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首页> 外文期刊>International Journal of Pharmaceutics >Dual chamber cartridges in a continuous pharmaceutical freeze-drying concept: Determination of the optimal dynamic infrared heater temperature during primary drying
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Dual chamber cartridges in a continuous pharmaceutical freeze-drying concept: Determination of the optimal dynamic infrared heater temperature during primary drying

机译:在连续的药物冷冻干燥概念中的双室墨盒:在初级干燥过程中确定最佳动态红外线加热器温度

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摘要

The applicability of DCCs in a continuous freeze-drying concept based on spin freezing and infrared heating was evaluated. Maximum applicable filling volume was evaluated. Secondly the mechanistic model for the determination of the optimal dynamic infrared heater temperature during primary drying of regular vials during continuous freeze-drying was adapted and validated for DCCs. Finally, since spin frozen DCCs may be more prone to choked flow due to the small neck opening and the large product surface area, it was evaluated if the choked flow constraints in the model could be increased to improve the efficiency of the drying process. The experiments revealed that the maximum allowable filling volume for spin freezing at the current experimental setup was 0.8 ml which is 80% of the maximum filling volume. Applying the mechanistic model for the determination of the optimal dynamic infrared heater temperature during primary drying of the studied DCCs and experimentally verifying this determined infrared heater temperature trajectory resulted in an elegant freeze-dried product without visual signs of collapse. The experimentally determined primary drying time agreed with the one calculated based on the mechanistic model. Choked flow did not occur during the continuous freeze-drying of DCCs containing 3% sucrose or 3% mannitol.
机译:评价基于旋转冷冻和红外加热的连续冷冻干燥概念的DCCS在连续冷冻干燥概念中的适用性。评估最大适用的填充体积。其次,适用于在连续冷冻干燥期间常规样品瓶的初级干燥期间确定最佳动态红外加热器温度的机制模型进行了调整和验证了DCC。最后,由于旋转冷冻DCC由于小颈部开口和大产品表面积而易于窒息流量,因此如果可以增加模型中的窒息的流量约束以提高干燥过程的效率,则评估它。实验表明,在当前实验装置处旋转冷冻的最大允许填充体积为0.8mL,其为最大填充体积的80%。应用机械模型在研究DCC的初次干燥期间确定最佳动态红外加热器温度,并通过实验验证这种确定的红外加热器温度轨迹,导致优雅的冷冻干燥产品,没有视觉崩溃的迹象。通过基于机械模型计算的实验确定的初级干燥时间。在连续的含有3%蔗糖或3%甘露醇的DCC的连续冷冻干燥期间没有发生窒息的流动。

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