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Applications of hyphenated analytical techniques in pharmaceutical industry.

机译:联用分析技术在制药行业中的应用。

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摘要

Analytical chemistry plays a critical role in pharmaceutical research and development. A typical analysis includes separating and identifying active pharmaceutical ingredients and impurities, determining the quantity of counterions, residual solvents, moisture, heavy metals in drug substances and drug products, and analyzing drugs and their metabolites in biological fluids. Analytical method development and validation are arguably the most important procedures in analytical research and development, because the qualities of drug substance and drug product are controlled by using analytical methods. This dissertation focuses on the application of various analytical techniques towards pharmaceutical industry.;An application of headspace gas chromatography/flame ionization detector (HSGC/FID) for determination of residual solvents in drug product has been studied in order to increase productivity of drug analysis in the pharmaceutical industry. The conditions of HS sampler and GC were optimized to make the HSGC method more sensitive, efficient and reproducible. The examples of real drug substance analyses demonstrate the broad application potential of this HSGC method in the determination of residual solvents in drug substances.;A simple, sensitive and robust liquid chromatography-tandem mass spectrometer (LC-MS/MS) method was developed and validated for highly polar aminoglycoside compounds gentamicin, kanamycin and apramycin. The effect of trichloroacetic acid (TCA) concentration on plasma protein precipitation and sample recovery was studied and an optimized concentration of 25-30% TCA were determined that gives the best sample recovery for aminoglycosides from rat plasma.;Simple, sensitive and robust LC-MS/MS methods were developed and validated for the determination of lipopeptide polymyxins and glycopeptide vancomycin in rat plasma. The effect of TCA concentration on sample recoveries was studied.;An efficient LC-MS/MS method was successfully developed and validated for determination of fifteen estrogens and metabolites in human serum. The sample derivatization procedures were optimized, and sample stability was assessed. The method was specific, accurate, precise, sensitive and linear within the calibration range. It had a comparable sensitivity to those from the typical published LC-MS/MS methods, while it had a much better LC separation efficiency for separating all of the fifteen dansylated estrogens and metabolites with a significantly reduced elution time.;Both CIEF and MALDI-MS are frequently used in protein analysis, but hyphenation of the two is not investigated proportionally. One of the major reasons is that the additives (such as carrier ampholytes and detergent) in CIEF severely suppress the MALDI-MS signal, which hamper the hyphenation of the two. A simple CIEF-MALDI MS interface is used and to explore its application in proteomics research. This study is to develop a simple means to alleviate the signal suppressing from CIEF additives, such as carrier ampholytes and detergent, on MALDI- MS signals.
机译:分析化学在药物研发中起着至关重要的作用。典型的分析包括分离和鉴定活性药物成分和杂质,确定原料药和药物产品中抗衡离子,残留溶剂,水分,重金属的量,以及分析生物流体中的药物及其代谢产物。分析方法的开发和验证可以说是分析研究和开发中最重要的程序,因为原料药和药品的质量是通过使用分析方法来控制的。本文着重研究了各种分析技术在制药行业中的应用。研究了顶空气相色谱/火焰电离检测器(HSGC / FID)在药物产品中残留溶剂测定中的应用,以提高药物分析效率。制药业。优化了HS采样器和GC的条件,以使HSGC方法更加灵敏,高效和可重现。实际药物分析的实例表明,该HSGC方法在确定药物中残留溶剂方面具有广泛的应用潜力。;开发了一种简单,灵敏,耐用的液相色谱-串联质谱仪(LC-MS / MS)经验证可用于高极性氨基糖苷类化合物庆大霉素,卡那霉素和阿普霉素。研究了三氯乙酸(TCA)浓度对血浆蛋白沉淀和样品回收率的影响,确定了25-30%TCA的最适浓度,可以为大鼠血浆中的氨基糖苷提供最佳的样品回收率。建立了MS / MS方法并验证了其在大鼠血浆中测定脂肽多粘菌素和糖肽万古霉素的有效性。研究了TCA浓度对样品回收率的影响。成功开发了一种有效的LC-MS / MS方法,并验证了该方法可测定人血清中的十五种雌激素和代谢物。优化了样品衍生化程序,并评估了样品稳定性。该方法在校准范围内是特异性,准确,精确,灵敏和线性的。它具有与典型的公开LC-MS / MS方法相当的灵敏度,同时具有很好的LC分离效率,可分离所有15种丹磺化的雌激素和代谢物,且洗脱时间明显缩短。CIEF和MALDI- MS通常用于蛋白质分析,但并未按比例研究两者的联用。主要原因之一是CIEF中的添加剂(例如载体两性电解质和去污剂)严重抑制了MALDI-MS信号,从而阻碍了两者的连字符。使用一个简单的CIEF-MALDI MS接口,并探索其在蛋白质组学研究中的应用。这项研究旨在开发一种简单的方法来减轻来自CIEF添加剂(例如载体两性电解质和去污剂)对MALDI-MS信号的信号抑制。

著录项

  • 作者

    Cheng, Chang.;

  • 作者单位

    The University of Oklahoma.;

  • 授予单位 The University of Oklahoma.;
  • 学科 Chemistry Analytical.;Chemistry Pharmaceutical.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 213 p.
  • 总页数 213
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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