Univ. Lille, CHU Lille, ULR 7365 - GRITA - Groupe De Recherche Sur Les Formes Injectables Et Technologies Associées, F-59000, Lille, France.
Univ. Lille, CHU Lille, ULR 7365 - GRITA - Groupe De Recherche Sur Les Formes Injectables Et Technologies Associées, F-59000, Lille, France.
J Pharm Biomed Anal. 2021 Jan 30;193:113732. doi: 10.1016/j.jpba.2020.113732. Epub 2020 Nov 2.
Capillary electrophoresis has been investigated to evaluate the performances of new transdermal formulations containing antiemetics. After optimization of the background electrolyte (sodium phosphate buffer (pH 2.5; 60 mM) containing 12% of ethanol (v/v)), domperidone, diphenhydramine, haloperidol, metoclopramide and promethazine were base-line resolved in 10 min. After hydrodynamic injection of the sample (0.5 psi for 7 s), the method was fully validated through the build of the accuracy profile. Trueness values ranged from -1.85 and 5.43% and relative standard deviation of intra-day and inter-day precision was lower than 6.20%. This method was found convenient for quality control of extemporaneous ready-to-use transdermal formulations with recoveries ranging from 91.2-107.8%. However, using hydrodynamic injection, limits of quantitation in the 0.3-2.6 μg.mL range, were not low enough to evaluate the permeation rate of antimetics through epidermis. Field amplified sample injection was used to improve both sensitivity and quantitation thresholds. Several parameters (nature and concentration of the protonation agent, composition of the injected solvent, applied voltage and duration of the injection) have been optimized using a multivariate approach. In the optimized conditions, signal-to-noise ratios were improved by a 600- to 2000-fold factor, regarding the antiemetic. However, the presence of salts in the simulated body fluid solution, used as receptor medium to perform permeation kinetic study, was improper to allow the stacking effect. Therefore, a liquid-liquid extraction has been developed and applied on simulated body fluid solution. Finally, this new method has been shown strongly useful to evaluate the permeation kinetic of metoclopramide through pig epidermis.
毛细管电泳已被用于评估含有止吐药的新型透皮制剂的性能。在优化背景电解质(含 12%乙醇(v/v)的磷酸钠缓冲液(pH 2.5))后,多潘立酮、苯海拉明、氟哌啶醇、甲氧氯普胺和异丙嗪在 10 分钟内基线分离。在样品(0.5 psi 7 s)的动力学注射后,通过建立准确度轮廓图对该方法进行了全面验证。准确度值范围为-1.85%至 5.43%,日内和日间精密度的相对标准偏差低于 6.20%。该方法发现方便用于质量控制临时即用型透皮制剂,回收率范围为 91.2-107.8%。然而,使用动力学注射,定量限在 0.3-2.6μg.mL 范围内,不足以评估抗恶心药通过表皮的渗透速率。场放大样品进样用于提高灵敏度和定量限。使用多元方法优化了几个参数(质子化试剂的性质和浓度、注入溶剂的组成、施加电压和注入持续时间)。在优化条件下,与止吐药相比,信号噪声比提高了 600-2000 倍。然而,模拟体液溶液中盐的存在,用作进行渗透动力学研究的受体介质,不适合允许堆积效应。因此,已经开发并应用了液 - 液萃取。最后,这种新方法已被证明对评估甲氧氯普胺通过猪表皮的渗透动力学非常有用。