908h. eCollection 2019 Aug 19.
With this research we set out to develop a number of coumarin-based 'AND' logic fluorescence probes that were capable of detecting a chosen analyte in the presence of HCys. Probe JEG-CAB was constructed by attaching the ONOO reactive unit, benzyl boronate ester, to a HCys/Cys reactive fluorescent probe, CAH. Similarly, the core unit CAH was functionalised with the nitroreductase (NTR) reactive -nitrobenzyl unit to produce probe JEG-CAN. Both, JEG-CAB and JEG-CAN exhibited a significant fluorescence increase when exposed to either HCys and ONOO (JEG-CAB) or HCys and NTR (JEG-CAN) thus demonstrating their effectiveness to function as AND logic gates for HCys and a chosen analyte.
通过这项研究,我们着手开发一系列基于香豆素的“与”逻辑荧光探针,这些探针能够在存在高半胱氨酸(HCys)的情况下检测选定的分析物。探针JEG-CAB是通过将ONOO反应单元苄基硼酸酯连接到HCys/半胱氨酸(Cys)反应性荧光探针CAH上构建而成的。同样,核心单元CAH用硝基还原酶(NTR)反应性的对硝基苄基单元进行功能化,以产生探针JEG-CAN。当暴露于HCys和ONOO(JEG-CAB)或HCys和NTR(JEG-CAN)时,JEG-CAB和JEG-CAN均表现出显著的荧光增强,从而证明了它们作为HCys和选定分析物的“与”逻辑门的有效性。