Nano & Organic Synthesis Lab, Chemistry and Chemical Engineering Research Center of Iran, Pajoohesh Blvd., km 17, Karaj Hwy, Tehran, 14968-13151, Iran.
J Fluoresc. 2024 May;34(3):1279-1290. doi: 10.1007/s10895-023-03362-5. Epub 2023 Aug 1.
The fluorescence detection of ions and pharmaceutical effluents by using organic chemosensors is a valuable surrogate to the currently existing expensive analytical methods. In this regard, the design of multi-functional chemosensors to recognize desirable guests is of utmost importance. In this study, we first show that levofloxacin (LVO) is able to use as a fluorescent chemosensor for the detection of biologically important Cu (turn-off) and Fe (turn-on) ions via independent signal outputs in 100% aqueous buffer solutions. Next, using the reciprocal recognition of LVO and Fe provides a unique emission pattern for the detection of LVO. This approach exhibited a high specificity to LVO among various pharmaceutical samples, namely acetaminophen (AC), azithromycin (AZ), gemifloxacin (GEM) and ciprofloxacin (CIP) and also showed great anti-interference property in urine. The attractive features of this sensing system are availability, easy-to-use, high sensitivity (limit of detection = 18 nM for Cu, 22 nM for Fe and 0.12 nM for LVO), rapid response (5 s) with an excellent selectivity.
利用有机化学传感器对离子和药物废水进行荧光检测是对当前昂贵的分析方法的一种有价值的替代方法。在这方面,设计多功能化学传感器以识别理想的客体至关重要。在本研究中,我们首先表明左氧氟沙星(LVO)能够用作荧光化学传感器,通过在 100%水缓冲溶液中独立的信号输出来检测生物上重要的 Cu(关闭)和 Fe(打开)离子。接下来,利用 LVO 和 Fe 的相互识别为 LVO 的检测提供了独特的发射模式。这种方法在各种药物样品中对 LVO 表现出高度的特异性,即对乙酰氨基酚(AC)、阿奇霉素(AZ)、加替沙星(GEM)和环丙沙星(CIP),并且在尿液中也表现出很好的抗干扰性。该传感系统的吸引人的特点是可用性、易于使用、高灵敏度(Cu 的检测限=18 nM,Fe 的检测限=22 nM,LVO 的检测限=0.12 nM)、快速响应(5 s)和出色的选择性。