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Cell Rep Methods ; 2(9): 100297, 2022 09 19.
Article in English | MEDLINE | ID: mdl-36160045

ABSTRACT

Organoids are carrying the promise of modeling complex disease phenotypes and serving as a powerful basis for unbiased drug screens, potentially offering a more efficient drug-discovery route. However, unsolved technical bottlenecks of reproducibility and scalability have prevented the use of current organoids for high-throughput screening. Here, we present a method that overcomes these limitations by using deep-learning-driven analysis for phenotypic drug screens based on highly standardized micropattern-based neural organoids. This allows us to distinguish between disease and wild-type phenotypes in complex tissues with extremely high accuracy as well as quantify two predictors of drug success: efficacy and adverse effects. We applied our approach to Huntington's disease (HD) and discovered that bromodomain inhibitors revert complex phenotypes induced by the HD mutation. This work demonstrates the power of combining machine learning with phenotypic drug screening and its successful application to reveal a potentially new druggable target for HD.


Subject(s)
Deep Learning , Huntington Disease , Humans , Huntington Disease/drug therapy , High-Throughput Screening Assays , Drug Evaluation, Preclinical , Reproducibility of Results , Organoids
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