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Molecularly imprinted micelles for fluorescent sensing of nonsteroidal anti-inflammatory drugs (NSAIDs)

机译:用于非甾体抗炎药的荧光感测的分子印迹胶束(NSAIDs)

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摘要

Nonsteroidal anti-inflammatory drugs (NSAIDs) are widely used over-the-counter drugs and their uncontrolled disposal is a significant environmental concern. Although their fluorescent sensing is a desirable method of detection for its sensitivity and simplicity, the structural similarity of the drugs makes the design of selective sensors highly challenging. A thiourea-based fluorescent functional monomer was identified in this work to enable highly efficient synthesis of molecularly imprinted nanoparticle (MINP) sensors for NSAIDs such as Indomethacin or Tolmetin. Micromolar binding affinities were obtained in aqueous solution, with binding selectivities comparable to those reported for polyclonal antibodies. The detection limit was similar to 50 ng/mL in aqueous solution, and common carboxylic acids such as acetic acid, benzoic acid, and citric acid showed negligible interference.
机译:非甾体抗炎药(NSAIDS)被广泛使用过度抗议药,其不受控制的处置是一个重要的环境问题。虽然它们的荧光感测是一种理想的检测方法,但药物的结构相似性使得选择性传感器的设计具有高度挑战性。在这项工作中鉴定了一种基于硫脲的荧光官能单体,以使得能够高效地合成用于NSAID的分子印迹纳米粒子(MINP)传感器,例如吲哚美辛或耐滴黄素。在水溶液中得到微摩尔结合亲和力,其具有与多克隆抗体报道的那些相当的结合选择性。检测极限与水溶液中的50ng / mL类似,并且常见的羧酸如乙酸,苯甲酸和柠檬酸显示出可忽略不计的干扰。

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