Process Research & Development, MRL, Merck & Co., Inc., Rahway, NJ, 07065, USA.
Process Research & Development, MRL, Merck & Co., Inc., Rahway, NJ, 07065, USA.
J Pharm Biomed Anal. 2019 Feb 20;165:366-373. doi: 10.1016/j.jpba.2018.12.006. Epub 2018 Dec 7.
Within the pharmaceutical industry, the determination of residual solvents by Gas Chromatography Flame Ionization Detection (GC-FID) is a highly utilized analytical test that often employs helium (He) as the carrier gas. However, many do not realize that helium is a non-renewable resource that will eventually become progressively more difficult to source. In recent years, analytical chemists are increasingly adopting hydrogen (H) in place of helium for routine GC analysis. In this study, a simple and efficient generic/universal GC-FID method using H as the carrier gas has been developed with the capability of baseline resolution of over 30 of the most commonly used solvents in development and manufacturing with a method run time of less than eight minutes. The use of this method for the separation and analysis of solvents within a pharmaceutical manufacturing process is demonstrated with additional method validation data presented using five different diluents as a means to increase flexibility for the chromatographer. Furthermore, it is the recommendation of the authors that the current compendia for residual solvent analysis be updated to allow for hydrogen as a carrier gas. The similarity between He and H observed within this study supports the use of hydrogen as a suitable replacement for helium, and an update of the EU and USP compendia for residual solvent analysis should be made to reflect this.
在制药行业中,气相色谱火焰离子化检测(GC-FID)法测定残留溶剂是一种高度应用的分析测试方法,通常采用氦气(He)作为载气。然而,许多人没有意识到氦气是一种不可再生资源,最终将越来越难以获取。近年来,分析化学家越来越多地采用氢气(H)代替氦气用于常规 GC 分析。在这项研究中,开发了一种简单高效的通用/通用 GC-FID 方法,使用 H 作为载气,能够基线分离 30 多种在开发和制造中最常用的溶剂,方法运行时间不到八分钟。该方法用于制药生产过程中溶剂的分离和分析,并使用五种不同的稀释剂提供了额外的方法验证数据,以增加色谱师的灵活性。此外,作者建议更新当前的残留溶剂分析专论,允许使用氢气作为载气。本研究中观察到的 He 和 H 之间的相似性支持将氢气用作氦气的合适替代品,并且应该对欧盟和美国药典残留溶剂分析专论进行更新以反映这一点。