选择性低聚果糖吸附剂在药物制剂中苯佐卡因定量分析中的应用

М.N. Kachalkin, A. V. Voronin
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Benzocaine (FS.2.1.0634, Russia State Pharmacopoeia XV ed.) to form active binding sites in sorbent structure was applied. The sorbent structure is polycyanoacrylate matrix with hypromellose fragments, the sur-face area is 255.50 m2/g, pore volume is 0.1433 cm3, pore diameter is 5.32 nm. The sorption capacity of hypromellose sorbent for benzocaine was 12.2±0.8 μg/g. The SPE technique is proposed. SPE includes the stages: conditioning, sample addition and step-by-step elution with purified water and hydrochloric acid solution 0.1 mol/L. The spectrophotometer SF-56 was used to measure the absorbance at an analytical wavelength of 286 nm. To evaluate the selectivity (specificity) of sample preparation during chromatographic (SPE) separation of pharmaceutical formulations, absorption spectra of eluates in the wavelength range of 200400 nm were scanned. The benzocaine identification in the eluate was carried out based on absorption peaks at 220 and 286 nm. The benzocaine calibration curve in the range of 120 μg/ml. To determination the metrological characteristics of benzocaine quan-titation method, 11 parallel determinations of samples of each pharmaceutical formulation were made. \nResults. When realizing the benzocaine quantitation technique for measuring absorbance, it is advisable to use only the first portions of eluate (a solu-tion of hydrochloric acid) in a volume of 510 ml were obtained. The relative error of benzocaine average concentration in the pharmaceutical formula-tions ranged from 1.28 to 1.34% for technique that included the SPE stage, and from 1.86 to 2.02% for technique that did not include it. A comparison of the modifications of the spectrophotometric quantitation of benzocaine in pharmaceutical formulation using hypromellose sorbent and technique without the SPE did not reveal a statistically significant difference in reproducibility. 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引用次数: 0

摘要

引言。在药物制剂的质量控制中,有基于样品成分初步分离的方法,也有不进行初步分离的方法。使用固相萃取(SPE)可以在样品预处理过程中分离分析物,其分离选择性决定了整个分析的选择性。目前,能够在与分析物的相互作用中提供选择性的吸附剂备受关注。目标评估在某些药物制剂中采用紫外分光光度法对苯佐卡因进行定量分析的计量学特性。采用我们开发的方法获得吸附剂。使用苯佐卡因(FS.2.1.0634,俄罗斯国家药典 XV 版)在吸附剂结构中形成活性结合位点。吸附剂结构为聚氰基丙烯酸酯基质,含有低聚果糖片段,表面积为 255.50 m2/g,孔体积为 0.1433 cm3,孔直径为 5.32 nm。该吸附剂对苯佐卡因的吸附量为 12.2±0.8 μg/g。提出了 SPE 技术。固相萃取包括调节、加样、用纯水和 0.1 mol/L 盐酸溶液逐步洗脱等步骤。使用分光光度计 SF-56 在分析波长 286 nm 处测量吸光度。为了评估药物制剂色谱(SPE)分离过程中样品制备的选择性(特异性),扫描了洗脱液在 200400 nm 波长范围内的吸收光谱。根据 220 和 286 nm 处的吸收峰鉴定洗脱液中的苯佐卡因。苯佐卡因的校准曲线范围为 120 μg/ml。为了确定苯佐卡因定量法的计量学特性,对每种药物制剂的样品进行了 11 次平行测定。结果表明在使用苯佐卡因定量技术测量吸光度时,建议只使用洗脱液(盐酸溶液)的第一部分,体积为 510 ml。对于包含 SPE 阶段的技术,药物配方中苯佐卡因平均浓度的相对误差为 1.28% 至 1.34%,而对于不包含 SPE 阶段的技术,相对误差为 1.86% 至 2.02%。使用聚丙稀吸附剂对药物制剂中苯佐卡因进行分光光度法定量的改良技术与不使用 SPE 的技术进行比较后发现,两者在重现性方面没有显著的统计学差异。在不使用 SPE 的改良技术中,苯佐卡因的浓度和测定相对误差平均增加了 48.0%。使用选择性低聚果糖吸附剂制备样品以测定药物制剂中苯佐卡因定量的可能性已经得到证实。在样品制备阶段使用吸附剂进行固相萃取,可将所分析药物制剂中苯佐卡因分光光度法定量的系统误差平均降低 79.2%。
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APPLICATION OF SELECTIVE HYPROMELLOSE SORBENT FOR THE BENZOCAINE QUANTITATION IN PHARMACEUTICAL FORMULATIONS
Introduction. In quality control of pharmaceutical formulations, there are methodological approaches based on the preliminary separation of sample components and approaches without preliminary separation. The use of solid-phase extraction (SPE) allows to separate analytes during sample prepa-ration, with the separation selectivity determining the analysis selectivity as a whole. Currently, sorbents that provide selectivity in interaction with the analyte are of interest. Aim. Evaluation of the metrological characteristics of benzocaine quantitation by UV-spectrophotometry in certain pharmaceutical formulations using hypromellose sorbent for solid-phase extraction. Material and methods. The sorbent using a method developed by us was obtained. Benzocaine (FS.2.1.0634, Russia State Pharmacopoeia XV ed.) to form active binding sites in sorbent structure was applied. The sorbent structure is polycyanoacrylate matrix with hypromellose fragments, the sur-face area is 255.50 m2/g, pore volume is 0.1433 cm3, pore diameter is 5.32 nm. The sorption capacity of hypromellose sorbent for benzocaine was 12.2±0.8 μg/g. The SPE technique is proposed. SPE includes the stages: conditioning, sample addition and step-by-step elution with purified water and hydrochloric acid solution 0.1 mol/L. The spectrophotometer SF-56 was used to measure the absorbance at an analytical wavelength of 286 nm. To evaluate the selectivity (specificity) of sample preparation during chromatographic (SPE) separation of pharmaceutical formulations, absorption spectra of eluates in the wavelength range of 200400 nm were scanned. The benzocaine identification in the eluate was carried out based on absorption peaks at 220 and 286 nm. The benzocaine calibration curve in the range of 120 μg/ml. To determination the metrological characteristics of benzocaine quan-titation method, 11 parallel determinations of samples of each pharmaceutical formulation were made. Results. When realizing the benzocaine quantitation technique for measuring absorbance, it is advisable to use only the first portions of eluate (a solu-tion of hydrochloric acid) in a volume of 510 ml were obtained. The relative error of benzocaine average concentration in the pharmaceutical formula-tions ranged from 1.28 to 1.34% for technique that included the SPE stage, and from 1.86 to 2.02% for technique that did not include it. A comparison of the modifications of the spectrophotometric quantitation of benzocaine in pharmaceutical formulation using hypromellose sorbent and technique without the SPE did not reveal a statistically significant difference in reproducibility. For the modification technique without SPE, an increase of benzo-caine concentration and in determination relative error by an average of 48.0% were observed. Conclusion. The possibility of using a selective hypromellose sorbent for sample preparation for benzocaine quantitation determination in pharmaceu-tical formulations has been showed. The use of a sorbent for SPE at the sample preparation stage reduces the systematic error of benzocaine spectro-photometry quantitation for the analyzed pharmaceutical formulations by an average of 79.2%.
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