Improving the accuracy of toxicity prediction models for liver injuries is a key element in evaluating the safety of drugs and chemicals. Mechanism-based information derived from expression (transcriptomic) data, in combination with machine-learning methods, promises to improve the accuracy and robustness of current toxicity prediction models. Deep neural networks (DNNs) have the advantage of automatically assembling the relevant features from a large number of input features. This makes them especially suitable for modeling transcriptomic data, which typically contain thousands of features. Here, we gaged gene- and pathway-level feature selection schemes using single- and multi-task DNN approaches in predicting chemically induced liver inj...
In clinical trials, animal and cell line models are often used to evaluate the potential toxic effec...
Drug discovery is a costly process which usually takes more than 10 years and billions of dollars fo...
The liver and the kidney are the most common targets of chemical toxicity, due to their major metabo...
Improving the accuracy of toxicity prediction models for liver injuries is a key element in evaluati...
Improving the accuracy of toxicity prediction models for liver injuries is a key element in evaluati...
Motivation: Drug-induced liver injury (DILI) is one of the primary problems in drug development. Ear...
Drug-induced liver injury (DILI) is a severe adverse reaction caused by drugs and may result in acut...
In this work, a gene expression data based deep learning model was developed to predict DILI in adva...
Drug-induced intrahepatic cholestasis (DIC) is a main type of hepatic toxicity that is challenging t...
A major challenge in drug development is safety and toxicity concerns due to drug side effects. One ...
Efficient high-throughput transcriptomics (HTT) tools promise inexpensive, rapid assessment of possi...
Drug-induced liver injury (DILI) has been the single most frequent cause of safety-related drug mark...
Predicting unanticipated harmful effects of chemicals and drug molecules is a difficult and costly t...
Toxicity prediction is very important to public health. Among its many applications, toxicity predic...
© 2020 American Chemical Society. As a critical issue in drug development and postmarketing safety s...
In clinical trials, animal and cell line models are often used to evaluate the potential toxic effec...
Drug discovery is a costly process which usually takes more than 10 years and billions of dollars fo...
The liver and the kidney are the most common targets of chemical toxicity, due to their major metabo...
Improving the accuracy of toxicity prediction models for liver injuries is a key element in evaluati...
Improving the accuracy of toxicity prediction models for liver injuries is a key element in evaluati...
Motivation: Drug-induced liver injury (DILI) is one of the primary problems in drug development. Ear...
Drug-induced liver injury (DILI) is a severe adverse reaction caused by drugs and may result in acut...
In this work, a gene expression data based deep learning model was developed to predict DILI in adva...
Drug-induced intrahepatic cholestasis (DIC) is a main type of hepatic toxicity that is challenging t...
A major challenge in drug development is safety and toxicity concerns due to drug side effects. One ...
Efficient high-throughput transcriptomics (HTT) tools promise inexpensive, rapid assessment of possi...
Drug-induced liver injury (DILI) has been the single most frequent cause of safety-related drug mark...
Predicting unanticipated harmful effects of chemicals and drug molecules is a difficult and costly t...
Toxicity prediction is very important to public health. Among its many applications, toxicity predic...
© 2020 American Chemical Society. As a critical issue in drug development and postmarketing safety s...
In clinical trials, animal and cell line models are often used to evaluate the potential toxic effec...
Drug discovery is a costly process which usually takes more than 10 years and billions of dollars fo...
The liver and the kidney are the most common targets of chemical toxicity, due to their major metabo...