Modeling of quantitative structure — activity relationships (QSAR) between physicochemical descriptors of organic chemicals and their acute intravenous toxicity in mice have been presented. This approach includes three steps: structure-similarity chemicals selection for every compound-of-interest (clusterization); construction of quantitative structure — toxicity models for every cluster (without including of compounds-of-interest); application of the obtained QSAR equations for chemical-of-interest toxicity estimation. This approach has been applied for calculations of acute intravenous toxicity for 10241 organic chemicals. For 7759 compounds possessing structural neighbors with the Tanimoto index (Tc) of 0.30 and above the standard deviat...
The information of the acute oral toxicity for most polycyclic aromatic hydrocarbons (PAHs) in mamma...
Quantitative structure-activity relationship (QSAR) analyses were performed using the LD50 oral toxi...
Quantitative structure-toxicity relationship (QSTR) plays an important role in toxicity prediction. ...
The QSAR analysis of acute intravenous toxicity for mice of 68 monofunctional chemical compounds is ...
This paper reviews Quantitative Structure-Activity Relationship (QSAR) models for acute mammalian to...
A novel modelling approach based on the structural and physicochemical similarity of chemicals to th...
BackgroundAccurate prediction of in vivo toxicity from in vitro testing is a challenging problem. La...
A development of the Arithmetic Mean Toxicity (AMT) approach is presented in this article. Twenty si...
Few Quantitative Structure-Activity Relationship (QSAR) studies have successfully modeled large, div...
Acute toxicity in different biological systems, including humans and rodents in vivo, human and rode...
This paper reviews Quantitative Structure-Activity Relationship (QSAR) models for acute mammalian to...
Predicting toxicity quantitatively, using Quantitative Structure Activity Relationships (QSAR), has ...
The toxicological screening of the numerous chemicals that we are exposed to requires significant co...
Future EU legislations enforce a fast hazard and risk assessment of thousands of existing chemicals....
Quantitative structure-activity relationship (QSAR) models are widely used for in silico prediction ...
The information of the acute oral toxicity for most polycyclic aromatic hydrocarbons (PAHs) in mamma...
Quantitative structure-activity relationship (QSAR) analyses were performed using the LD50 oral toxi...
Quantitative structure-toxicity relationship (QSTR) plays an important role in toxicity prediction. ...
The QSAR analysis of acute intravenous toxicity for mice of 68 monofunctional chemical compounds is ...
This paper reviews Quantitative Structure-Activity Relationship (QSAR) models for acute mammalian to...
A novel modelling approach based on the structural and physicochemical similarity of chemicals to th...
BackgroundAccurate prediction of in vivo toxicity from in vitro testing is a challenging problem. La...
A development of the Arithmetic Mean Toxicity (AMT) approach is presented in this article. Twenty si...
Few Quantitative Structure-Activity Relationship (QSAR) studies have successfully modeled large, div...
Acute toxicity in different biological systems, including humans and rodents in vivo, human and rode...
This paper reviews Quantitative Structure-Activity Relationship (QSAR) models for acute mammalian to...
Predicting toxicity quantitatively, using Quantitative Structure Activity Relationships (QSAR), has ...
The toxicological screening of the numerous chemicals that we are exposed to requires significant co...
Future EU legislations enforce a fast hazard and risk assessment of thousands of existing chemicals....
Quantitative structure-activity relationship (QSAR) models are widely used for in silico prediction ...
The information of the acute oral toxicity for most polycyclic aromatic hydrocarbons (PAHs) in mamma...
Quantitative structure-activity relationship (QSAR) analyses were performed using the LD50 oral toxi...
Quantitative structure-toxicity relationship (QSTR) plays an important role in toxicity prediction. ...