This study aimed to propose a methodology for developing a mechanistic model for viral clearance of the minute virus of mice (MVM) on flow-through anion exchange (AEX) chromatography. Protein surface analysis was applied to investigate the possibility of molecular interaction between the recombinant biotherapeutic and MVM. The protein product-free Tris buffers were spiked with MVM, and the MVM elution profile from AEX chromatography was quantitatively analyzed using quantitative polymerase chain reaction (qPCR) for pooled fractions. GoSilico™ Chromatography Modeling Software was applied to develop the mechanistic models for MVM species. For evaluating the visual fit of the developed model, the R of intact MVM virions and uncoated capsids between the simulated and measured amount in each fraction are 0.880 and 0.948, respectively. Response surface plots of logarithmic reduction values (LRV) against pH and conductivity in loaded sample were generated to show the range for suitable loaded sample conditions for achieving a good LRV. To evaluate the applicability of the developed MVM elution model to a recombinant biotherapeutic, two demonstrations of AEX chromatography purification were performed with a loaded sample of a model monoclonal antibody. The peaks of the MVM species in the elution step of both runs were accurately simulated by the developed model. In addition, to assess the possibility of molecular interaction between the virus and the target protein significantly affecting the MVM elution behavior, the antibody's surface was evaluated in terms of hydrophobicity/hydrophilicity using surface analysis.
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http://dx.doi.org/10.1002/btpr.3516 | DOI Listing |
J Chromatogr A
January 2025
Genetics Guided Dementia Discovery (G2D2), Eisai, Inc. 35 Cambridge Park Drive, Suite 200, Cambridge, MA, 02140, USA.
The current study investigates the use of mixed-mode chromatography as a combination of anion-exchange (AEX) and hydrophobic interaction chromatography (HIC) for the analysis and purification of single-stranded antisense oligonucleotides with stereo-controlled phosphorothioate inter- nucleotide linkages. Initially a Scherzo-SS-C18 trimodal stationary phase with reversed-phase/AEX/ cation-exchange (CEX) functionalities is systematically evaluated to reveal the presence of U-shaped retention composed of two retention modes namely AEX and HIC, where the latter was also observed on related trimodal Scherzo SM and SW analogues. For the first time, retention and separation of deprotected oligonucleotides was described on a single mixed-mode column using a combination of AEX and HIC.
View Article and Find Full Text PDFMol Ther Methods Clin Dev
December 2024
Process and Analytical Sciences, BioPharmaceuticals Development (BPD), R&D, AstraZeneca, Gaithersburg, MD, USA.
J Chromatogr A
January 2025
Analytical Development, BDL, PDS&T, AbbVie Bioresearch Center, 100 Research Drive, Worcester, MA 01605, USA; Previously Purification Development, BDL, PDS&T, AbbVie Bioresearch Center, 100 Research Drive, Worcester, MA 01605, USA.
Significant aggregation challenges were encountered during the manufacturing processing of an immunocytokine diabody fusion protein. To mitigate this issue and reduce aggregates in the purification process, a variety of depth filters were evaluated for harvest clarification and post-Protein A intermediate filtration. Emphaze™ AEX Hybrid Purifier, a fully synthetic quaternary amine functionalized anion exchange (AEX) nonwoven filter, was found to be particularly effective in removing aggregates during both harvest clarification and post-Protein A intermediate filtration steps.
View Article and Find Full Text PDFJ Pharm Sci
November 2024
Biologics Drug Product Development, AbbVie Bioresearch Center, Worcester, MA 01605, United States. Electronic address:
Adeno-Associated Virus (AAV) is often selected as the vector of choice for gene therapy due to its superior clinical performance compared to other gene delivery systems. Currently the characterization of AAV degradation, especially the chemical degradation of capsid, has been limited due to lack of suitable methods. Our study using AAV9 as a model molecule shows that anion exchange chromatography (AEX) as a charge-based separation method has limitations in monitoring the chemical degradation of AAV9 capsid due to a confounding effect from DNA cargo ejection.
View Article and Find Full Text PDFBiotechnol Prog
October 2024
Biologics Technology Research Laboratories I, Biologics Division, Daiichi Sankyo Co., Ltd., Akaiwa, Gunma, Japan.
This study aimed to propose a methodology for developing a mechanistic model for viral clearance of the minute virus of mice (MVM) on flow-through anion exchange (AEX) chromatography. Protein surface analysis was applied to investigate the possibility of molecular interaction between the recombinant biotherapeutic and MVM. The protein product-free Tris buffers were spiked with MVM, and the MVM elution profile from AEX chromatography was quantitatively analyzed using quantitative polymerase chain reaction (qPCR) for pooled fractions.
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