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    微波消解-电感耦合等离子体质谱法测定Staccato型洛沙平吸入粉雾剂中25种元素杂质的含量

    Determination of 25 Elemental Impurities in Staccato® Loxapine Inhalation Powder by Inductively Coupled Plasma Mass Spectrometry with Microwave Digestion

    • 摘要: 为评估Staccato型洛沙平吸入粉雾剂样品中元素杂质的风险,采用题示方法同时测定了Cd、Pb、As、Hg、Co、V、Ni、Tl、Au、Pd、Ir、Os、Rh、Ru、Se、Ag、Pt、Li、Sb、Ba、Mo、Cu、Sn、Cr和Fe等25种元素杂质的含量。取一支样品,通过真空泵将样品递送至吸入制剂剂量均一性测试设备(DUSA管)中,加入10 mL甲醇溶解药物,于80 ℃蒸干甲醇,加入5 mL硝酸、2 mL过氧化氢,于190 ℃消解30 min。于80 ℃加热赶酸30 min,用5%(体积分数)混酸(体积比4∶1的硝酸-盐酸混合溶液)溶液稀释至25 mL,采用电感耦合等离子体质谱法在碰撞模式下通过在线内标法进行测定。结果显示:25种元素杂质的质量浓度均在一定范围内和对应的响应值和内标的响应值的比值呈线性关系,检出限为0.007 00~11.7 µg·L−1;对实际样品进行重复性(n=6)、中间精密度(n=12)和加标回收试验,测定值的相对标准偏差分别为1.2%~6.6%和1.6%~11%,回收率为72.0%~108%,结果均符合USP〈233〉的要求。方法用于3批样品的分析,24种元素杂质(除Fe元素外)的检出量均小于按照ICH Q3D计算的允许值。

       

      Abstract: To evaluate the risk of elemental impurities in Staccato® loxapine inhalation powder samples, the contents of 25 elemental impurities (Cd, Pb, As, Hg, Co, V, Ni, Tl, Au, Pd, Ir, Os, Rh, Ru, Se, Ag, Pt, Li, Sb, Ba, Mo, Cu, Sn, Cr, and Fe) were simultaneously determined using the method mentioned by the title. The sample was taken and delivered to the dose uniformity sampling apparatus (DUSA tube) using a vacuum pump. After adding 10 mL of methanol to dissolve drugs, the methanol was evaporated at 80 ℃. Subsequently, 5 mL of nitric acid and 2 mL of hydrogen peroxide were added, and the mixed solution was digested at 190 ℃ for 30 min. The acid was removed by heating at 80 ℃ for 30 min, and the residue was diluted to 25 mL with the 5% (volume fraction) mixed acid solution (a mixture of nitric acid and hydrochloric acid at volume ratio of 4∶1). Determination was performed using inductively coupled plasma mass spectrometry (ICP-MS) in collision mode with online internal standard method. It was shown that linear relationships between the mass concentrations of 25 elemental impurities and response value ratios of the target elements to internal standards were kept in definite ranges, with detection limits in the range of 0.007 00‒11.7 µg·L−1. Repeatability (n=6), intermediate precision (n=12), and spike recovery tests were conducted on actual samples, giving RSDs of the determined values were 1.2%‒6.6% and 1.6%‒11%, respectively, and recoveries in the range of 72.0%‒108%, all of which complied with the requirements of USP〈233〉. The proposed method was applied to the analysis of 3 batches of samples, and detected amounts of 24 elemental impurities (excluding Fe) were all below the permissible limits calculated according to ICH Q3D.

       

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