Department of Chemistry, University of Bath, Bath, BA2 7AY, UK.
Chem Commun (Camb). 2018 Jul 26;54(61):8466-8469. doi: 10.1039/c8cc04316g.
Traditionally, fluorescence probes have focused on the detection of a single biomarker for a specific process. In this work, we set out to develop a number of fluorescence probes that enable the detection of a chosen analyte in the presence of reactive oxygen/nitrogen species (ROS/RNS). These fluorescence probes when activated result in the formation of the highly fluorescent pink dye, resorufin. Therefore, we have labelled these fluorescent probes as 'Pinkments'. Our first 'Pinkment' was shown to detect biologically relevant concentrations of ONOO- and have an excellent selectivity against other ROS/RNS. Pinkment-OH was developed to provide a core unit which could be easily functionalised to produce a range of 'AND' based fluorescence probes for the detection of ROS/RNS and a second analyte. For proof of concept, we synthesised Pinkment-OTBS and Pinkment-OAc. These 'AND'-based probes were successfully shown to detect ROS/RNS and F- or esterase, respectively.
传统上,荧光探针主要集中于对单个生物标志物进行特定过程的检测。在这项工作中,我们致力于开发一系列荧光探针,使其能够在活性氧/氮物种(ROS/RNS)存在的情况下检测到所选分析物。这些荧光探针在被激活后会形成高度荧光的粉红色染料,即 Resorufin。因此,我们将这些荧光探针标记为“Pinkments”。我们的第一个“Pinkment”被证明可以检测到具有生物学意义的 ONOO-浓度,并且对其他 ROS/RNS 具有极好的选择性。Pinkment-OH 的开发提供了一个核心单元,该单元可以很容易地进行功能化,以产生一系列用于检测 ROS/RNS 和第二种分析物的基于“AND”的荧光探针。为了验证概念,我们合成了 Pinkment-OTBS 和 Pinkment-OAc。这些基于“AND”的探针分别成功地显示出对 ROS/RNS 和 F-或酯酶的检测。