Adverse effects of drugs (AEDs) continue to be a major cause of drug withdrawals in both development and postmarketing. While liver-related AEDs are a major concern for drug safety, there are few in silico models for predicting human liver toxicity for drug candidates. We have applied the quantitative structure-activity relationship (QSAR) approach to model liver AEDs. In this study, we aimed to construct a QSAR model capable of binary classification (active vs inactive) of drugs for liver AEDs based on chemical structure. To build QSAR models, we have employed an FDA spontaneous reporting database of human liver AEDs (elevations in activity of serum liver enzymes), which contains data on approximately 500 approved drugs. Approximately 200 ...
Drug induced liver injury (DILI) is one of the key safety concerns in drug development. To assess th...
Drug-induced liver injury (DILI) is a severe adverse reaction caused by drugs and may result in acut...
The toxicological screening of the numerous chemicals that we are exposed to requires significant co...
Adverse effects of drugs (AEDs) continue to be a major cause of drug withdrawals both in development...
Drug-induced liver injury (DILI) risk in humans is a complicated safety concern due to diverse mecha...
As one of the leading causes of drug failure in clinical trials, drug-induced liver injury (DILI) se...
Introduction: The data on human hepatotoxicity (drug-induced liver injury) is extremely important in...
Quantitative Structure-Activity Relationship (QSAR) modeling and toxicogenomics are used independent...
Drug Induced Liver Injury (DILI) is one of the main causes of drug attrition. The ability to predict...
Together oral bioavailability and hepatotoxicity determine the fate and failure of a new drug in cli...
Drug-induced liver toxicity is one of the significant safety challenges for the patient’s health and...
There are various types of hepatic steatosis of which non-alcoholic fatty liver disease, which may b...
Quantitative structure-activity relationship (QSAR) models are widely used for in silico prediction ...
A dataset comprising 55 chemicals with hepatocarcinogenic potency indices was collected from the Car...
In silico methods to predict toxicity include the use of (Quantitative) Structure-Activity Relations...
Drug induced liver injury (DILI) is one of the key safety concerns in drug development. To assess th...
Drug-induced liver injury (DILI) is a severe adverse reaction caused by drugs and may result in acut...
The toxicological screening of the numerous chemicals that we are exposed to requires significant co...
Adverse effects of drugs (AEDs) continue to be a major cause of drug withdrawals both in development...
Drug-induced liver injury (DILI) risk in humans is a complicated safety concern due to diverse mecha...
As one of the leading causes of drug failure in clinical trials, drug-induced liver injury (DILI) se...
Introduction: The data on human hepatotoxicity (drug-induced liver injury) is extremely important in...
Quantitative Structure-Activity Relationship (QSAR) modeling and toxicogenomics are used independent...
Drug Induced Liver Injury (DILI) is one of the main causes of drug attrition. The ability to predict...
Together oral bioavailability and hepatotoxicity determine the fate and failure of a new drug in cli...
Drug-induced liver toxicity is one of the significant safety challenges for the patient’s health and...
There are various types of hepatic steatosis of which non-alcoholic fatty liver disease, which may b...
Quantitative structure-activity relationship (QSAR) models are widely used for in silico prediction ...
A dataset comprising 55 chemicals with hepatocarcinogenic potency indices was collected from the Car...
In silico methods to predict toxicity include the use of (Quantitative) Structure-Activity Relations...
Drug induced liver injury (DILI) is one of the key safety concerns in drug development. To assess th...
Drug-induced liver injury (DILI) is a severe adverse reaction caused by drugs and may result in acut...
The toxicological screening of the numerous chemicals that we are exposed to requires significant co...