分散液液微萃取-高效液相色谱-紫外联用优化伊马替尼的富集

Pegah Poormand, M. Qomi, J. Hosseini
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引用次数: 1

摘要

背景:伊马替尼是一种抗肿瘤药物,作为酪氨酸激酶抑制剂用于治疗淋巴细胞白血病等癌症。抗癌药物的剂量对患者的生存起着至关重要的作用。因此,应监测患者的血浆和尿液样本,以获得有关药物毒性的必要信息。本研究评价了预富集和分散液液微萃取法在高效液相色谱法测定前提取水样中微量伊马替尼的适用性。材料和方法:将目标药物从pH= 11的水样中(供体相)提取到分散溶液(丙酮)中作为受体相的萃取溶剂(正辛醇)中,分散在样品溶液中。采用化学计量学设计和田口法对影响提取效率的不同因素进行了研究和优化。影响因素包括供体相pH、萃取溶剂类型、分散溶剂类型、搅拌速度、萃取时间和萃取温度。结果:最佳工艺条件为:供体相pH:11,萃取溶剂:夜间醇,分散溶剂:丙酮,搅拌速度:500rpm,萃取时间:45min,萃取温度:65℃。结论:该方法简便、快速、灵敏,适用于水样中痕量伊马替尼的测定。
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Optimized preconcentration of Imatinib using dispersive liquid-liquid microextraction coupled with HPLC-UV
Background: Imatinib is an antineoplastic agent acting as a tyrosine kinase inhibitor to treat cancer such as lymphoblastic leukemia. The dosage of the anticancer drugs plays a critical role in the survival of the patients. For this reason, the patient's plasma and urine samples should be monitored to obtain the necessary information regarding the toxicity of the drug. In this study, the applicability of preconcentration and dispersive liquid-liquid microextraction for extraction of trace amount of Imatinib in aqueous samples, before a determination by High-Performance Liquid Chromatography (HPLC), was evaluated. Materials and methods: The targeted drug was extracted from an aqueous sample with pH= 11 (the donor phase) into an extraction solvent (n-octanol) in the dispersive solution (acetone) as an acceptor phase, which has been dispersed in the sample solution. Different variables on extraction efficiency were studied and optimized by chemometrics design and the Taguchi method. The variables were the donor phase's pH, type of extraction solvent, type of dispersive solvent, speed stirring, extraction time, and extraction temperature. Results: The optimum conditions of the test were as pH of donor phase:11, type of extraction solvent: noctanol, type of dispersive solvent: acetone, speed stirring: 500rpm , extraction time: 45min, extraction temperature: 65 centigrade. Conclusion: The developed method was simple, rapid, sensitive, and suitable for determining trace amounts of Imatinib in aqueous samples.
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