A Novel MATLAB?-Algorithm-Based Video Analysis to Quantitatively Determine Solution Creeping in Intact Pharmaceutical Glass Vials

Daniel Molnar,Martina Rohm, Johannes Wutz, Ingrid Rivec, Annika Michel, Gina Klotz,Jurgen Hubbuch,Katharina Schindowski,Ingo Presser

EUROPEAN JOURNAL OF PHARMACEUTICS AND BIOPHARMACEUTICS(2022)

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Abstract
During the filling process of a biopharmaceutical drug product (DP), a liquid DP film might creep up the inner vial wall which is barely discernible, appears as milky-white haze after lyophilisation and is known as fogging. Creeping and fogging are mainly dependent on the primary packaging material surface and its hydration, vial preparation process as well as DP composition. The occurrence of both can impede visual inspection and might lead to DP rejection. Hence, our studies focused on the early detection of liquid solution and glass vial surface interaction directly after filling. For a fast and highly sensitive evaluation a novel video-based analysis was used. To our knowledge, this is the first time a MATLAB (R)-algorithm-based video analysis was applied to quantitatively determine creeping time-resolved. Furthermore, creeping in dependence of vial processing sites, surfactant type and concentration, filling temperature, and vial format were investigated. The results were verified using orthogonal conventional methods such as surface tension, wetting behaviour, and contact angle measurements, as well as ToF-SIMS, ICP-MS, and SEM. Additionally, the methods applied were assessed regarding their cross-validation capability. The observations indicate that the vial preparation process can have a pronounced impact on alteration of the glass vial surface and related creeping behaviour of the filled solution.
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Key words
Fogging,Creeping,MATLAB (R) algorithm,Lyophilisation,Wetting,Contact angle,Polysorbate,Critical micelle concentration,Vial process,Glass vial inner surface
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