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Optimization of the Secondary Drying Step in Freeze Drying Using TDLAS Technology

机译:使用TDLAS技术优化冷冻干燥中的二次干燥步骤

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摘要

The secondary drying phase in freeze drying is mostly developed on a trial-and-error basis due to the lack of appropriate noninvasive process analyzers. This study describes for the first time the application of Tunable Diode Laser Absorption Spectroscopy, a spectroscopic and noninvasive sensor for monitoring secondary drying in laboratory-scale freeze drying with the overall purpose of targeting intermediate moisture contents in the product. Bovine serum albumin/sucrose mixtures were used as a model system to imitate high concentrated antibody formulations. First, the rate of water desorption during secondary drying at constant product temperatures (−22°C, −10°C, and 0°C) was investigated for three different shelf temperatures. Residual moisture contents of sampled vials were determined by Karl Fischer titration. An equilibration step was implemented to ensure homogeneous distribution of moisture (within 1%) in all vials. The residual moisture revealed a linear relationship to the water desorption rate for different temperatures, allowing the evaluation of an anchor point from noninvasive flow rate measurements without removal of samples from the freeze dryer. The accuracy of mass flow integration from this anchor point was found to be about 0.5%. In a second step, the concept was successfully tested in a confirmation experiment. Here, good agreement was found for the initial moisture content (anchor point) and the subsequent monitoring and targeting of intermediate moisture contents. The present approach for monitoring secondary drying indicated great potential to find wider application in sterile operations on production scale in pharmaceutical freeze drying.
机译:由于缺乏合适的非侵入式过程分析仪,冷冻干燥中的二次干燥阶段主要是基于反复试验而开发的。这项研究首次描述了可调谐二极管激光吸收光谱法的应用,这是一种光谱无创传感器,用于监测实验室规模的冷冻干燥中的二次干燥,其总体目的是针对产品中的中间水分含量。牛血清白蛋白/蔗糖混合物用作模拟高浓度抗体制剂的模型系统。首先,针对三种不同的货架温度,研究了在恒定产品温度(-22°C,-10°C和0°C)下二次干燥过程中水的解吸速率。样品瓶的残留水分含量通过卡尔·费休滴定法测定。执行平衡步骤以确保所有小瓶中的水分均匀分布(在1%以内)。残留的水分显示出在不同温度下与水的解吸速率呈线性关系,从而无需从冷冻干燥机中取出样品即可通过无创流速测量评估锚点。从该锚定点开始的质量流积分的精度被发现为约0.5%。第二步,在确认实验中成功测试了该概念。在这里,对于初始水分含量(锚点)以及随后的监测和目标中间水分含量达成了一致。目前用于监测二次干燥的方法表明,在制药冷冻干燥生产规模的无菌操作中有更广泛的应用潜力。

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