CAS Key Laboratory of Separation Science for Analytical Chemistry , Dalian Institute of Chemical Physics , Chinese Academy of Sciences , Dalian 116023 , China.
University of Chinese Academy of Sciences , Beijing 100049 , China.
ACS Sens. 2019 Feb 22;4(2):281-285. doi: 10.1021/acssensors.8b01466. Epub 2019 Jan 24.
An imidazolium-derived pyrene aggregation was developed to rapidly identify and quantify different bacteria species. When the nonemissive aggregates bound to the anionic bacteria surface, the sensor disassembled to turn on significant fluorescence. At the same time, ratiometric signals between pyrene monomer and excimer emission were controlled by different interactions with various bacteria surfaces. The resulted different fluorescent emission profiles then were obtained as fingerprints for various bacterial species. By converting emission profiles directly into output signals of two channels, fluorescence increase and ratiometric change, a two-dimensional analysis map was generated for bacteria identification. We demonstrated that our sensor rapidly identified 10 species of bacteria and 14 clinical isolated multidrug-resistant bacteria, and we determined their staining properties (Gram-positive or Gram-negative).
一种基于咪唑鎓的并苯聚集物被开发出来,用于快速识别和定量不同的细菌种类。当无荧光的聚集物与带负电荷的细菌表面结合时,传感器解体,从而产生显著的荧光。同时,由于与各种细菌表面的不同相互作用,芘单体和激基复合物发射之间的比率信号得到了控制。然后,得到的不同荧光发射图谱被用作各种细菌种类的指纹。通过将发射图谱直接转换为两个通道的输出信号,即荧光增强和比率变化,生成了用于细菌鉴定的二维分析图谱。我们证明,我们的传感器可以快速识别 10 种细菌和 14 种临床分离的多药耐药菌,并确定它们的染色特性(革兰氏阳性菌或革兰氏阴性菌)。