Academy for Advanced Interdisciplinary Studies , Southern University of Science and Technology , Nanshan District, Shenzhen 518055 , China.
Department of Chemistry , Southern University of Science and Technology , Nanshan District, Shenzhen 518055 , China.
Anal Chem. 2019 Aug 20;91(16):10390-10394. doi: 10.1021/acs.analchem.9b01654. Epub 2019 Aug 6.
Demand for rapid quantitation of polyions such as heparin and protamine are ever growing. Previous paper-based and polymeric optical and electrochemical sensing devices required more than several hours for signal stabilization. Therefore, signals were acquired with fixed sample exposure time modes, which was time-consuming and technically demanding. We present here for the first time the optical detection of protamine and heparin in equilibrium mode with emulsified nanospheres. The method significantly shortens the response time from hours to typically less than 10 s and offers tunable, sensitive, and colorimetric detection within the clinically relevant range (10 to 100 mg/L) for heparin. The improved characteristics are attributable to the small size of the nanospheres (ca. 50 nm in diameter) as well as the reversible recognition at the nanoscale liquid-liquid interface. Detection of the anticoagulant heparin was also successfully demonstrated in human blood serum background.
对于肝素和鱼精蛋白等多离子的快速定量检测的需求日益增长。以前基于纸张和聚合体的光学和电化学传感设备需要数小时才能稳定信号。因此,信号采用固定的样本暴露时间模式进行采集,这种模式既耗时又需要较高的技术要求。我们首次在平衡模式下利用乳化纳米球实现了对鱼精蛋白和肝素的光学检测。该方法将响应时间从数小时显著缩短至通常不到 10 秒,并在临床相关范围内(10 至 100 毫克/升)提供可调谐、灵敏且比色检测。这种改进的特性归因于纳米球的小尺寸(约 50 纳米直径)以及纳米级液-液界面的可逆识别。在人血清背景下,我们还成功地检测了抗凝剂肝素。