Optimization of Stability-Indicating HPLC Method for Analyzing Process Related Impurities of Penfluridol and Structural Elucidation of Stress Degradation Products by LCMS/MSucidation of Stress Degradation Products by LCMS/MS

Q4 Pharmacology, Toxicology and Pharmaceutics Toxicology International Pub Date : 2023-11-06 DOI:10.18311/ti/2023/v30i4/34033
Beram Adilakshmi, V. K. Rohini, T. Eswarlal, Ch. Lakshmi Prasanna, Venkateswara Rao Anna
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Abstract

This study focused on the development of a simple and sensitive HPLC method for resolution and quantification of process-related impurities of penfluridol and further assessment of forced degradation behavior of penfluridol. The chromatographic separation was achieved on XTerra™ C18 (250×4.6 mm, 5.0μm) column and UV detection at 245nm. The mobile phase comprises of methanol and tetrahydrofuran in 55:45 (v/v) as solvent A and acetonitrile and tetrahydrofuran in 80:20 (v/v) as solvent B. The 60:40 (v/v) composition of solvent A and B were pumped isocratically at 1.0mL/min. In the proposed conditions, the retention time identified as 5.29 min for penfluridol, 4.51 min, 9.95 min and 7.64 min respectively for impurity 1, 2 and 3 with acceptable system suitability. The method produces sensitive detection limit of 0.008μg/mL for impurity 1, 2 and 0.004 μg/mL for impurity 3 with calibration range of 25-150 μg/mL for penfluridol and 0.025-0.150 μg/mL for impurities. The drug was exposed to different stressed conditions (acid, base, peroxide, thermal and UV light) according to ICH Q1A (R2) guidelines. The Degradation Products (DPs) formed during the stress study was characterized by LCMS/MS in ESI positive mode and the possible structures of five DPs with possible degradation pathways were proposed. The outcomes of other validation studies were likewise satisfactory and proven adequate for regular analysis of penfluridol and its process-related impurities in bulk drug and pharmaceutical dosage forms and can also applicable for evaluation of stress degradation mechanism of penfluridol.
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优化用于分析五氟利多工艺相关杂质的稳定性指示高效液相色谱法,并通过 LCMS/MS 对应激降解产物进行结构阐释 通过 LCMS/MS 对应激降解产物进行结构阐释
本研究的重点是开发一种简单灵敏的高效液相色谱法,用于分辨和定量与五氟利多工艺相关的杂质,并进一步评估五氟利多的强制降解行为。色谱分离采用 XTerra™ C18 (250×4.6 mm, 5.0μm) 色谱柱,紫外检测波长为 245nm。以甲醇和四氢呋喃(体积比为 55:45)为溶剂 A,乙腈和四氢呋喃(体积比为 80:20)为溶剂 B。在此条件下,五氟利多的保留时间为 5.29 分钟,杂质 1、2 和 3 的保留时间分别为 4.51 分钟、9.95 分钟和 7.64 分钟,系统适用性良好。杂质 1、2 和 3 的灵敏检出限分别为 0.008 μg/mL 和 0.004 μg/mL,校准范围分别为 25-150 μg/mL(五氟利多)和 0.025-0.150 μg/mL(杂质)。根据 ICH Q1A (R2) 指南,将药物暴露于不同的压力条件(酸、碱、过氧化物、热和紫外线)下。在应力研究过程中形成的降解产物(DPs)在 ESI 阳性模式下通过 LCMS/MS 进行了表征,并提出了五种 DPs 的可能结构和可能的降解途径。其他验证研究的结果同样令人满意,证明足以用于对散装药物和药物剂型中的五氟利多及其工艺相关杂质进行定期分析,也可用于评估五氟利多的应激降解机制。
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来源期刊
Toxicology International
Toxicology International Environmental Science-Health, Toxicology and Mutagenesis
CiteScore
0.60
自引率
0.00%
发文量
23
期刊介绍: Toxicology International is a peer-reviewed International Research Journal published bi-annually by the Society of Toxicology, India. The Journal is concerned with various disciplines of Toxicology including man, animals, plants and environment and publishes research, review and general articles besides opinions, comments, news-highlights and letters to editor.
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