Please use this identifier to cite or link to this item: http://hdl.handle.net/10362/182889
Title: Harnessing Raman spectroscopy for cell therapy bioprocessing
Author: Costa, Marta H.G.
Carrondo, Inês
Isidro, Inês A.
Serra, Margarida
Keywords: Bioprocess control
Bioreactors
Cell therapy manufacturing
Critical process parameters
Critical quality attributes
Process analytical technology
Biotechnology
Bioengineering
Applied Microbiology and Biotechnology
Issue Date: Dec-2024
Abstract: Cell therapy manufacturing requires precise monitoring of critical parameters to ensure product quality, consistency and to facilitate the implementation of cost-effective processes. While conventional analytical methods offer limited real-time insights, integration of process analytical technology tools such as Raman spectroscopy in bioprocessing has the potential to drive efficiency and reliability during the manufacture of cell-based therapies while meeting stringent regulatory requirements. The non-destructive nature of Raman spectroscopy, combined with its ability to be integrated on-line with scalable platforms, allows for continuous data acquisition, enabling real-time correlations between process parameters and critical quality attributes. Herein, we review the role of Raman spectroscopy in cell therapy bioprocessing and discuss how simultaneous measurement of distinct parameters and attributes, such as cell density, viability, metabolites and cell identity biomarkers can streamline on-line monitoring and facilitate adaptive process control. This, in turn, enhances productivity and mitigates process-related risks. We focus on recent advances integrating Raman spectroscopy across various manufacturing stages, from optimizing culture media feeds to monitoring bioprocess dynamics, covering downstream applications such as detection of co-isolated contaminating cells, cryopreservation, and quality control of the drug product. Finally, we discuss the potential of Raman spectroscopy to revolutionize current practices and accelerate the development of advanced therapy medicinal products.
Description: Funding Information: This work was supported by Funda\u00E7\u00E3o para a Ci\u00EAncia e a Tecnologia (FCT) through project CARTool (DOI 10.54499/2022.07312.PTDC) and by the European Union's EIC Transition programme under Grant Agreement n\u00B0 101113067. This work was also funded by FCT/Minist\u00E9rio da Ci\u00EAncia, Tecnologia e Ensino Superior (FCT/MCTES, Portugal) through national funds to iNOVA4Health (UIDB/04462/2020 and UIDP/04462/2020) and the Associate Laboratory LS4FUTURE (LA/P/0087/2020). Publisher Copyright: © 2024
Peer review: yes
URI: http://hdl.handle.net/10362/182889
DOI: https://doi.org/10.1016/j.biotechadv.2024.108472
ISSN: 0734-9750
Appears in Collections:Home collection (ITQB)

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