Xiao Wei, Zhang Qing, You Dong Hui, Li Nian Bing, Zhou Guang Ming, Luo Hong Qun
Key Laboratory of Luminescence Analysis and Molecular Sensing (Southwest University), Ministry of Education, School of Chemistry and Chemical Engineering, Southwest University, Chongqing 400715, PR China.
Key Laboratory of Luminescence Analysis and Molecular Sensing (Southwest University), Ministry of Education, School of Chemistry and Chemical Engineering, Southwest University, Chongqing 400715, PR China.
Bioorg Chem. 2024 Dec;153:107913. doi: 10.1016/j.bioorg.2024.107913. Epub 2024 Oct 24.
Sulfur dioxide (SO) and viscosity play important roles in living organisms, and abnormal levels of them are associated with many diseases. Hence, a bifunctional fluorescence probe (E)-3-(2-(4-(4-(4-(6-fluoro-3-hydroxy-4-oxo-4H-chromen-2-yl)benzoyl)piperazin-1-yl)styryl)benzo-[d]thiazol-3-ium-3-yl)propane-1-sulfonate (HFBT) with fluorescence resonance energy transfer (FRET) properties was successfully constructed by using 3-hydroxyflavonol as the energy donor and benzothiazole sulphonate derivatives as the energy acceptor, and it can be used for the detection of SO derivatives (HSO/HSO) and viscosity. HFBT exhibits a large Stokes shift (245 nm), high resonance energy transfer efficiency (95.56 %), and excellent selectivity, anti-interference and low limit of detection (LOD = 0.057 μM) for HSO. The fluorescence intensity of HFBT at 596 nm gradually increases with the increase of viscosity. Interestingly, a visual HSO detection platform was successfully constructed and applied to the quantitative detection of HSO in food. Additionally, HFBT was successfully applied to imaging endogenous and exogenous HSO in cells. The successful development of HFBT provides an effective tool for the detection and imaging of HSO in food and cells.
二氧化硫(SO)和粘度在生物体内起着重要作用,它们的异常水平与许多疾病相关。因此,以3-羟基黄酮醇为能量供体、苯并噻唑磺酸盐衍生物为能量受体,成功构建了一种具有荧光共振能量转移(FRET)特性的双功能荧光探针(E)-3-(2-(4-(4-(4-(6-氟-3-羟基-4-氧代-4H-色烯-2-基)苯甲酰基)哌嗪-1-基)苯乙烯基)苯并[d]噻唑-3-鎓-3-基)丙烷-1-磺酸盐(HFBT),它可用于检测SO衍生物(HSO/HSO)和粘度。HFBT具有较大的斯托克斯位移(245 nm)、较高的共振能量转移效率(95.56%),对HSO具有优异的选择性、抗干扰能力和低检测限(LOD = 0.057 μM)。HFBT在596 nm处的荧光强度随粘度的增加而逐渐增强。有趣的是,成功构建了一个可视化的HSO检测平台,并将其应用于食品中HSO的定量检测。此外,HFBT还成功应用于细胞内源性和外源性HSO的成像。HFBT的成功开发为食品和细胞中HSO的检测和成像提供了一种有效的工具。