Yu Yingjia, Chen Bin, Shen Cidan, Cai Yi, Xie Meifen, Zhou Wei, Chen Yile, Li Yan, Duan Gengli
Department of Pharmaceutical Analysis, School of Pharmacy, Fudan University, No. 826, Zhangheng Road, Shanghai 201203, China.
J Chromatogr A. 2010 Aug 6;1217(32):5158-64. doi: 10.1016/j.chroma.2010.06.009. Epub 2010 Jun 10.
This paper proposed a multiple headspace single-drop microextraction (MHS-SDME) method coupled to gas chromatography with flame-ionization detection (GC-FID) for direct determination of residual solvents in solid drug product. The MHS-SDME technique is based on extrapolation to an exhaustive extraction of consecutive extractions from the same sample which eliminates the matrix effect on the quantitative analysis of solid samples. The total peak area of analyte is calculated with a beta constant which can be obtained from the slope of the linear regression that related to the peak area of each extraction and the number of extraction times. In this work, a model drug powder was chosen and the amounts of residues of two solvents, methanol and ethanol, were investigated. The factors influencing the extraction process including extraction solvent, microdrop volume, extraction time, sample amount, thermostatting temperature and incubation time were studied. 10mg of drug powder was incubated for 3 h at 140 degrees C prior to the first extraction and thermostatted for 15 min at 140 degrees C between each extraction. Extraction was carried out with 2 microL of dimethyl sulfoxide (DMSO) as the microdrop for 5 min. The features of the method were established using standard solutions. Validation of the proposed method showed good agreement with the traditional dissolution method for analysis of residual solvents in drug product. The results indicated that MHS-SDME has a great potential for the quantitative determination of residual solvents directly from the solid drug products due to its low cost, ease of operation, sensitivity, reliability and environmental protection.
本文提出了一种多头顶空单滴微萃取(MHS-SDME)方法,该方法与配有火焰离子化检测器(GC-FID)的气相色谱联用,用于直接测定固体药品中的残留溶剂。MHS-SDME技术基于对同一样品连续萃取直至完全萃取的外推法,该方法消除了基质对固体样品定量分析的影响。分析物的总峰面积通过β常数计算得出,β常数可从与每次萃取的峰面积和萃取次数相关的线性回归斜率中获得。在本研究中,选用了一种模型药粉,研究了甲醇和乙醇两种溶剂的残留量。研究了影响萃取过程的因素,包括萃取溶剂、微滴体积、萃取时间、样品量、恒温温度和孵育时间。在第一次萃取前,将10mg药粉在140℃下孵育3小时,每次萃取之间在140℃下恒温15分钟。以2μL二甲基亚砜(DMSO)作为微滴进行萃取,萃取时间为5分钟。使用标准溶液确定了该方法的特征。所提出方法的验证结果表明,在分析药品中的残留溶剂时,该方法与传统溶出方法具有良好的一致性。结果表明,MHS-SDME因其成本低、操作简便、灵敏度高、可靠性强和环保等优点,在直接定量测定固体药品中的残留溶剂方面具有巨大潜力。