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Development of HPLC methods for pharmaceutically relevant molecules; method transfer to UPLC: Comparing methods statistically for equivalence.

机译:开发用于药物相关分子的HPLC方法;方法转移到UPLC:统计比较方法的等效性。

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摘要

High Pressure Liquid Chromatography (HPLC) is a well-known and widely used analytical technique which is prevalent throughout the pharmaceutical industry as a research tool. Despite its prominence HPLC possesses some disadvantages, most notably slow analysis time and large consumption of organic solvents. Ultra Pressure Liquid Chromatography (UPLC) is a relatively new technique which offers the same separation capabilities of HPLC with the added benefits of reduced run time and lower solvent consumption. One of the key developments which facilitate the new UPLC technology is sub 2-mum particles used as column packing material. These particles allow for higher operating pressures and increased flow rates while still providing strong separation. Although UPLC technology has been available since early 2000, few laboratories have embraced the new technology as an alternative to HPLC. Besides the resistance to investing in new capital, another major roadblock is converting existing HPLC methodology to UPLC without disruption. This research provides a framework for converting existing HPLC methods to UPLC.;An existing HPLC method for analysis of Galantamine hydrobromide was converted to UPLC and validated according to ICH guidelines. A series of statistical evaluations on the validation data were performed to prove the equivalency between the original HPLC and the new UPLC method. This research presents this novel statistical strategy which can be applied to any two methodologies to determine parity.
机译:高压液相色谱(HPLC)是一种众所周知的且被广泛使用的分析技术,在整个制药行业中作为研究工具而普遍存在。尽管HPLC具有突出的优势,但它也有一些缺点,最显着的是分析时间慢和有机溶剂的大量消耗。超高压液相色谱(UPLC)是一项相对较新的技术,具有与HPLC相同的分离能力,并具有减少运行时间和降低溶剂消耗的附加优点。促进新的UPLC技术发展的关键发展之一是小于2微米的颗粒用作柱填充材料。这些颗粒可提供更高的工作压力和更高的流速,同时仍可提供强大的分离效果。尽管UPLC技术自2000年初就已经可用,但很少有实验室将新技术用作HPLC的替代品。除了不愿意投资新资金外,另一个主要障碍是将现有的HPLC方法转换为UPLC而不会造成干扰。本研究为将现有的HPLC方法转换为UPLC提供了框架。将现有的用于分析氢溴酸加兰他敏的HPLC方法转换为UPLC,并根据ICH指南进行了验证。对验证数据进行了一系列统计评估,以证明原始HPLC和新的UPLC方法之间的等效性。这项研究提出了这种新颖的统计策略,可以将其应用于确定奇偶校验的任何两种方法。

著录项

  • 作者

    Ganti, Satyakala.;

  • 作者单位

    Temple University.;

  • 授予单位 Temple University.;
  • 学科 Chemistry Analytical.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 272 p.
  • 总页数 272
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:43:59

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