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As biologics grow more complex, cell line development remains a key driver of speed, yield, and manufacturability. What was once a technical milestone is now a competitive differentiator, directly impacting time to Investigational New Drug (IND), cost of goods, and long-term scalability.
In this episode of Off Script, we spoke with Brett Verstak, director of cell line development at Abzena, to discuss how advanced Chinese hamster ovary (CHO)-based platforms, glutamine synthetase (GS) knockout systems, automation, and AI-driven workflows are accelerating clone selection and reducing downstream risk. The conversation explores persistent bottlenecks in hard-to-express proteins, the value of integrated upstream development models, and how smarter platform design is helping drug developers move complex biologics to the clinic faster.
By Pharma Manufacturing5
66 ratings
As biologics grow more complex, cell line development remains a key driver of speed, yield, and manufacturability. What was once a technical milestone is now a competitive differentiator, directly impacting time to Investigational New Drug (IND), cost of goods, and long-term scalability.
In this episode of Off Script, we spoke with Brett Verstak, director of cell line development at Abzena, to discuss how advanced Chinese hamster ovary (CHO)-based platforms, glutamine synthetase (GS) knockout systems, automation, and AI-driven workflows are accelerating clone selection and reducing downstream risk. The conversation explores persistent bottlenecks in hard-to-express proteins, the value of integrated upstream development models, and how smarter platform design is helping drug developers move complex biologics to the clinic faster.

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