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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
October 2025
Tosoh Bioscience LLC, 3604 Horizon Drive, King of Prussia, PA 19406, USA. Electronic address:
Recombinant adeno-associated virus (AAV) vectors have emerged as powerful gene delivery tools for the treatment of genetic disorders. However, the production of high-quality AAV vectors still poses significant challenges. In upstream manufacturing, AAV genome packaging typically results in a diverse pool of empty and partially filled capsids, as well as the desired functional virions.
View Article and Find Full Text PDFAnal Chem
September 2025
School of Pharmaceutical Sciences, University of Geneva, CMU-Rue Michel Servet 1, 1211 Geneva, Switzerland.
Encapsulation efficiency (EE) of mRNA-based therapeutics and vaccines is defined as the percentage of total mRNA that is efficiently protected by the delivery vehicle from nuclease degradation. As a critical quality attribute, EE must be assessed to ensure that sufficient mRNA evades enzymatic degradation and traverses biological barriers to reach the cellular machinery for translation, without triggering unwanted immune responses caused by free mRNA. In this study, we developed a strategy based on anion exchange chromatography (AEX) to separate lipid nanoparticles (LNPs) and free mRNA based on their charge differences.
View Article and Find Full Text PDFAnal Chim Acta
October 2025
Department of Chemistry, Zhejiang University, Hangzhou, Zhejiang, 310027, China.
Background: Oligonucleotide-based drugs have gained significant attention as a promising class of therapeutics due to their precise ability to regulate gene expression. However, the presence of impurities in these drugs can compromise their safety, efficacy, and stability. Therefore, the identification and detailed analysis of these impurities are crucial.
View Article and Find Full Text PDFBiotechnol Prog
August 2025
Purification and Filtration Business, Solventum, St. Paul, Minnesota, USA.
Clarification fidelity, including reduction of insoluble and soluble contaminants, has been demonstrated to significantly affect the performance and robustness of the Protein A capture chromatography step during the purification of monoclonal antibodies (mAb) and their derivatives expressed in CHO cell cultures. While the vast majority of previous studies have focused on the evaluation of these effects on conventional Protein A resins, in this study, we evaluated such effects on the new membrane- and fiber-based Protein A technologies. Both depth filtration and chromatographic clarification using charged functional fiber approaches have been studied, and we evaluated the effects of these methods on convective Protein A technology cycling robustness, as well as the purity of the product in the elution pool with respect to process-related contaminants.
View Article and Find Full Text PDFJ Chromatogr A
September 2025
Karlsruhe Institute of Technology (KIT), Institute of Engineering in Life Sciences, Section IV: Biomolecular Separation Engineering, Fritz-Haber-Weg 2, 76131 Karlsruhe, Germany. Electronic address:
Anion exchange chromatography (AEX) is one of the downstream unit operations that is most frequently claimed for its capability to remove viruses. However, the impact of various process parameters on virus removal by AEX is still not fully understood. Mechanistic modeling could be a promising way to approach this knowledge gap.
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