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使用 3-羧酸基聚吡咯的 3D 聚合结构选择性检测叶酸。

Selective Detection of Folic Acid Using 3D Polymeric Structures of 3-Carboxylic Polypyrrole.

机构信息

Analytical Chemistry Department, Faculty of Pharmacy, Iuliu Haţieganu University of Medicine and Pharmacy, 4 Louis Pasteur St., 400349 Cluj-Napoca, Romania.

National Institute for Research and Development of Isotopic and Molecular Technologies, 67-103 Donat St., 400293 Cluj-Napoca, Romania.

出版信息

Sensors (Basel). 2020 Apr 18;20(8):2315. doi: 10.3390/s20082315.

Abstract

The detection of folic acid in biological samples or pharmaceutical products is of great importance due to its implications in the biological functions of the human body, along with the development and growth of the fetus. The deficiency of folic acid can be reversed by the intake of different pharmaceutical formulations or alimentary products fortified with this molecule. The elaboration of sensing platforms represents a continuous work in progress, a task in which the use of conductive polymers modified with different functionalities represents one of the outcoming strategies. The possibility of manipulating their morphology with the use of templates or surfactants represents another advantage. A sensing platform based on carboxylic functionalized polypyrrole was synthesized via the electrochemical approach in the presence of a polymeric surfactant on a graphite-based surface. The sensor was able to detect the folic acid from 2.5 μM to 200 μM with a calculated limited of detection of 0.8 μM. It was employed for the detection of the analyte from commercial human serum and pharmaceutical products with excellent recovery rates. The results were double checked using an optimized spectrophotometric procedure that confirmed furthermore the performances of the sensor related to real samples assessment.

摘要

由于叶酸在人体的生物学功能以及胎儿的发育和生长中的重要作用,对生物样品或药物产品中的叶酸进行检测具有重要意义。叶酸缺乏可以通过摄入含有这种分子的不同药物制剂或强化食品来逆转。传感平台的开发是一个持续进行的工作,在这个任务中,使用具有不同功能的导电聚合物进行修饰是一种新兴策略。使用模板或表面活性剂来操纵其形态是另一个优势。本工作通过在基于石墨的表面上使用聚合表面活性剂,通过电化学方法在存在聚合表面活性剂的情况下合成了羧酸功能化聚吡咯基传感平台。该传感器能够在 2.5 μM 至 200 μM 的范围内检测叶酸,计算出的检测限为 0.8 μM。它被用于从商业人血清和药物产品中检测分析物,回收率非常高。使用优化的分光光度法对结果进行了双重检查,进一步证实了传感器在实际样品评估方面的性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9811/7219238/516bbabda39b/sensors-20-02315-g001.jpg

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