Related Experiment Video
Updated: Jan 28, 2026

Automated Acoustic Dispensing for the Serial Dilution of Peptide Agonists in Potency Determination Assays
Published on: November 10, 2016
A Cell-Based Potency Assay for Determining the Relative Potency of Botulinum Neurotoxin A Preparations Using Manual
F Mark Dunning1, Sara Hendrickson1, Serena Wolfe1
1BioSentinel Inc., 505 S. Rosa Road, Madison, WI 53719, USA.
Abstract:
Cell-based potency assays (CBPAs) are required for the potency testing and commercial release of botulinum neurotoxin (BoNT)-based drug products. These CBPAs must account for the toxin's biological activities while meeting regulatory guidelines for precision and accuracy. Here, studies describe the characterization and qualification of the BoSapient CBPA and demonstrate that it is fit for use as a relative potency assay for BoNT/A-containing samples. The CBPA is operated in a 96-well plate format and relies upon the fluorescence emissions of a reporter that directly responds to BoNT/A activity. The BoSapient cell line expresses the BoNT/A-receptors SV2 and complex gangliosides, is responsive only to intact BoNT/A, and can robustly detect picomolar and sub-picomolar BoNT/A quantities, making the CBPA appropriate for quantifying BoNT/A-based drug products. The cell line was passaged 30 times without significant loss of reporter expression or BoNT/A sensitivity. Manual and semi-automated CBPA methods were developed and qualified according to regulatory guidelines and shown to have low bias (<4% from expected) and high precision (standard deviation < 8) across all test concentrations. Furthermore, the semi-automated method using the CBPA is demonstrated to improve intermediate precision by 39% compared to the manual method, while reducing operator dependency during method execution.
More Related Videos
Related Concept Videos
Source And Potency Of Stem Cells
Dose-Response Relationship: Potency and Efficacy
Acid and Bases: Ka, pKa, and Relative Strengths
Relative Strengths of Conjugate Acid-Base Pairs
Relative Risk
Directly Acting Muscle Relaxants: Dantrolene and Botulinum Toxin
The binding of dantrolene to the RYR1...

