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A Non-invasive Method for the Determination of Liquid Injectables by Raman Spectroscopy

机译:拉曼光谱法测定液体注射剂的非侵入性方法

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摘要

Drug safety has become a very important subject, and more countries have joined in the fight against counterfeit drugs. This study demonstrated a non-invasive Raman spectroscopy method that could be utilized for screening liquid injectable drugs for spurious/falsely-labeled/falsified/counterfeit medical products (SFFCs). Two problems were solved to remove the blocks in identification and quantitation: one problem was the weak API signal extraction from the non-invasive Raman spectra and the other was the problem of Raman absolute measurement. Principal component analysis (PCA) and classical least square (CLS) algorithms were performed to establish the models. Water was chosen as the “internal standard” to normalize the spectra to solve the problem of Raman absolute measurement. The results showed that the 11 positive samples and 66 negative samples were all well identified with a threshold of 0.95. One of the positive samples contained the excipient propylene glycol, which was identified successfully at the same time. The accuracy of quantitative results was approximately 5% for doxofylline liquid injectables and about 10% for the low-concentration and big glass bottle-containers of Levofloxacin Lactate and Sodium Chloride Injections as compared to the results using an HPLC method, this is satisfactory for fast screening of SFFCs. In conclusion, with the development of a database of identification and quantitation models, this method may determine liquid injectable drugs in a fast and non-invasive way and become one of the most powerful weapons against SFFCs.>Graphical Abstract
机译:毒品安全已成为一个非常重要的主题,越来越多的国家加入了打击假药的斗争。这项研究证明了一种非侵入性的拉曼光谱方法,可用于筛查伪造/错误标记/伪造/假冒医疗产品(SFFC)的液体注射药物。解决了两个问题以消除鉴定和定量中的障碍:一个问题是从非侵入性拉曼光谱中提取API信号较弱,另一个是拉曼绝对测量问题。执行主成分分析(PCA)和经典最小二乘(CLS)算法以建立模型。选择水作为“内标”以对光谱进行归一化,以解决拉曼绝对测量的问题。结果表明11个阳性样品和66个阴性样品均被很好地鉴定,阈值为0.95。阳性样品之一包含赋形剂丙二醇,该赋形剂同时被成功鉴定。与使用HPLC方法的结果相比,多索茶碱液体注射剂的定量结果的准确性约为5%,而对于左氧氟沙星乳酸盐和氯化钠注射液的低浓度和大玻璃瓶装容器而言,定量结果的准确性约为10%,这对于快速测定是令人满意的SFFC的筛选。总之,随着鉴定和定量模型数据库的开发,该方法可以快速,无创的​​方式确定液体注射药物,并成为针对SFFC的最强大武器之一。<!-fig ft0-> <!-fig @ position =“ anchor” mode =文章f4-> <!-fig mode =“ anchored” f5-> >图形摘要<!-fig / graphic | fig / alternatives / graphic mode =“ anchored” m1-> <!-标题a7->ᅟ

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