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The manufacturing of modern biopharmaceuticals is evolving rapidly. Monoclonal antibody purification has emerged as a cornerstone in producing safe and effective treatments for cancer and autoimmune diseases. Multimodal chromatography (MMC) provides a powerful alternative to traditional methods. It integrates multiple interactions like hydrogen bonding and hydrophobic forces. Consequently, this technology significantly improves the selectivity of the purification process.
Recent studies emphasize the importance of resin selection in bioprocessing. This review compares all commercially available MMC resins. It analyzes performance metrics such as binding capacity and recovery rates. Furthermore, it evaluates the clearance of host cell proteins and DNA. These factors are crucial for maintaining the safety profile of mAb-based products. Therefore, manufacturers are adopting these advanced techniques to streamline production.
In addition to empirical data, the research incorporates molecular-level insights. Techniques such as NMR and molecular docking reveal how antibodies interact with chromatography ligands. This mechanistic understanding allows for a more rational selection of resins. Moreover, high-throughput screening and in silico modeling are now essential enablers. They help predict partition coefficients and optimize mobile phase modifiers.
As a result, these advances support the development of next-generation biopharmaceutical platforms. They ensure that complex molecules like bispecific antibodies and drug conjugates meet strict regulatory standards. Ultimately, improved efficiency in production may lead to better access to affordable biologics in India.
MMC offers higher selectivity compared to traditional ion-exchange or hydrophobic interaction chromatography. It combines multiple binding mechanisms, which allows for better removal of impurities like protein aggregates and host cell contaminants.
By achieving superior clearance of host cell proteins and DNA, MMC reduces the risk of immunogenic reactions in patients. This ensures that the final antibody product is of the highest therapeutic quality and meets rigorous safety standards.
Disclaimer: This content is for informational and educational purposes only. It does not constitute medical advice or professional biopharmaceutical consulting. Refer to the latest local and national guidelines for clinical practice.
References
1. Javidanbardan A et al. Multimodal Chromatography in the Downstream Processing of mAb-Based Products: Mechanisms, Strategies, and Applications. Biotechnol Bioeng. 2026 Feb 25. doi: 10.1002/bit.70171. PMID: 41738359.
2. Shukla AA, et al. Downstream processing of monoclonal antibodies--application of platform approaches. J Chromatogr B Analyt Technol Biomed Life Sci. 2007 Mar 15;848(1):28-39.
3. Halan V, et al. Multimodal Chromatography for Purification of Biotherapeutics - A Review. Curr Protein Pept Sci. 2019;20(1):4-13.

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A comprehensive review of multimodal chromatography in mAb production, focusing on mechanisms, resin selection, and its impact on biopharmaceutical purity....
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