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PMID: 38497925 Published · ppublish English Journal Article

The quest for down scale representativeness: how to exploit CFD to design a shear study for vaccines.

Pharmaceutical development and technology ·Vol. 29 ·No. 4 ·2024-04-00 ·页码 300-310

Albano A, Colomba S, Palmese A, Salvadori J, Mencuccini L, Moriconi A, Bellato F, Malzone C, Berti S, Paludi M, Valoti C, Panariello G, Cozzolino N, Pergola C

Abstract

In this work, we exploit computational fluid dynamics (CFD) to evaluate stirred tank reactor (STR) process engineer parameters (PEP) and design a scale-down system (SDS) to be representative of the formulation and filling process steps for an Aluminum adjuvanted vaccine drug product (DP). To study the shear history in the SDS we used the concept of number of passages, combined with an appropriate stirring speed down scale strategy comprising of either (i) tip speed equivalence, widely used as a scale-up criterion for a shear-sensitive product, or (ii) rotating shear, a shear metric introduced by Metz and Otto in 1957 but never used as scaling criterion. The outcome of the CFD simulations shows that the tip equivalence generates a worst-case SDS in terms of shear, whereas the rotating shear scaling approach could be used to design a more representative SDS. We monitored the trend over time for "In Vitro Relative Potency" as DP Critical Quality Attribute for both scaling approaches, which highlighted the crucial role of choosing the appropriate scaling-down approach to be representative of the manufacturing scale during process characterization studies.

Keywords
Computational fluid dynamics QbD aluminum adjuvant process development scale down system stirred tank
MeSH 主题词
Vaccines Hydrodynamics Computer Simulation Adjuvants, Immunologic/chemistry Chemistry, Pharmaceutical/methods Technology, Pharmaceutical/methods
化学物质
Vaccines Adjuvants, Immunologic
作者与单位
共 14 位作者,点击展开单位 / ORCID
Albano Andrea
Global Drug Product Development, Technical R&D-R&D, GSK, Siena, Italy.
Colomba Silvio
Global Drug Product Development, Technical R&D-R&D, GSK, Siena, Italy.
Palmese Angelo
Global Drug Product Development, Technical R&D-R&D, GSK, Siena, Italy.
Salvadori Jessica
Global Drug Product Development, Technical R&D-R&D, GSK, Siena, Italy.
Mencuccini Lorenzo
Global Drug Product Development, Technical R&D-R&D, GSK, Siena, Italy.
Moriconi Alessio
Global Drug Product Development, Technical R&D-R&D, GSK, Siena, Italy.
Bellato Federica
Analytical R&D, Technical R&D-R&D, GSK, Siena, Italy.
Malzone Carmine
Analytical R&D, Technical R&D-R&D, GSK, Siena, Italy.
Berti Stefania
Analytical R&D, Technical R&D-R&D, GSK, Siena, Italy.
Paludi Marilena
Vx CMC Statistics, Technical R&D-R&D, GSK, Siena, Italy.
Valoti Caterina
MSAT Process Science, GSC-GSK, Rosia, Italy.
Panariello Giuseppe
MSAT Process Science, GSC-GSK, Rosia, Italy.
Cozzolino Nicola
MSAT Process Science, GSC-GSK, Rosia, Italy.
Pergola Carlo
Global Drug Product Development, Technical R&D-R&D, GSK, Siena, Italy.
Article Info
Journal
Pharmaceutical development and technology
Abbr.
Pharm Dev Technol
ISSN
1097-9867
Published
2024-04-00
电子出版
2024-00-12
页码
300-310
Language
English
Country/Region
England
NLM ID
9610932
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