首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Simple transmission Raman measurements using a single multivariate model for analysis of pharmaceutical samples contained in capsules of different colors
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Simple transmission Raman measurements using a single multivariate model for analysis of pharmaceutical samples contained in capsules of different colors

机译:使用单个多元模型对不同颜色的胶囊中包含的药物样品进行简单的透射拉曼测量

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摘要

Direct transmission Raman measurements for analysis of pharmaceuticals in capsules are advantageous since they can be used to determine active pharmaceutical ingredient (API) concentrations in a non-destructive manner and with much less fluorescence background interference from the capsules themselves compared to conventional back-scattering measurements. If a single calibration model such as developed from spectra simply collected in glass vials could be used to determine API concentrations of samples contained in capsules of different colors rather than constructing individual models for each capsule color, the utility of transmission measurements would be further enhanced. To evaluate the feasibility, transmission Raman spectra of binary mixtures of ambroxol and lactose were collected in a glass vial and a partial least squares (PLS) model for the determination of ambroxol concentration was developed. Then, the model was directly applied to determine ambroxol concentrations of samples contained in capsules of 4 different colors (blue, green, white and yellow). Although the prediction performance was slightly degraded when the samples were placed in blue or green capsules, due to the presence of weak fluorescence, accurate determination of ambroxol was generally achieved in all cases. The prediction accuracy was also investigated when the thickness of the capsule was varied.
机译:直接透射拉曼测量用于胶囊中药物的分析是有优势的,因为与传统的反向散射测量相比,它们可用于以无损方式确定活性药物成分(API)的浓度,并且胶囊本身产生的荧光背景干扰更少。如果可以将单个校准模型(例如从仅收集在玻璃小瓶中的光谱中开发的模型)用于确定包含在不同颜色的胶囊中的样品的API浓度,而不是针对每种胶囊颜色构建单独的模型,则透射测量的实用性将进一步提高。为了评估可行性,在玻璃小瓶中收集了氨溴索和乳糖的二元混合物的透射拉曼光谱,并开发了用于测定氨溴索浓度的偏最小二乘(PLS)模型。然后,将模型直接应用于确定4种不同颜色(蓝色,绿色,白色和黄色)的胶囊中所含样品中氨溴索的浓度。尽管将样品放入蓝色或绿色胶囊中时,预测性能会稍有下降,但由于存在弱荧光,因此在所有情况下通常都能准确测定氨溴索。当胶囊的厚度变化时,还研究了预测精度。

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