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A Molecular Imprinted Polymer as a Flow-Through Optical Sensor for Oxazepam

机译:分子印迹聚合物作为奥沙西m的流通光学传感器

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A flow-through optosensing system for oxazepam recognition with fluorescence detection was performed by means of a molecular imprinted polymer based on its acid hydrolysis product, 2-amino-5-chlorobenzophenone. The synthesis was conducted via a noncovalent imprinting methodology, using methacrylic acid as a functional monomer and ethylene glycol dimethacrylate as a cross-linking agent. Hydrolysis (types and concentration of acids), polymer retention capacity, binding properties, and elution (selectivity and reversibility) conditions were optimized. The selected molecular imprinted polymer had a molar ratio composition of 1  6  45 (template  functional monomer  cross-linker). The proposed method was applied to the determination of oxazepam in a pharmaceutical formulation. External standard calibration, standard additions calibration, and Youden’s calibration were carried out in order to evaluate constant and proportional errors due to the matrix. The developed metabolite-based recognition system for benzodiazepines is an innovative procedure that could be followed in routine and quality control assays.
机译:通过基于其酸水解产物2-氨基-5-氯二苯甲酮的分子印迹聚合物,进行了带有荧光检测的奥沙西m识别的流通光敏系统。通过非共价压印方法进行合成,使用甲基丙烯酸作为功能单体,并使用乙二醇二甲基丙烯酸酯作为交联剂。优化了水解(酸的类型和浓度),聚合物保留能力,结合性能和洗脱(选择性和可逆性)条件。所选的分子印迹聚合物的摩尔比组成为1 6 45(模板官能单体交联剂)。该方法用于药物制剂中奥沙西m的测定。进行了外部标准校准,标准添加校准和Youden校准,以评估由于基质引起的常数和比例误差。为苯二氮卓开发的基于代谢物的识别系统是一种创新方法,可以在常规和质量控制测定中遵循。

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