首页> 外文期刊>Biomedical Chromatography: An International Journal Devoted to Research in Chromatographic Methodologies and Their Applications in the Biosciences >HPLC-UV method for quantifying etoposide in plasma and tumor interstitial fluid by microdialysis: application to pharmacokinetic studies
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HPLC-UV method for quantifying etoposide in plasma and tumor interstitial fluid by microdialysis: application to pharmacokinetic studies

机译:HPLC-UV法通过微透析定量血浆和肿瘤组织液中的依托泊苷:在药代动力学研究中的应用

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A simple and sensitive bioanalytical method was developed and validated for determination of etoposide in plasma and microdialysis samples of Walker-256 tumor-bearing rats. A microdialysis probe was implanted in the center of a subcutaneous tumor and Ringer's solution was used as perfusion medium. Chromatographic separation was conducted on a Shimadzu CLC-C8 column using a mobile phase consisting of water–acetonitrile (70:30; v/v) adjusted to pH?4.0?±?0.1 with formic acid at a gradient flow rate of 1.0–0.6?mL/min, an injection volume of 30?μL and UV detection at 210?nm. Microdialysate samples were analyzed without processing and plasma samples (100?μL) were spiked with phenytoin as internal standard (IS) (1?μg/mL) followed by extraction with tert-butyl methyl ether. The organic layer was evaporated and reconstituted with 100?μL of mobile phase before injection. The methods for plasma and microdialysate were linear in the ranges of 25–10,000?ng/mL and of 10–1500?ng/mL, respectively. All the validation parameters such as intra- and inter-day precision and accuracy and stability were within the limits established by international guidelines. The present method was successfully applied in the investigation of etoposide pharmacokinetics in rat plasma and microdialysate tumor samples following a single 15?mg/kg intravenous dose.
机译:建立了一种简单而灵敏的生物分析方法,并验证了该方法可用于测定Walker-256荷瘤大鼠的血浆和微透析样品中的依托泊苷。将微透析探针植入皮下肿瘤的中心,并将林格氏溶液用作灌注介质。色谱分离是在Shimadzu CLC-C8色谱柱上进行的,流动相由水-乙腈(70:30; v / v)组成,流动相的pH值为4.0-±0.1,且甲酸的梯度流速为1.0-0.6。 ?mL / min,进样量30?μL,在210?nm处有UV检测。微透析液样品无需处理即可分析,血浆样品(100 µL)加苯妥英钠作为内标(IS)(1 µg / mL),然后用叔丁基甲基醚萃取。蒸发有机层,并在进样前用100 µL流动相重构。血浆和微量透析液的线性方法分别在25–10,000?ng / mL和10–1500?ng / mL的范围内。所有验证参数,例如日内和日间精度,准确性和稳定性均在国际准则规定的范围内。本方法已成功应用于大鼠血浆和微量透析液肿瘤样品中依托泊苷的药代动力学研究,单次静脉注射15?mg / kg。

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