Shou Minshan, Qiu Haixiao
Analytical Research and Development, Abbvie Inc., North Chicago, IL, 60064, USA.
J Pharm Anal. 2021 Apr;11(2):251-256. doi: 10.1016/j.jpha.2020.06.007. Epub 2020 Jul 3.
A rapid GC-FID method was developed to simultaneously determine residual levels of triethylamine (TEA), 1,1,3,3-tetramethylguanidine (TMG), and diisopropylamine (DIPA) in the synthetic route of an active pharmaceutical ingredient (API). Due to the severe absorption of amines on GC stationary phases, GC columns with various stationary phases were evaluated for optimal peak shape and reproducibility. The final conditions used the Agilent CP-Volamine column to resolve the three amines in 12 min. Various inlet liners were also screened to further improve the sensitivity of the analysis. The Restek Siltek® liner was selected to achieve the desired detectability for the method. The quantitation limits were 4, 3, and 4 μg/mL for TEA, DIPA, and TMG in the presence of API, respectively. All three amines showed good linearity ( > 0.999) and recoveries (> 90%) over the concentration range of 3 to 16 μg/mL. The testing of residual amines was initially performed at the penultimate stage of the synthesis. However, this work demonstrates that TMG can act as a proton sponge to react with salicylic acid, the counter ion of the penultimate, to form a volatile component that elutes at a different retention time. Consequently, in the final method, these three amines were monitored in the final API to circumvent the matrix interference. Key parameters of the method were qualified per method validation requirements in ICH guidelines. The method was successfully applied for batch testing during development and implemented as an in-process control procedure at manufacturing sites.
开发了一种快速气相色谱 - 火焰离子化检测法(GC - FID),用于同时测定活性药物成分(API)合成路线中三乙胺(TEA)、1,1,3,3 - 四甲基胍(TMG)和二异丙胺(DIPA)的残留量。由于胺类在气相色谱固定相上的严重吸附,对具有不同固定相的气相色谱柱进行了评估,以获得最佳峰形和重现性。最终条件采用安捷伦CP - Volamine色谱柱在12分钟内分离这三种胺类。还筛选了各种进样口衬管以进一步提高分析灵敏度。选择Restek Siltek®衬管以实现该方法所需的检测限。在存在API的情况下,TEA、DIPA和TMG的定量限分别为4、3和4μg/mL。在3至16μg/mL的浓度范围内,所有三种胺类均表现出良好的线性(> 0.999)和回收率(> 90%)。残留胺类的检测最初在合成的倒数第二阶段进行。然而,这项工作表明TMG可以作为质子海绵与倒数第二阶段的抗衡离子水杨酸反应,形成一种在不同保留时间洗脱的挥发性成分。因此,在最终方法中,在最终的API中监测这三种胺类以规避基质干扰。该方法的关键参数根据ICH指南中的方法验证要求进行了确认。该方法在开发过程中成功应用于批次检测,并在生产现场作为过程控制程序实施。