Genentech Synthetic Molecule Pharmaceutical Sciences, 1 DNA Way, South San Francisco, CA 94080, USA.
Department of Chemistry, Iowa State University, Ames, IA 50011, USA; Ames National Laboratory-USDOE, Ames, IA 50011, USA.
J Pharm Biomed Anal. 2024 Jul 15;244:116128. doi: 10.1016/j.jpba.2024.116128. Epub 2024 Mar 28.
Genotoxic impurities (GTIs) are potential carcinogens that need to be controlled down to ppm or lower concentration levels in pharmaceuticals under strict regulations. The static headspace gas chromatography (HS-GC) coupled with electron capture detection (ECD) is an effective approach to monitor halogenated and nitroaromatic genotoxins. Deep eutectic solvents (DESs) possess tunable physico-chemical properties and low vapor pressure for HS-GC methods. In this study, zwitterionic and non-ionic DESs have been used for the first time to develop and validate a sensitive analytical method for the analysis of 24 genotoxins at sub-ppm concentrations. Compared to non-ionic diluents, zwitterionic DESs produced exceptional analytical performance and the betaine : 7 (1,4- butane diol) DES outperformed the betaine : 5 (1,4-butane diol) DES. Limits of detection (LOD) down to the 5-ppb concentration level were achieved in DESs. Wide linear ranges spanning over 5 orders of magnitude (0.005-100 µg g) were obtained for most analytes with exceptional sensitivities and high precision. The method accuracy and precision were validated using 3 commercially available drug substances and excellent recoveries were obtained. This study broadens the applicability of HS-GC in the determination of less volatile GTIs by establishing DESs as viable diluent substitutes for organic solvents in routine pharmaceutical analysis.
遗传毒性杂质(GTIs)是潜在的致癌物质,根据严格的规定,需要将其控制在药品中的 ppm 或更低浓度水平。静态顶空气相色谱(HS-GC)结合电子俘获检测(ECD)是监测卤代和硝基芳香族遗传毒素的有效方法。深共晶溶剂(DESs)具有可调节的物理化学性质和低蒸气压,适用于 HS-GC 方法。在这项研究中,两性离子和非离子 DES 首次被用于开发和验证一种灵敏的分析方法,用于分析亚 ppm 浓度的 24 种遗传毒素。与非离子稀释剂相比,两性离子 DES 产生了出色的分析性能,而甜菜碱:7(1,4-丁二醇)DES 的性能优于甜菜碱:5(1,4-丁二醇)DES。在 DES 中达到了低至 5 ppb 浓度水平的检测限(LOD)。大多数分析物的线性范围宽达 5 个数量级(0.005-100 µg g),具有出色的灵敏度和高精度。该方法的准确性和精密度通过使用 3 种市售药物物质进行验证,获得了良好的回收率。本研究通过将 DES 作为有机溶剂的可行稀释剂替代品,在常规药物分析中拓宽了 HS-GC 在测定挥发性较低的 GTIs 方面的应用。