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Pharma Tech Outlook | Wednesday, September 08, 2021
Challenges faced by Bioanalysis require innovation and creativity.
Fremont, CA: Analysis of cell and gene therapies and oligonucleotide modalities necessitates more than what traditional chromatographic or even ligand-binding methods can provide. These highly complex therapies involve bioanalytical scientists with expertise in molecular biology and immunogenicity methodologies, as well as the ability to perform cell-based assays and leverage flow cytometry in a good practise (GxP) environment.
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Skill and capacity shortages are the challenges faced by Bioanalysis. The rapid advancement of bioanalytical needs for new modalities has resulted in a shortage of skills and capacity. Bioanalytical scientists who previously worked as chemists or chromatographers are now studying molecular and cell biology. They must be adaptable and flexible, with a much more comprehensive skill set, and be more creative and versatile as techniques evolve.
Bioanalytical scientists should do more than just execute methods; they must hold the broader context, the end goal of the therapy, and its mechanism of action in mind as assays are developed to create the necessary data. The variability in reagent quality is another significant challenge for bioanalytical scientists. A substantial amount of time and effort is spent ensuring that lot-to-lot variability does not impact the results generated over time to support a program for both ELISA and cell-based assay reagents.
There is also a demand for bioanalytical labs that can perform flow cytometry at the high-quality level needed for regulatory filings. While hundreds of labs can perform chromatography and ligand-binding assays, few have the necessary expertise in molecular biology or perform flow cytometry to regulatory approval standards.
Overcoming the complications of Bioanalysis requires innovation and creativity. Both pharmaceutical companies and contract research organizations (CROs) must be innovative to provide the necessary data and find solutions to new challenges, such as cross-validation of a flow cytometry method in two laboratories, as they arise. Problems can be effectively solved by bioanalytical scientists who work with clinicians. It is critical that the bioanalytical scientists who have made progress share their insights with others for further advancement of techniques because no one in the industry has long-term experience with these methods.
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