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采用全因子设计法对奈达尼硫酸酯相关杂质进行测定,进行方法开发、稳定性评估和有影响方法条件的评估。

Development, stability-indicating assessment, and evaluation of influential method conditions using a full factorial design for the determination of Nintedanib esylate-related impurities.

机构信息

Department of Chemistry, GITAM School of Science, GITAM deemed to be University, Hyderabad, India.

Analytical department, Slayback Pharma India LLP, Manjeera trinity corporate, JNTU, Hyderabad, India.

出版信息

J Sep Sci. 2023 Jun;46(11):e2200770. doi: 10.1002/jssc.202200770. Epub 2023 Apr 12.

DOI:10.1002/jssc.202200770
PMID:36976154
Abstract

The design of an appropriate analytical method for assessing the quality of pharmaceuticals requires a deep understanding of science, and risk evaluation approaches are appreciated. The current study discusses how a related substance method was developed for Nintedanib esylate. The best possible separation between the critical peak pairs was achieved using an X-Select charged surface hybrid Phenyl Hexyl (150 × 4.6) mm, 3.5 μm column. A mixture of water, acetonitrile, and methanol in mobile phase-A (70:20:10) and mobile phase-B (20:70:10), with 0.1% trifluoroacetic acid and 0.05% formic acid in both eluents. The set flow rate, wavelength, and injection volumes were 1.0 ml/min, 285 nm, and 5 μl, respectively, with gradient elution. The method conditions were validated as per regulatory requirements and United States Pharmacopeia general chapter < 1225 >. The correlation coefficient for all impurities from the linearity experiment was found to be > 0.999. The % relative standard deviation from the precision experiments ranged from 0.4 to 3.6. The mean %recovery from the accuracy study ranged from 92.5 to 106.5. Demonstrated the power of the stability-indicating method through degradation studies; the active drug component is more vulnerable to oxidation than other conditions. Final method conditions were further evaluated using a full-factorial design. The robust method conditions were identified using the graphical optimization from the design space.

摘要

评估药品质量的适当分析方法的设计需要深入了解科学,并采用风险评估方法。本研究讨论了如何为依尼替尼乙酯开发有关物质方法。使用最佳可能的分离临界峰对使用 X-Select 带电表面混合苯基己基(150×4.6)mm,3.5μm 柱。在流动相-A(70:20:10)和流动相-B(20:70:10)中,混合水、乙腈和甲醇,两种洗脱液中均含有 0.1%三氟乙酸和 0.05%甲酸。设定流速、波长和进样体积分别为 1.0ml/min、285nm 和 5μl,梯度洗脱。方法条件按照法规要求和美国药典通则<1225>进行验证。线性实验中所有杂质的相关系数均>0.999。精密度实验中,%相对标准偏差范围为 0.4-3.6。准确度研究中,%平均回收率范围为 92.5-106.5。通过降解研究证明了稳定性指示方法的强大功能;活性药物成分比其他条件更容易氧化。最终方法条件使用全因子设计进一步评估。使用设计空间中的图形优化确定稳健方法条件。

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