Posters

Optimization of Scalable rAAV Production for Gene Therapy

This poster showcases spent media analysis leveraging REBEL, which requires only 10 μL per sample and 10 minutes analysis time.

Empowering Process Optimization for a mAb-Expressing CHO Cell Line

Coupling miniature mass spectrometry (MS) with microchip capillary electrophoresis (CE) fulfills an unmet need: simple, rapid at-line nutrient quantitation.

Using CE-HPMS For Accelerated Process Development of a mAb-Expressing Cell Line

The coupling of miniature mass spectrometry (MS) to a microchip capillary electrophoresis (CE) platform provides a simple solution for at-line amino acid quantitation.

Dynamic Range Optimization for Amino Acid Quantitation with an Integrated CE-MS Analyzer

The coupling of miniature mass spectrometry (MS) to a microchip capillary electrophoresis (CE) platform provides a simple solution for amino acid quantitation.

Poster-BPI-West-2022

Rapid at line quantitation of key nutrients in cell culture media

This poster details the benefits of coupling of miniature mass spectrometry to a microchip capillary electrophoresis platform for characterizing cell media metabolites in fresh and spent media.

Quantitation of metabolites in classical and customized cell culture media by an integrated CE-MS Analyzer

Quantitation of metabolites in cell culture media by an integrated CE-MS analyzer for upstream process development

Using genomic and spent media analysis to characterize stressed CHO cultures

A Rapid Microfluidic Method for Molecular Weight Determination and Spent Media Analysis of an IgG1 Intact Protein in Growth Media

Characterizing the Analytical Performance and Reliability of Metabolite Quantitation by an Integrated CE-MS Analyzer

Rapid Analysis of Cell Therapy Media

Quantitation of CHO media nutrients and metabolites in under 180 seconds

Rapid analysis of amino acids, water soluble vitamins, biogenic amines and dipeptides in cell growth media

Rapid at line nutrient profiling from an ammonia stressed CHO cell line

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