Endocrine disruptors (EDs) have a variety of adverse effects in humans and animals. About 58 000 chemicals, most having little safety data, must be tested in a group of tiered assays. As assays will take years, it is important to develop rapid methods to help in priority setting. For application to large data sets, we have developed an integrated system that contains sequential four phases to predict the ability of chemicals to bind to the estrogen receptor (ER), a prevalent mechanism for estrogenic EDs. Here we report the results of evaluating two types of QSAR models for inclusion in phase III to quantitatively predict chemical binding to the ER. Our data set for the relative binding affinities (RBAs) to the ER consists of 130 chemicals c...
With the aim of obtaining reliable estimates of Estrogen Receptor (ER) binding for diverse classes o...
Identification of Endocrine Disrupting Chemicals is one of the important goals of environmental chem...
Computational tools, such as quantitative structure-activity relationship (QSAR), are highly useful ...
A large number of environmental chemicals, known as endocrine-disrupting chemicals, are suspected of...
Endocrine disrupting chemicals (EDCs) are suspected of posing serious threats to human and wildlife ...
Recent legislation mandates the US Environmental Protection Agency (EPA) to develop a screening and ...
<div><p>Regulatory agencies are charged with addressing the endocrine disrupting potential of large ...
Abstract: Considerable scientific, regulatory and popular press attention has been devoted to the En...
Quantitative structure–activity relationship (QSAR) methodology aims to explore the relationship b...
Estrogen receptor-α (ERα) is a critical target for drug design as well as a potential source of toxi...
International audienceThe determination of binding affinities for the estrogen receptor (ER) is used...
The identification of endocrine disrupting chemicals (EDCs) is one of the important goals of environ...
A large number of descriptors were employed to characterize the molecular structure of 53 natural, s...
the CODESSA program), and Hologram QSAR (HQSAR), are compared in terms of their potential for screen...
With the aim of obtaining reliable estimates of Estrogen Receptor (ER) binding for diverse classes o...
Identification of Endocrine Disrupting Chemicals is one of the important goals of environmental chem...
Computational tools, such as quantitative structure-activity relationship (QSAR), are highly useful ...
A large number of environmental chemicals, known as endocrine-disrupting chemicals, are suspected of...
Endocrine disrupting chemicals (EDCs) are suspected of posing serious threats to human and wildlife ...
Recent legislation mandates the US Environmental Protection Agency (EPA) to develop a screening and ...
<div><p>Regulatory agencies are charged with addressing the endocrine disrupting potential of large ...
Abstract: Considerable scientific, regulatory and popular press attention has been devoted to the En...
Quantitative structure–activity relationship (QSAR) methodology aims to explore the relationship b...
Estrogen receptor-α (ERα) is a critical target for drug design as well as a potential source of toxi...
International audienceThe determination of binding affinities for the estrogen receptor (ER) is used...
The identification of endocrine disrupting chemicals (EDCs) is one of the important goals of environ...
A large number of descriptors were employed to characterize the molecular structure of 53 natural, s...
the CODESSA program), and Hologram QSAR (HQSAR), are compared in terms of their potential for screen...
With the aim of obtaining reliable estimates of Estrogen Receptor (ER) binding for diverse classes o...
Identification of Endocrine Disrupting Chemicals is one of the important goals of environmental chem...
Computational tools, such as quantitative structure-activity relationship (QSAR), are highly useful ...