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拉曼高光谱多组分分析检测抗疟片瑞美特的假冒伪劣产品。

Counterfeit and Substandard Test of the Antimalarial Tablet Riamet by Means of Raman Hyperspectral Multicomponent Analysis.

机构信息

Leibniz Institute of Photonic Technology, 07745 Jena, Germany.

Friedrich Schiller University, Institute of Physical Chemistry, 07745 Jena, Germany.

出版信息

Molecules. 2019 Sep 5;24(18):3229. doi: 10.3390/molecules24183229.

Abstract

The fight against counterfeit pharmaceuticals is a global issue of utmost importance, as failed medication results in millions of deaths every year. Particularly affected are antimalarial tablets. A very important issue is the identification of substandard tablets that do not contain the nominal amounts of the active pharmaceutical ingredient (API), and the differentiation between genuine products and products without any active ingredient or with a false active ingredient. This work presents a novel approach based on fiber-array based Raman hyperspectral imaging to qualify and quantify the antimalarial APIs lumefantrine and artemether directly and non-invasively in a tablet in a time-efficient way. The investigations were carried out with the antimalarial tablet Riamet and self-made model tablets, which were used as examples of counterfeits and substandard. Partial least-squares regression modeling and density functional theory calculations were carried out for quantification of lumefantrine and artemether and for spectral band assignment. The most prominent differentiating vibrational signatures of the APIs were presented.

摘要

打击假药是一个非常重要的全球性问题,因为每年有数百万人因用药失败而死亡。抗疟药片尤其受到影响。一个非常重要的问题是识别不含有标称量的活性药物成分 (API) 的劣质药片,以及区分正品和无活性成分或含有虚假活性成分的产品。这项工作提出了一种新的方法,基于光纤阵列拉曼高光谱成像,以直接、非侵入性的方式在药片中原位快速定性和定量抗疟药 API 本芴醇和青蒿素。研究使用抗疟药 Riamet 药片和自制模型药片进行,这些药片被用作假冒和劣质药品的例子。进行了偏最小二乘回归建模和密度泛函理论计算,以定量本芴醇和青蒿素,并进行光谱波段分配。提出了 API 最显著的区分振动特征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ce52/6767462/3dfc81f77ee1/molecules-24-03229-g001.jpg

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