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首页> 外文期刊>International Journal of Pharmaceutics >Determination for dry layer resistance of sucrose under various primary drying conditions using a novel simulation program for designing pharmaceutical lyophilization cycle.
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Determination for dry layer resistance of sucrose under various primary drying conditions using a novel simulation program for designing pharmaceutical lyophilization cycle.

机译:使用设计药物冻干循环的新型模拟程序,在各种初级干燥条件下确定蔗糖的干层抗性。

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摘要

Dry layer resistance, which is the resistance of dried cake against water vapor flow generated from sublimation, is one of the important parameters to predict maximum product temperature and drying time during primary drying in lyophilization. The purpose of this study was to develop the predictive model of dry layer resistance under various primary drying conditions using the dry layer resistance obtained from a preliminary lyophilization run. When the maximum dry layer resistance was modified under the assumption that the chamber pressure is zero, the modified dry layer resistance, which is defined as specific dry layer resistance, correlated well with the sublimation rate. From this correlation, the novel predictive model including the empirical formula of sublimation rate and specific dry layer resistance is proposed. In this model, the dry layer resistance under various conditions of shelf temperature and chamber pressure was successfully predicted based on the relationship of the sublimation rate and specific dry layer resistance of the edge and center vials obtained from the product temperature in one preliminary cycle run. It is expected that this predictive model could be a practical and useful tool to predict product temperature during primary drying.
机译:干层阻力是干饼对升华产生的水蒸气流动的阻力,是预测冻干初次干燥过程中最高产品温度和干燥时间的重要参数之一。这项研究的目的是使用从初步冻干运行获得的干层电阻,开发在各种初级干燥条件下的干层电阻的预测模型。当在室压为零的假设下修改最大干层电阻时,修改后的干层电阻(定义为比干层电阻)与升华率相关性很好。基于这种关系,提出了一种新的预测模型,该模型包括升华率和比干层电阻的经验公式。在该模型中,基于在一个初步循环运行中从产品温度获得的边缘和中心小瓶的升华速率与比干层电阻的关系,成功地预测了在各种搁板温度和腔室压力条件下的干层电阻。预期该预测模型将是预测初级干燥过程中产品温度的实用工具。

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