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首页> 外文期刊>Journal of chromatography, B. Analytical technologies in the biomedical and life sciences >Cloud point extraction coupled with microwave-assisted back-extraction (CPE-MABE) for determination of Eszopiclone (Z-drug) using UV–Visible, HPLC and mass spectroscopic (MS) techniques: Spiked and in vivo analysis
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Cloud point extraction coupled with microwave-assisted back-extraction (CPE-MABE) for determination of Eszopiclone (Z-drug) using UV–Visible, HPLC and mass spectroscopic (MS) techniques: Spiked and in vivo analysis

机译:浊点萃取与微波辅助后萃取(CPE-MABE)使用UV可见,HPLC和质谱(MS)技术测定埃斯特己酮(Z-药物):掺入和体内分析

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摘要

AbstractA procedure for the determination of Eszopiclone (ESZ) from complex matrices i.e. in vitro (spiked matrices), as well as in vivo (mice model) was developed using cloud point extraction coupled with microwave-assisted back-extraction (CPE-MABE). Analytical measurements have been carried using UV–Visible, HPLC and MS techniques. The proposed method has been validated according to ICH guidelines and legitimate reproducible and reliability of protocol is assessed through intraday and inter-day precision <3.61% and <4.70%, respectively. Limit of detection has been obtained as 0.083μg/mL and 0.472μg/mL respectively, for HPLC and UV–Visible techniques, corresponding to assessed linearity range. The coaservate phase in CPE was back extracted under microwaves exposure, with isooctane at pre-concentration factor ~50 when 5mL of sample solution was pre-concentrated to 0.1mL. Under optimized conditions i.e. Aqueous-Triton X-114 4% (w/v), pH4.0, NaCl 4% (w/v) and equilibrium temperature of 45°C for 20min, average extraction recovery has been obtained between 89.8 and 99.2% and 84.0–99.2% from UV–Visible and HPLC analysis, respectively. The method has been successfully applied to the pharmacokinetic estimation (post intraperitoneal administration) of ESZ in mice. MS analysis precisely depicted the presence of activeN?desmethyl zopiclone in impales as well as in mice plasma.Highlights
机译:<![cdata [ 抽象 以及从复合矩阵确定eSzopiclone(ESZ)的过程,即在体外(尖刺的矩阵),也是如此如在体内(小鼠模型)使用浊点萃取和微波辅助后萃取(CPE-MABE)开发。使用UV可见,HPLC和MS技术进行了分析测量。该方法已根据ICH指南验证,并通过盘中和日内精度评估议定书的合法可重复性和可靠性分别进行评估<3.61%和<4.70%。对于HPLC和UV可见技术,分别获得了检测极限为0.083μg/ ml和0.472μg/ ml,对应于评估的线性范围。在微波暴露下,在微波暴露下提取CPE中的辛酸相,当将5ml样品溶液预浓缩至0.1ml时,在预浓度因子〜50处用异辛烷。在优化条件下,即30℃的35℃,30℃的35℃,pH4.0,NaCl 4%(W / V)和平均下降,在89.8和99.2之间获得平均提取恢复紫外线可见和HPLC分析分别为%和84.0-99.2%。该方法已成功应用于小鼠ESZ的药代动力学估计(腹膜内给药)。 MS分析精确地描绘了活性 n α-滴甲基齐甲酮的存在,以及小鼠等离子体中的滴注液。 突出显示

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