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用于测定共同配制的盐酸利多卡因和硝酸咪康唑以及一种内分泌干扰物防腐剂和潜在杂质的绿色色谱方法。

Green chromatographic methods for determination of co-formulated lidocaine hydrochloride and miconazole nitrate along with an endocrine disruptor preservative and potential impurity.

作者信息

Ashour Esraa S, Hegazy Maha A, Al-Alamein Amal M Abou, El-Sayed Ghada M, Ghoniem Nermine S

机构信息

Analytical Chemistry Department, Faculty of Pharmacy, Cairo University, Kasr-El-Aini, Cairo, 11562, Egypt.

出版信息

BMC Chem. 2023 Nov 8;17(1):151. doi: 10.1186/s13065-023-01065-3.

Abstract

Recently, green analytical chemistry (GAC) is a key issue towards the idea of sustainability, the analytical community is focused on developing analytical methods that incorporate green chemistry principles to minimize adverse impacts on the environment and humans. Herein, we present 2 sustainable, selective, and validated chromatographic methods. Initially, lidocaine hydrochloride (LDC) and miconazole nitrate (MIC) with two preservatives; methyl paraben (MTP) and saccharin sodium (SAC) were chromatographed via TLC-densitometric method which employed ethyl acetate: methanol: formic acid (9:1:0.1, by volume) as the mobile phase with UV detection at 220.0 nm, good correlation was obtained in the range of 0.3-3.0 µg/band for MIC and LDC. Following that, RP-HPLC was successfully applied for separating quinary mixture of LDC, MIC, MTP, SAC along with LDC impurity; dimethyl aniline (DMA) using C18 column, and a gradient green mobile phase composed of methanol and phosphate buffer (pH 6.0) in different ratios with a flow rate 1.5 mL/min and UV detection at 210.0 nm, linearity ranges from 1.00 to 100.00 µg/mL for MIC, 2.00-100.00 µg/mL for LDC and 1.00--20.00 µg/mL for MTP and DMA. No records to date regarding the determination of the two drugs, besides MTP and DMA. The proposed methods were validated according to the ICH guidelines and applied successfully to the analysis of the compounds. The methods' results were statistically compared to those obtained by applying the reported one, indicating no significant difference regarding both accuracy and precision. The methods' greenness profiles have been assessed and compared with those of the reported method using different assessment tools.

摘要

最近,绿色分析化学(GAC)是实现可持续发展理念的关键问题,分析界专注于开发纳入绿色化学原则的分析方法,以尽量减少对环境和人类的不利影响。在此,我们提出了两种可持续、选择性强且经过验证的色谱方法。首先,采用薄层色谱 - 密度测定法对含有两种防腐剂(对羟基苯甲酸甲酯(MTP)和糖精钠(SAC))的盐酸利多卡因(LDC)和硝酸咪康唑(MIC)进行色谱分析,该方法以乙酸乙酯:甲醇:甲酸(9:1:0.1,体积比)为流动相,在220.0 nm处进行紫外检测,对于MIC和LDC,在0.3 - 3.0 μg/条带范围内获得了良好的相关性。随后,反相高效液相色谱(RP - HPLC)成功应用于分离LDC、MIC、MTP、SAC的五元混合物以及LDC杂质二甲基苯胺(DMA),使用C18柱,流动相为不同比例的甲醇和磷酸盐缓冲液(pH 6.0)组成的梯度绿色流动相,流速为1.5 mL/min,在210.0 nm处进行紫外检测,MIC的线性范围为1.00至100.00 μg/mL,LDC为2.00 - 100.00 μg/mL,MTP和DMA为1.00 - 20.00 μg/mL。除了MTP和DMA外,目前尚无关于这两种药物测定的记录。所提出的方法根据国际协调会议(ICH)指南进行了验证,并成功应用于化合物的分析。将这些方法的结果与应用已报道方法获得的结果进行统计比较,表明在准确性和精密度方面均无显著差异。已使用不同的评估工具对这些方法的绿色度概况进行了评估,并与已报道方法的绿色度概况进行了比较。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5b15/10633899/8249475134c5/13065_2023_1065_Fig1_HTML.jpg

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