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一种简单的等度 LC 方法,用于定量检测硝普钠注射液中痕量无机降解杂质(铁氰化物、亚铁氰化物、亚硝酸盐和硝酸盐),并通过质量设计方法进行稳健性评估。

A simple isocratic LC method for quantification of trace-level inorganic degradation impurities (ferricyanide, ferrocyanide, nitrite, and nitrate) in sodium nitroprusside injection and robustness by quality using design approach.

机构信息

Analytical Research and Development, Slayback Pharma India LLP, Manjeera Trinity Corporate, JNTU, Hyderabad, India.

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

出版信息

Biomed Chromatogr. 2022 Feb;36(2):e5269. doi: 10.1002/bmc.5269. Epub 2021 Nov 10.

DOI:10.1002/bmc.5269
PMID:34693546
Abstract

This study developed and validated a trace-level quantification inorganic impurities method using reversed-phase HPLC and performed the robustness check using quality-by-design approach by varying the multiple factors simultaneously. This method is economical and simple and exhibits its stability-indicating nature [for the determination of ferrocyanide ([Fe(CN)₆] ), ferricyanide ([Fe(CN) ] ), nitrate (NO ), and nitrite (NO )] in sodium nitroprusside (SNP) drug substance and liquid dosage form. Chromatographic separation was achieved using a USP L43 column (ACE PFP, 150 × 4.6 mm, 3 μm) with a simple isocratic elution. The buffer consists of potassium dihydrogen phosphate (50 mM), tetrabutylammonium hydrogen sulfate (9 mM), and tetrabutylammonium hydroxide (25 mM). The buffer pH was adjusted to 7.2 with tetrabutylammonium hydroxide. The mobile phase was mixed with the buffer and acetonitrile (68:32 v/v). The flow rate was 0.8 mL/min, column temperature was maintained at 30°C, and injection volume was 5.0 μL. The SNP impurities were monitored at 225 nm using a UV detector. Further, the method was validated per the International Council for Harmonisation (ICH) guidelines, and forced degradation studies were carried out under different stress conditions. The detector responses were plotted against concentrations, and correlation was linear (r > 0.999) over the range of 0.8-7.5 μg/mL for ferricyanide; 1.0-37.5 μg/mL for SNP; and 0.2-7.5 μg/mL for ferrocyanide, nitrite, and nitrate. The method repeatability was established for all the impurities with relative standard deviation (%), and the results were found to be less than 2.0.

摘要

本研究开发并验证了一种使用反相高效液相色谱法进行痕量定量无机杂质的方法,并通过同时改变多个因素来使用质量源于设计方法进行稳健性检查。该方法经济简单,具有稳定性指示特性[用于测定硝普钠(SNP)药物物质和液体剂型中的亚铁氰化物([Fe(CN)₆] )、铁氰化物([Fe(CN) ] )、硝酸盐(NO )和亚硝酸盐(NO )]。色谱分离采用 USP L43 柱(ACE PFP,150×4.6mm,3μm)进行等度洗脱。缓冲液由磷酸二氢钾(50mM)、硫酸四丁基铵(9mM)和四丁基氢氧化铵(25mM)组成。用四丁基氢氧化铵将缓冲液的 pH 值调至 7.2。流动相由缓冲液和乙腈(68:32v/v)混合而成。流速为 0.8mL/min,柱温保持在 30°C,进样量为 5.0μL。SNP 杂质在 225nm 处用紫外检测器监测。此外,该方法按照国际协调委员会(ICH)指南进行了验证,并在不同的应力条件下进行了强制降解研究。在 0.8-7.5μg/mL 范围内,铁氰化物的检测器响应与浓度呈线性关系(r>0.999);SNP 的浓度范围为 1.0-37.5μg/mL;亚铁氰化物、亚硝酸盐和硝酸盐的浓度范围为 0.2-7.5μg/mL。用相对标准偏差(%)确定了所有杂质的方法重复性,结果小于 2.0。

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