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首页> 外文期刊>Microchemical Journal: Devoted to the Application of Microtechniques in all Branches of Science >High-throughput chemometrically assisted flow-injection method for the simultaneous determination of multi-antiretrovirals in water
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High-throughput chemometrically assisted flow-injection method for the simultaneous determination of multi-antiretrovirals in water

机译:高通量化学辅助流动注射方法,用于同时测定水中多抗逆转录病毒

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This work is focused on the simultaneous determination of different nucleosides (lamivudine, abacavir, zidovudine) and non-nucleoside (nevirapine, efavirenz) reverse transcriptase inhibitors (antiretrovirals) in river, tap and well water by pH-gradient flow-injection analysis with diode-array detection (FIA-DAD) and further multivariate curve resolution-alternating least square (MCR-ALS) processing. Previous to the development of the analytical method with quantitative purpose, the acid-base characterization was conducted for all the analytes by determination of the experimental pK(a). The pKa values, obtained by UV spectrometric titration coupled to MCR-ALS data modeling, were in agreement with those found in the literature, and, interestingly, a non-reported pK(a) of 12.27 was identified for nevirapine. Eventually, the analytical method was developed and its performance on the quantitation of the antiretrovirals was evaluated through its application to validation and environmental samples. The recovery studies showed values between 85 and 115% with relative errors of prediction below 10%. The figures of merit were satisfactory for all the studied drugs, with limits of detection between 25 and 40 mu gL(-1). Therefore, the proposed method, which is based on the generation of high-throughput data, is a simple and suitable alternative to determine the concentration of antiretroviral drugs in complex matrices, without pre-concentration or extraction steps. Additionally, MCR-ALS demonstrated to be a useful tool for solving mixtures of analytes with high spectral overlapping, in the presence of unknown interferences.
机译:该工作的重点是同时测定不同核苷(Lamivudine,Abacavir,Zidovudine)和非核苷(Nevirapine,Efavirab)逆转录酶抑制剂(抗逆转录病毒)通过用二极管进行PH梯度流动分析通过ph梯度流动分析进行敲击和井水 - 阵列检测(FIA-DAD)和其他多变量曲线分辨率 - 交替的最小二乘(MCR-ALS)加工。在以定量目的开发分析方法的发展中,通过测定实验PK(A)来对所有分析物进行酸碱表征。通过UV光谱滴度获得的PKA值与MCR-ALS数据建模相结合,与文献中发现的那些相一致,有趣的是,对于Nevirapine鉴定出12.27的未报告的PK(A)。最终,通过应用于验证和环境样品,通过其应用于抗逆转录毒脉定量的分析方法,并通过其应用于验证和环境样品进行分析。恢复研究显示85至115%之间的值,具有低于10%的预测相对误差。所有研究药物的优异数据令人满意,有限公司的检测限介于25至40μGL(-1)之间。因此,基于高通量数据的产生的所提出的方法是一种简单且合适的替代方案,以确定复杂基质中的抗逆转录病毒药物的浓度,而无需预浓缩或提取步骤。另外,MCR-ALS证明是求解分析物混合物的有用工具,在不知情的干扰存在下具有高光谱重叠的分析物的混合物。

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