高效液相色谱法测定注射用混悬液中盐酸头孢替福含量的建立与验证

R. Ostapiv, V. Tkachenko, S. Y. Chipak
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引用次数: 0

摘要

头孢替福是第三代头孢菌素,用于兽医治疗革兰氏阴性和革兰氏阳性细菌引起的感染。由于活性物质难溶于水,它最常以注射用基于脂质基质的悬浮液的形式使用。由于基质成分的原因,直接分光光度法分析此类药物比较困难,因此提出了一种具有紫外检测的高效液相色谱法。建立注射用盐酸头孢替福混悬液的鉴别和定量测定方法。根据色谱系统的选择性、鲁棒性、线性和适宜性等指标,建立并验证了该方法。以含头孢噻呋50 mg/ml注射用混悬液为样品,建立方法。将标准品和被试品溶于流动相,溶液浓度为50 μg/ml。分析的总不确定度为1.62%,在DFU 2.0推荐的范围内。样品在配备Kinetex C18-XB 150×4.6, 5 μm色谱柱的Dionex Ultimate 3000色谱仪上分离。流动相为乙腈与0.05 M乙酸铵、0.01 M pH为6.8的四丁基溴化铵的混合物,以醋酸滴定,体积比为3:7。采用分光光度法在波长290 nm处检测盐酸头孢替福。在此条件下,头孢噻呋与所研究药物的其他成分完全分离(色谱峰保留时间- 4.4 min)。同时,色谱系统的适宜性参数没有超过美国食品和药物协会推荐中规定的限值。对于盐酸头孢替福峰,色谱系统的效率为13900理论板。原料药峰面积的相对标准偏差(RSD)为±0.11%,盐酸头孢替福与该药其他成分的峰分离系数(RS)为17.3。峰的对称系数为1.02。在推荐的DFU 2.0范围内(对应活性物质标称浓度的80-120%),校准曲线呈线性。盐酸头孢替弗峰面积的线性系数(R2)为0.9992。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
DEVELOPMENT AND VALIDATION OF HPLC-METHOD DETERMINING QUANTITATIVE CONTENT OF CEFTIOFUR HYDROCHLORIDE IN SUSPENSIONS FOR INJECTION
Ceftiofur is a third-generation cephalosporin used in veterinary medicine to treat infections caused by gram-negative and gram-positive bacteria. It is most often used in the form of suspensions for injections based on a lipid matrix, since the active substance is poorly soluble in water. The analysis of such a drug by direct spectrophotometry is difficult due to the components of the matrix, therefore it is proposed to develop a high-performance liquid chromatography method with UV detection. The aim of the work was to develop a method of identification and quantitative determination of ceftiofur hydrochloride in suspensions for injections. The method was developed and validated according to the indicators of selectivity, robustness, linearity and suitability parameters of the chromatographic system. Suspension for injections containing ceftiofur 50 mg/ml was used as a sample-object for method development. The standard sample and the test sample were dissolved in the mobile phase to a concentration of 50 μg/ml. The total uncertainty of the analysis was 1.62%, which is within the limits recommended in DFU 2.0. The samples were separated on a Dionex Ultimate 3000 chromatograph equipped with a Kinetex C18-XB 150×4.6, 5 μm chromatographic column. The mobile phase was a mixture of acetonitrile and 0.05 M ammonium acetate, 0.01 M tetrabutylammonium bromide with a pH of 6.8, titrated with acetic acid, in a volume ratio of 3:7. Ceftiofur hydrochloride was detected spectrophotometrically at a wavelength of 290 nm. Under the above conditions, it was possible to completely separate ceftiofur (retention time of the chromatographic peak – 4.4 min) and other components of the studied drug. At the same time, the suitability parameters of the chromatographic system did not exceed the limits specified in the recommendations of the USA Food and Drug Association. For the ceftiofur hydrochloride peak, the efficiency of the chromatographic system was 13,900 theoretical plates. The relative standard deviation (RSD) for the peak areas of the active substance was ±0.11 %, and the peak separation coefficient (RS) of ceftiofur hydrochloride from other components of the drug was 17.3. The symmetry coefficient of the peak was 1.02. The calibration curves were linear in the recommended DFU 2.0 range (80–120% of the nominal concentration of the corresponding active substance). The coefficient of linearity (R2) for the peak area of ceftiofur hydrochloride was 0.9992.
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