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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 >Application of experimental design in optimization of solid phase extraction of mycophenolic acid and mycophenolic acid glucuronide from human urine and plasma and SPE-RP-HPLC method validation.
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Application of experimental design in optimization of solid phase extraction of mycophenolic acid and mycophenolic acid glucuronide from human urine and plasma and SPE-RP-HPLC method validation.

机译:实验设计在固相萃取人尿和血浆中麦考酚酸和麦考酚酸葡萄糖醛酸苷及SPE-RP-HPLC方法验证中的应用。

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摘要

The aim of this study was to develop and optimize a solid phase extraction (SPE) procedure for purification of mycophenolic acid (MPA) and its metabolite mycophenolic acid glucuronide (MPAG) in biological samples. During optimization process chemometric approach was applied. First, in screening experiments fractional factorial design (FFD) was used for selecting the variables which affected the extraction procedure. The ionic strength of the phosphate buffer in the washing step and the percentage of acetonitrile in the elution step were statistically significant for the recovery of MPAG while the percentage of acetonitrile and pH of the washing solution were statistically significant for that of MPA. Afterwards, the significant variables were optimized using central composite design (CCD). The developed SPE method included phosphate buffer (pH 2.4; 0.056 M) in the washing step, and the mixture of acetonitrile and phosphate buffer of which pH was adjusted to 2.4 (70:30, v/v) in the elution step. The investigation was applied to both urine and plasma and the nature of biological matrix appeared to be of no importance. The extraction from both matrixes showed good repeatability with relative standard deviations up to 6% for MPAG and 8% for MPA, and recovery around 100% for both substances. Furthermore, new SPE-RP-HPLC method for determination of MPA and MPAG in both humane urine and plasma has been validated. The great advantage of this method is the chromatographic run of only 3 min.
机译:这项研究的目的是开发和优化固相萃取(SPE)程序,以纯化生物样品中的麦考酚酸(MPA)及其代谢产物麦考酚酸葡糖醛酸(MPAG)。在优化过程中,采用了化学计量学方法。首先,在筛选实验中,分数阶因子设计(FFD)用于选择影响提取程序的变量。洗涤步骤中磷酸盐缓冲液的离子强度和洗脱步骤中乙腈的百分比对MPAG的回收具有统计学意义,而乙腈的百分比和洗涤液的pH对MPA具有统计学意义。之后,使用中央复合设计(CCD)对重要变量进行了优化。发达的SPE方法在洗涤步骤中包括磷酸盐缓冲液(pH 2.4; 0.056 M),在洗脱步骤中将乙腈和磷酸盐缓冲液的混合物的pH值调节至2.4(70:30,v / v)。该研究适用于尿液和血浆,生物基质的性质似乎并不重要。从两种基质中提取均显示出良好的可重复性,MPAG和MPA的相对标准偏差分别高达6%和8%,两种物质的回收率均在100%左右。此外,已经验证了用于测定人尿和血浆中MPA和MPAG的新SPE-RP-HPLC方法。该方法的最大优势是只需3分钟即可完成色谱分析。

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