Automated sample preparation of protein solid dosage forms: Novel application for the tablet processing workstation

Biological macromolecule solid dosage forms represent the frontier of orally administered pharmaceuticals. Analysis of these drug products poses new challenges compared to traditional small molecule tablets. In this study we demonstrate the first, to our knowledge, automated Tablet Processing Workst...

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Main Authors: Ivana Fileš, Vincent Andersson
Format: Article
Language:English
Published: Elsevier 2023-08-01
Series:SLAS Technology
Online Access:http://www.sciencedirect.com/science/article/pii/S247263032300016X
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author Ivana Fileš
Vincent Andersson
author_facet Ivana Fileš
Vincent Andersson
author_sort Ivana Fileš
collection DOAJ
description Biological macromolecule solid dosage forms represent the frontier of orally administered pharmaceuticals. Analysis of these drug products poses new challenges compared to traditional small molecule tablets. In this study we demonstrate the first, to our knowledge, automated Tablet Processing Workstation (TPW) sample preparation of large molecule tablets. Tablets containing a modified version of human insulin were tested for content uniformity and the automated method was successfully validated for recovery, carryover and displayed manual method equivalency in repeatability and in-process stability. Per TPW's ability to process one sample sequentially, the total analysis cycle time is, in fact, increased. In lieu, a net gain in scientist productivity is realized by enabling continuous operation reducing analytical scientist labor time by 71% compared to manually conducted sample preparation.
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spelling doaj.art-69a603ff0d664f08a2d15c37da0376692023-08-09T04:33:29ZengElsevierSLAS Technology2472-63032023-08-01284258263Automated sample preparation of protein solid dosage forms: Novel application for the tablet processing workstationIvana Fileš0Vincent Andersson1Global Research Technologies, Novo Nordisk A/S, Novo Nordisk Park, Måløv 2760, DenmarkCorresponding author.; Global Research Technologies, Novo Nordisk A/S, Novo Nordisk Park, Måløv 2760, DenmarkBiological macromolecule solid dosage forms represent the frontier of orally administered pharmaceuticals. Analysis of these drug products poses new challenges compared to traditional small molecule tablets. In this study we demonstrate the first, to our knowledge, automated Tablet Processing Workstation (TPW) sample preparation of large molecule tablets. Tablets containing a modified version of human insulin were tested for content uniformity and the automated method was successfully validated for recovery, carryover and displayed manual method equivalency in repeatability and in-process stability. Per TPW's ability to process one sample sequentially, the total analysis cycle time is, in fact, increased. In lieu, a net gain in scientist productivity is realized by enabling continuous operation reducing analytical scientist labor time by 71% compared to manually conducted sample preparation.http://www.sciencedirect.com/science/article/pii/S247263032300016X
spellingShingle Ivana Fileš
Vincent Andersson
Automated sample preparation of protein solid dosage forms: Novel application for the tablet processing workstation
SLAS Technology
title Automated sample preparation of protein solid dosage forms: Novel application for the tablet processing workstation
title_full Automated sample preparation of protein solid dosage forms: Novel application for the tablet processing workstation
title_fullStr Automated sample preparation of protein solid dosage forms: Novel application for the tablet processing workstation
title_full_unstemmed Automated sample preparation of protein solid dosage forms: Novel application for the tablet processing workstation
title_short Automated sample preparation of protein solid dosage forms: Novel application for the tablet processing workstation
title_sort automated sample preparation of protein solid dosage forms novel application for the tablet processing workstation
url http://www.sciencedirect.com/science/article/pii/S247263032300016X
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