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PMID: 30255339 Published · epublish English Journal Article

CFD Supported Investigation of Shear Induced by Bottom-Mounted Magnetic Stirrer in Monoclonal Antibody Formulation.

Pharmaceutical research ·Vol. 35 ·No. 11 ·2018-09-25 ·页码 215

Ladner T, Odenwald S, Kerls K, Zieres G, Boillon A, Bœuf J

Abstract

Biological pharmaceutical unit operations like homogenization or pooling of liquids are often performed in stirred vessels. Bottom-mounted magnetic stirrers are usually the system of choice in drug product manufacturing, because bottom-mounted magnetic stirrers are considered to be gentle mixing systems. Nevertheless, magnetic stirrers can cause shear stress and, thus, lead to protein damage. This study uses computational fluid dynamics (CFD), because flow and shear rates cannot easily be measured at the spot of interest. The investigation utilizes CFD models, which were checked for plausibility by comparing experimental results and model outcome. The investigators first modeled macroscopic flow across a range of vessel volume capacities. Subsequently, detailed models focusing on two locations (bearing gap (2 mm - 3.5 mm) and spigot gap (40 μm - 80 μm)) were developed. The macroscopic flow modeling showed that the direction of flow varies based on the vessel volume capacity. The detailed CFD model estimated significant flow through the bearing gap. However, the calculated shear rates in the bearing gap were always lower than the shear rates which occur directly next to the impeller tip. The CFD model calculated significantly higher shear rates in the spigot gap and flow in the lower microliter range. Shear rates at the impeller tip are typically used as parameter to characterize stirred mixing systems. Although higher shear rates were found in the spigot gap, these higher shear rates can most likely be neglected for most applications due to non-significant flow through the spigot gap.

Keywords
CFD simulation drug product magnetic stirrer monoclonal antibody shear stress
MeSH 主题词
Antibodies, Monoclonal/chemistry Computer Simulation Drug Compounding/instrumentation Equipment Design Hydrodynamics Magnetics/instrumentation Models, Chemical Stress, Mechanical
化学物质
Antibodies, Monoclonal
作者与单位
共 6 位作者,点击展开单位 / ORCID
Ladner Tobias
Roche Diagnostics Deutschland GmbH, Sandhofer Str. 116, 68305, Mannheim, Germany.
Odenwald Sebastian
Roche Diagnostics Deutschland GmbH, Sandhofer Str. 116, 68305, Mannheim, Germany.
Kerls Kevin
Roche Diagnostics Deutschland GmbH, Sandhofer Str. 116, 68305, Mannheim, Germany.
Zieres Gerald
Roche Diagnostics Deutschland GmbH, Sandhofer Str. 116, 68305, Mannheim, Germany.
Boillon Adeline
F. Hoffmann-La Roche Ltd., Grenzacherstrasse 124, 4070, Basel, Switzerland.
Bœuf Julien
Roche Diagnostics Deutschland GmbH, Sandhofer Str. 116, 68305, Mannheim, Germany. [email protected].
Article Info
Journal
Pharmaceutical research
Abbr.
Pharm Res
ISSN
1573-904X
Corresponding email
Published
2018-09-25
电子出版
2018-00-25
页码
215
Language
English
Country/Region
United States
NLM ID
8406521
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