substances either occurring naturally or purified or manufactured by industry, which can range from being harmless to being highly toxic. Some chemicals are the constituent parts of familiar things in our daily lives such as cleaning agents; others are used in agriculture and in the manufacture, packaging and distribution of daily objects from computer screens to medication.
Ecotoxicity
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the potential for a chemical to affect an ecosystem, such as by changing the natural biochemistry, physiology, behaviour and/or interactions of living organisms.
QSAR
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the use of QSAR models is an important example of in silico methods. Quantitative Structure- Activity Relationship models correlate the properties and molecular structure of a chemical with its biological effect on human health and/or on relevant species in an ecosystem. The correlation can then be used in the prediction and assessment of new substances. QSAR / in silico methods are applicable to organic (carbon-based) compounds, not to inorganic substances.
REACH
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the European regulation for the Registration, Evaluation, Authorisation and Restriction of Chemicals. It replaced nearly forty previous EU directives and regulations with a single regulation that makes manufacturers and importers responsible for registering chemicals with the European Chemicals Agency (ECHA), as well as for understanding and managing the risks associated with their use. REACH also aims to promote the use of existing data, and of alternative methods of assessment, such as QSAR methods.
Toxicity
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the potential of a chemical substance to cause damage to humans and/or the environment.
Toxicology
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research and routine industry testing of the effects of substances on health and the environment at different doses and concentrations, traditionally by tests on animals.
Related FAQ
What makes a good QSAR model?
How can I access QSAR platforms for our use?
Several platforms of QSAR models exist. The ANTARES project lists hundreds of QSAR models, tens of them are freely available.
VEGA: The ORCHESTRA project, with ANTARES, has developed the VEGA platform, which incorporates CAESAR and T.E.S.T. models into a single framework. An advantage of the VEGA platform is the facilitated and supported user-access: supporting information, tutorials and videos are all available on the web site. It has been developed from the point of view of the user, and of the REACH requirements. Each model produces not only a predicted value, but also many pages of explanation and assessment of its reliability.