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冻干过程中冰质量变化形状的观察及升华终点的测定:通过瓶内阻抗谱(TVIS)的应用

Observations on the Changing Shape of the Ice Mass and the Determination of the Sublimation End Point in Freeze-Drying: An Application for Through-Vial Impedance Spectroscopy (TVIS).

作者信息

Pandya Bhaskar, Smith Geoff, Ermolina Irina, Polygalov Evgeny

机构信息

DMU Lyo Group, School of Pharmacy, De Montfort University, Leicester LE1 9BH, UK.

出版信息

Pharmaceutics. 2021 Nov 2;13(11):1835. doi: 10.3390/pharmaceutics13111835.

Abstract

Models for ice sublimation from a freeze-drying vial rely on the assumption of a planar ice interface up to ~25% loss of ice mass (which is difficult to qualify) whereas single-vial determinations of the sublimation endpoint (by temperature sensors) are based on the point when the observed temperature reaches a plateau, which cannot differentiate between sublimation and desorption-drying. In this work, the real part capacitance of TVIS vial(s) containing frozen water (during sublimation drying) was measured at 100 kHz. This parameter C'(100 kHz) was shown to be highly sensitive to the shape and volume of the ice mass and is therefore a useful parameter for monitoring ice sublimation. By placing a digital camera in front of an isolated TVIS vial containing ice, it was possible to relate the changes in the shape of the ice mass with the changes in the trajectory of the time profile of C'(100 kHz) and determine the point of deviation from a planar ice interface and ultimately determine the point when the last vestiges of ice disappear. Thereafter, the same characteristics of the C'(100 kHz) time-profile were identified for those TVIS vials located out of sight of the camera in a separate full-shelf lyo study, thereby obviating the need for photographic examination.

摘要

冻干瓶中冰升华的模型依赖于这样一种假设,即直到冰质量损失约25%(这很难界定)时冰界面都是平面的,而单瓶升华终点的测定(通过温度传感器)是基于观察到的温度达到平稳点,这无法区分升华和解吸干燥。在这项工作中,在100kHz下测量了装有冷冻水的TVIS瓶(在升华干燥期间)的实部电容。该参数C'(100kHz)被证明对冰块的形状和体积高度敏感,因此是监测冰升华的一个有用参数。通过将数码相机放置在装有冰的孤立TVIS瓶前,可以将冰块形状的变化与C'(100kHz)时间曲线轨迹的变化联系起来,并确定偏离平面冰界面的点,最终确定冰最后残余消失的点。此后,在单独的全架冻干研究中,对于那些不在相机视野范围内的TVIS瓶,也确定了C'(100kHz)时间曲线的相同特征,从而无需进行照片检查。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b597/8624880/34740fad99b8/pharmaceutics-13-01835-g001.jpg

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