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首页> 外文期刊>Journal of Pharmaceutical and Biomedical Analysis: An International Journal on All Drug-Related Topics in Pharmaceutical, Biomedical and Clinical Analysis >The quantitative determination of cilostazol and its four metabolites in human liver microsomal incubation mixtures by high-performance liquid chromatography.
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The quantitative determination of cilostazol and its four metabolites in human liver microsomal incubation mixtures by high-performance liquid chromatography.

机译:高效液相色谱法定量测定人肝微粒体温育混合物中西洛他唑及其四种代谢物。

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摘要

A high-performance liquid chromatography-ultraviolet (HPLC-UV) method for the quantitation of cilostazol and four of its principal metabolites (i.e. OPC-13015, OPC-13213, OPC-13217 and OPC-13326) in human liver microsomal solutions was developed and validated. Cilostazol, its metabolites, and the internal standard (OPC-3930), were analyzed by protein precipitation followed by reverse-phase HPLC separation on a TSK-Gel ODS-80TM (150 x 4.6 mm, 5 microm) column and a Cosmil C-18 column (150 x 4.6 mm, 5 microm) in tandem and UV detection at 254 nm. An 80 min gradient elution of mobile phase acetonitrile in acetate buffer (pH = 6.50) was used to obtain quality chromatography and peak resolution. All the analytes were separated from each other, with the resolution being 2.43-17.59. The components of liver microsomal incubation mixture and five metabolic inhibitor probes (quinidine sulfate, diethyl dithiocarbamate (DEDTC), omeprazole, ketoconazole and furafylline) did not interfere with this analytical method. The LOQ was 1000 ng ml(-1) for cilostazol and 100 ng ml(-1) for each of the metabolites. This method has been validated for linear ranges of 100-4000 ng ml(-1) for OPC-13213, OPC-13217 and OPC-13326; 100-2000 ng ml(-1) for OPC-13015; and 1000-20000 ng ml(-1) for cilostazol. The percent relative recovery of this method was established to be 81.2-101.0% for analytes, with the precision (% coefficient of variation (CV)) being 2.8-7.7%. The autosampler stability of the analytes was evaluated and it was found that all analytes were stable at room temperature for a period of at least 17 h. This assay has been shown to be precise, accurate and reproducible.
机译:建立了高效液相色谱-紫外(HPLC-UV)方法定量测定人肝微粒体溶液中西洛他唑及其四种主要代谢物(即OPC-13015,OPC-13213,OPC-13217和OPC-13326)的方法并验证。西洛他唑,其代谢产物和内标(OPC-3930)通过蛋白质沉淀进行分析,然后在TSK-Gel ODS-80TM(150 x 4.6 mm,5微米)色谱柱和Cosmil C-色谱柱上进行反相HPLC分离串联18根色谱柱(150 x 4.6 mm,5微米),并在254 nm处进行UV检测。流动相乙腈在乙酸盐缓冲液(pH = 6.50)中的80分钟梯度洗脱用于获得高质量的色谱和峰分离度。所有分析物彼此分离,分离度为2.43-17.59。肝微粒体温育混合物的成分和五个代谢抑制剂探针(硫酸奎尼丁,二乙基二硫代氨基甲酸酯(DEDTC),奥美拉唑,酮康唑和呋喃茶碱)均不干扰该分析方法。西洛他唑的LOQ为1000 ng ml(-1),每种代谢物的LOQ为100 ng ml(-1)。对于OPC-13213,OPC-13217和OPC-13326,此方法已针对100-4000 ng ml(-1)的线性范围进行了验证;对于OPC-13015,为100-2000 ng ml(-1);西洛他唑为1000-20000 ng ml(-1)。对于分析物,该方法的相对回收率百分比确定为81.2-101.0%,精度(变异系数百分比(CV))为2.8-7.7%。评价了分析物的自动进样器稳定性,发现所有分析物在室温下稳定至少17小时。已经证明该测定是精确,准确和可再现的。

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