Background: Computational (in silico) methods, such as quantitative structure-activity relationships (QSARs) are already well recognized and used in many screening programs related to environmental, industrial and medical chemistry. The main idea of the QSAR is that there is a relationship between molecular structure and ultimate biological effect caused by a chemical compound. In this respect the approach could be used successfully for prediction of various biological endpoints caused by chemical compounds including receptor binding affinity. Aim of the study: In the current study the capabilities for structure-activity modelling incorporated in noncommercial software tool have been employed for investigating the binding effect of xenobiot...
Transcriptional regulation of some genes involved in xenobiotic detoxification and apoptosis is perf...
International audienceBackground: Individuals are exposed daily to environmental pollutants which ma...
Some pollutants can bind to nuclear receptors (NRs) and modulate their activities. Predicting intera...
The prediction of affinities of ligands binding to a target protein represents a major challenge in ...
A large number of environmental chemicals, known as endocrine-disrupting chemicals, are suspected of...
Abstract The so called endocrine disruptors have become an important working hypothesis for a wide r...
With the aim of obtaining reliable estimates of Estrogen Receptor (ER) binding for diverse classes o...
With the aim of obtaining reliable estimates of Estrogen Receptor (ER) binding for diverse classes o...
Recent reports that a wide variety of natural and man-made compounds are capable of competing with n...
Computational tools, such as quantitative structure-activity relationship (QSAR), are highly useful ...
Estrogen receptor-α (ERα) is a critical target for drug design as well as a potential source of toxi...
With the aim of obtaining reliable estimates of Estrogen Receptor (ER) binding for diverse classes o...
Quantitative structure–activity relationship (QSAR) methodology aims to explore the relationship b...
This course of research examines ligand interactions with nuclear receptors and cross-talk between r...
Endocrine-disrupting chemicals (EDCs) can cause serious harm to human health and the environment; th...
Transcriptional regulation of some genes involved in xenobiotic detoxification and apoptosis is perf...
International audienceBackground: Individuals are exposed daily to environmental pollutants which ma...
Some pollutants can bind to nuclear receptors (NRs) and modulate their activities. Predicting intera...
The prediction of affinities of ligands binding to a target protein represents a major challenge in ...
A large number of environmental chemicals, known as endocrine-disrupting chemicals, are suspected of...
Abstract The so called endocrine disruptors have become an important working hypothesis for a wide r...
With the aim of obtaining reliable estimates of Estrogen Receptor (ER) binding for diverse classes o...
With the aim of obtaining reliable estimates of Estrogen Receptor (ER) binding for diverse classes o...
Recent reports that a wide variety of natural and man-made compounds are capable of competing with n...
Computational tools, such as quantitative structure-activity relationship (QSAR), are highly useful ...
Estrogen receptor-α (ERα) is a critical target for drug design as well as a potential source of toxi...
With the aim of obtaining reliable estimates of Estrogen Receptor (ER) binding for diverse classes o...
Quantitative structure–activity relationship (QSAR) methodology aims to explore the relationship b...
This course of research examines ligand interactions with nuclear receptors and cross-talk between r...
Endocrine-disrupting chemicals (EDCs) can cause serious harm to human health and the environment; th...
Transcriptional regulation of some genes involved in xenobiotic detoxification and apoptosis is perf...
International audienceBackground: Individuals are exposed daily to environmental pollutants which ma...
Some pollutants can bind to nuclear receptors (NRs) and modulate their activities. Predicting intera...