Best Practices and Guidelines (2022) for Scale-Up and Tech Transfer in Freeze-Drying Based on Case Studies. Part 1: Challenges during Scale Up and Transfer

The freeze-drying process scale-up and transfer remain a complicated and non-uniform practice. We summarized inefficient and good practices in these papers and provided some practical advice. It was demonstrated that using the same process set points/times in laboratory and commercial scale dryers m...

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Veröffentlicht in:AAPS PharmSciTech 2022-11, Vol.24 (1), p.11-11, Article 11
Hauptverfasser: Tchessalov, Serguei, Shalaev, Evgenyi, Bhatnagar, Bakul, Nail, Steven, Alexeenko, Alina, Jameel, Feroz, Srinivasan, Jayasree, Dekner, Michael, Sahni, Ekneet, Schneid, Stefan, Kazarin, Petr, McGarvey, Orla, Van Meervenne, Bert, Kshirsagar, Vaibhav, Pande, Paritosh, Philipp, Jens, Sacha, Greg, Wu, Ke, Azzarella, Joseph, Shivkumar, Gayathri, Bhatt, Shreyas
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Sprache:eng
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Zusammenfassung:The freeze-drying process scale-up and transfer remain a complicated and non-uniform practice. We summarized inefficient and good practices in these papers and provided some practical advice. It was demonstrated that using the same process set points/times in laboratory and commercial scale dryers may lead to loss of product quality (collapse or vial breakage). The emerging modeling approach demonstrated practical advantages. However, the upfront generation of some input parameters (vial heat transfer coefficient, minimum controllable pressure, and maximum sublimation rate) is essential for model utilization. While the primary drying step can be transferred with a high degree of confidence (e.g., using modeling), and secondary drying is usually fairly straightforward, predicting potential changes in product behavior during freezing remains challenging. Graphical Abstract
ISSN:1530-9932
1530-9932
DOI:10.1208/s12249-022-02463-x