Practical Applications of Quantitative Structure-Activity Relationships (QSAR) in Environmental Chemistry and Toxicology

Practical Applications of Quantitative Structure-Activity Relationships (QSAR) in Environmental Chemistry and Toxicology
Title Practical Applications of Quantitative Structure-Activity Relationships (QSAR) in Environmental Chemistry and Toxicology PDF eBook
Author W. Karcher
Publisher Springer Science & Business Media
Pages 506
Release 1990-05-31
Genre Science
ISBN 9780792308270

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Based on the Lectures given during the Eurocourse on `Practical Applications of Quantitative Structure-Activity (QSAR) in Environmental Chemistry and Toxicology' held at the Joint Research Centre Ispra, Italy, June 11--15, 1990

Chemical and Environmental Science Series, Volume 1; Practical Applications of Quantitative Structure Activity Relationships (QSAR) in Environmental Chemistry and Toxicology

Chemical and Environmental Science Series, Volume 1; Practical Applications of Quantitative Structure Activity Relationships (QSAR) in Environmental Chemistry and Toxicology
Title Chemical and Environmental Science Series, Volume 1; Practical Applications of Quantitative Structure Activity Relationships (QSAR) in Environmental Chemistry and Toxicology PDF eBook
Author W. Karcher
Publisher
Pages
Release 1990
Genre
ISBN

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Quantitative Structure-Activity Relationships in Drug Design, Predictive Toxicology, and Risk Assessment

Quantitative Structure-Activity Relationships in Drug Design, Predictive Toxicology, and Risk Assessment
Title Quantitative Structure-Activity Relationships in Drug Design, Predictive Toxicology, and Risk Assessment PDF eBook
Author Roy, Kunal
Publisher IGI Global
Pages 727
Release 2015-02-28
Genre Technology & Engineering
ISBN 1466681373

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Quantitative structure-activity relationships (QSARs) represent predictive models derived from the application of statistical tools correlating biological activity or other properties of chemicals with descriptors representative of molecular structure and/or property. Quantitative Structure-Activity Relationships in Drug Design, Predictive Toxicology, and Risk Assessment discusses recent advancements in the field of QSARs with special reference to their application in drug development, predictive toxicology, and chemical risk analysis. Focusing on emerging research in the field, this book is an ideal reference source for industry professionals, students, and academicians in the fields of medicinal chemistry and toxicology.

Environmental Health Perspectives

Environmental Health Perspectives
Title Environmental Health Perspectives PDF eBook
Author
Publisher
Pages 824
Release 1993
Genre Environmental health
ISBN

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Fundamentals Of Aquatic Toxicology

Fundamentals Of Aquatic Toxicology
Title Fundamentals Of Aquatic Toxicology PDF eBook
Author Gary M. Rand
Publisher CRC Press
Pages 1152
Release 2020-08-06
Genre Science
ISBN 100016294X

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This text is divided into three parts. The first part describes basic toxicological concepts and methodologies used in aquatic toxicity testing, including the philosophies underlying testing strategies now required to meet and support regulatory standards. The second part of the book discusses various factors that affect transport, transformation, ultimate distribution, and accumulation of chemicals in the aquatic environment, along with the use of modelling to predict fate.; The final section of the book reviews types of effects or endpoints evaluated in field studies and the use of structure-activity relationships in aquatic toxicology to predict biological activity and physio-chemical properties of a chemical. This section also contains an extensive background of environmental legislation in the USA and within the European Community, and an introduction to hazard/risk assessment with case studies.

Structure—Activity Relationships in Environmental Sciences

Structure—Activity Relationships in Environmental Sciences
Title Structure—Activity Relationships in Environmental Sciences PDF eBook
Author M. Nendza
Publisher Springer Science & Business Media
Pages 279
Release 2012-12-06
Genre Science
ISBN 1461558050

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Structure-Activity Relationships in Environmental Science is the first book of its kind that brings together information from a variety of sources into one document. It provides a comprehensive overview of the entire field of quantitative structure-activity relationships (QSARs) as well as being a reference for SAR experts. The book comprises three parts. Part One covers the theoretical background of structure-activity studies and Part Two deals with the practical applications of such methods in the environmental sciences. Part Three critically discusses SAR models with respect to their reliability and their aptness in environmental hazard and risk assessment. Recommendations are made as to which model to use and the case is presented for using QSARs in hazard assessment. The use of QSARs is becoming increasingly important since there is little experimental data available on environmentally relevant chemicals. Structure-Activity Relationships in Environmental Sciences will thus serve as an invaluable guide to both postgraduate and research scientists as well as professional ecologists.

Predicting Chemical Toxicity and Fate

Predicting Chemical Toxicity and Fate
Title Predicting Chemical Toxicity and Fate PDF eBook
Author Mark T.D. Cronin
Publisher CRC Press
Pages 474
Release 2004-05-10
Genre Science
ISBN 9780203642627

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Quantitative Structure-Activity Relationships (QSARs) are increasingly used to predict the harmful effects of chemicals to humans and the environment. The increased use of these methods in a variety of areas (academic, industrial, regulatory) results from a realization that very little toxicological or fate data is available on the vast amount of chemicals to which humans and the environment are exposed. Predicting Chemical Toxicity and Fate provides a comprehensive explanation of the state-of-the-art methods that are available to predict the effects of chemicals on humans and the environment. It describes the use of predictive methods to estimate the physiochemical properties, biological activities, and fate of chemicals. The methods described may be used to predict the properties of drugs before their development, and to predict the environmental effects of chemicals. These methods also reduce the cost of product development and the need for animal testing. This book fills an obvious need by providing a comprehensive explanation of these prediction methods. It is a practical book that illustrates the use of these techniques in real life scenarios. This book will demystify QSARs for those students unsure of them, and professionals in environmental toxicology and chemistry will find this a useful reference in their everyday working lives.