Toxicological Sciences · 2019 · 31 citations · 34 references
EngineeringMachine LearningSystems Toxicology ApproachRenal FunctionPredictive BiomarkersToxicologyBiostatisticsChronic Kidney DiseasePredictive ToxicologyMedicineKidney FailureRenal PathophysiologyMetabolomicsDeep LearningPharmacologyBioinformaticsCell BiologyTarget PredictionUrologyKidney ToxicityForensic ToxicologyComputational BiologyEnvironmental ToxicologySystems BiologyDevelopment ProcessNephrologyKidney ResearchToxicogenomics
The failure to predict kidney toxicity of new chemical entities early in the development process before they reach humans remains a critical issue. Here, we used primary human kidney cells and applied a systems biology approach that combines multidimensional datasets and machine learning to identify biomarkers that not only predict nephrotoxic compounds but also provide hints toward their mechanism of toxicity. Gene expression and high-content imaging-derived phenotypical data from 46 diverse kidney toxicants were analyzed using Random Forest machine learning. Imaging features capturing changes in cell morphology and nucleus texture along with mRNA levels of HMOX1 and SQSTM1 were identified as the most powerful predictors of toxicity. These biomarkers were validated by their ability to accurately predict kidney toxicity of four out of six candidate therapeutics that exhibited toxicity only in late stage preclinical/clinical studies. Network analysis of similarities in toxic phenotypes was performed based on live-cell high-content image analysis at seven time points. Using compounds with known mechanism as reference, we could infer potential mechanisms of toxicity of candidate therapeutics. In summary, we report an approach to generate a multidimensional biomarker panel for mechanistic de-risking and prediction of kidney toxicity in in vitro for new therapeutic candidates and chemical entities.
34
Leo Breiman · Machine Learning · 2001 · 119.3K citations · Full text
Scikit-learn: Machine Learning in Python
Fabián Pedregosa, Gaël Varoquaux, Alexandre Gramfort et al. · arXiv (Cornell University) · 2012 · 63.3K citations · Full text
A Next Generation Connectivity Map: L1000 Platform and the First 1,000,000 Profiles
Aravind Subramanian, Rajiv Narayan, Steven M. Corsello et al. · Cell · 2017 · 3.5K citations · Full text
Noxa, a BH3-Only Member of the Bcl-2 Family and Candidate Mediator of p53-Induced Apoptosis
Eri Oda, Rieko Ohki, Hideki Murasawa et al. · Science · 2000 · 2.1K citations
QSAR Modeling: Where Have You Been? Where Are You Going To?
Artem Cherkasov, Eugene Muratov, Denis Fourches et al. · Journal of Medicinal Chemistry · 2013 · 2K citations