AI Article Synopsis

  • The current method for drug discovery involves testing a variety of drug candidates on target molecules, with high-throughput kinetic measurements offering advantages in understanding binding affinity.
  • Despite advancements in technology, there are still challenges in data processing, such as inadequate models for poor-quality data, time-consuming interfaces, and lack of historical data integration.
  • The solution proposed is an automated system for analyzing, storing, and retrieving kinetic binding data, which improves data quality management and enhances the analysis of molecular interactions and competition.

Article Abstract

The state-of-the-art industrial drug discovery approach is the empirical interrogation of a library of drug candidates against a target molecule. The advantage of high-throughput kinetic measurements over equilibrium assessments is the ability to measure each of the kinetic components of binding affinity. Although high-throughput capabilities have improved with advances in instrument hardware, three bottlenecks in data processing remain: (1) intrinsic molecular properties that lead to poor biophysical quality in vitro are not accounted for in commercially available analysis models, (2) processing data through a user interface is time-consuming and not amenable to parallelized data collection, and (3) a commercial solution that includes historical kinetic data in the analysis of kinetic competition data does not exist. Herein, we describe a generally applicable method for the automated analysis, storage, and retrieval of kinetic binding data. This analysis can deconvolve poor quality data on-the-fly and store and organize historical data in a queryable format for use in future analyses. Such database-centric strategies afford greater insight into the molecular mechanisms of kinetic competition, allowing for the rapid identification of allosteric effectors and the presentation of kinetic competition data in absolute terms of percent bound to antigen on the biosensor.

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Source
http://dx.doi.org/10.1177/2472630317705611DOI Listing

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