首页> 外文期刊>Pharmaceutical development and technology >In situ nondestructive sediment characterization and resuspendability evaluation of concentrated aqueous paliperidone palmitate suspensions in prefilled syringes by low-field one-dimensional pulsed-field gradient NMR profilometry.
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In situ nondestructive sediment characterization and resuspendability evaluation of concentrated aqueous paliperidone palmitate suspensions in prefilled syringes by low-field one-dimensional pulsed-field gradient NMR profilometry.

机译:通过低场一维脉冲场梯度NMR轮廓测定法对预填充注射器中浓缩的帕潘立酮棕榈酸酯水溶液的悬浮液进行原位非破坏性沉积物表征和重悬性评估。

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摘要

This work aims to demonstrate the usefulness of a low-field one-dimensional pulsed-field gradient NMR (1D pfg NMR) profilometry technique to enable in situ nondestructive sediment characterization and resuspendability quantification of concentrated prefilled injectable suspensions. Aqueous paliperidone palmitate suspensions were used as model samples and low-intensity centrifugation was evaluated as a long-term gravity simulation approach. The low-field 1D pfg NMR technique allowed a detection zone of 2.5 cm in height for water content measurement of syringe samples using a Teflon syringe holder. Thus, the sediment compactness could be deduced from its water content. Quantitative evaluation of resuspendability was realized by front tracking of the NMR profile signals, which yielded the exponential sediment volume decay constant as a resuspendability quantification parameter. The study shows that both active ingredient particle size distribution and storage temperature had significant effects on the sedimentation rate and the resuspendability of the suspensions. The centrifugation method proved to be useful as a long-term gravity simulation and screening method, although the results should be interpreted with caution due to its higher acceleration and compression force imposed on the active ingredient particles.
机译:这项工作旨在证明低场一维脉冲场梯度NMR(1D pfg NMR)轮廓仪技术的实用性,以实现原位非破坏性沉积物表征和浓缩的预填充可注射悬浮液的可重悬浮性定量分析。帕潘立酮棕榈酸酯水溶液悬浮液用作模型样品,低强度离心评估为长期重力模拟方法。低场1D pfg NMR技术允许使用Teflon注射器支架在2.5 cm高的检测区域进行注射器样品的水含量测量。因此,可以从其含水量推断出沉积物的致密性。通过对NMR谱图信号进行前跟踪来实现对可重悬浮性的定量评估,该信号产生了作为重悬浮性量化参数的指数沉积物体积衰减常数。研究表明,活性成分的粒径分布和储存温度均对悬浮液的沉降速率和可重悬浮性产生重大影响。离心法被证明是一种长期的重力模拟和筛选方法,尽管由于对活性成分颗粒施加的加速度和压缩力较高,因此应谨慎解释结果。

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