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This important publication provides a comprehensive summary of data and information on the metabolism and chemical degradation of agrochemicals in soils, plants and animals. Part 1, Herbicides and Plant Growth Regulators, and Part 2, Insecticides and Fungicides, together provide a major bibliography, as each entry is fully referenced. Contents include metabolic products, pathways and mechanisms, together with useful details on physico-chemical properties and mode of action. Both parts are organised by class of chemical for easy reference. There are separate entries for each pesticide, covering most commercially available chemicals in use today. In addition, an overview of the metabolism of each major class provides the reader with an informed summary of key similarities and significant differences between individual chemicals. Information is based primarily on literature from the past 40 years of research, together with some important, previously unpublished work provided by the agrochemical companies. Presented in a systematic, easy-to-read style, with extensive indexing to facilitate the rapid location of required information and the comparison of related compounds, Metabolic Pathways of Agrochemicals is an invaluable reference for chemists, biochemists and biologists working in the discovery, development and registration of agrochemicals, as well as scientists in related areas such as design and mode of action of pharmaceuticals.
This important publication provides a comprehensive summary of data and information on the metabolism and chemical degradation of agrochemicals in soils, plants and animals. Part 1, Herbicides and Plant Growth Regulators, and Part 2, Insecticides and Fungicides, together provide a major bibliography, as each entry is fully referenced. Contents include metabolic products, pathways and mechanisms, together with useful details on physico-chemical properties and mode of action. Both parts are organised by class of chemical for easy reference. There are separate entries for each pesticide, covering most commercially available chemicals in use today. In addition, an overview of the metabolism of each major class provides the reader with an informed summary of key similarities and significant differences between individual chemicals. Information is based primarily on literature from the past 40 years of research, together with some important, previously unpublished work provided by the agrochemical companies. Presented in a systematic, easy-to-read style, with extensive indexing to facilitate the rapid location of required information and the comparison of related compounds, Metabolic Pathways of Agrochemicals is an invaluable reference for chemists, biochemists and biologists working in the discovery, development and registration of agrochemicals, as well as scientists in related areas such as design and mode of action of pharmaceuticals.
If you’re working on or studying the effects of drug metabolisms, then this reference is for you! Handbook of Metabolic Pathways of Xenobiotics is an essential new reference which presents the metabolic fate of xenobiotics in animals and plants, and shows the metabolic pathways in the environment. Presenting a comprehensive guide to understanding the metabolisms of xenobiotics, the Handbook of Metabolic Pathways of Xenobiotics spans five volumes: Volumes 1-2 are Review Articles and Volumes 3-5 are Compound Articles. Review Articles present detailed reviews on the techniques and methods used to establish in vitro and in vivo metabolic pathways. Compound Articles are carefully selected lists of key chemicals representing agrochemicals, pharmaceuticals, animal health products and industrial chemicals. An essential addition to every library, this introduction, guide and catalogue presents: Current topics in the metabolism of xenobiotics Topics of both scientific and regulatory importance are covered, including in vitro high throughput metabolism screens, computer-aided metabolism predictions, and advances in bioanalytical techniques. Techniques and methods used in metabolic pathways 29 chapters provide an introduction to the understanding of drug metabolism and detail how to establish in vitro and in vivo metabolic pathways. Biotransformation pathways Presented as a catalogue of short articles covering major pharmaceuticals, agrochemicals, animal health products and industrial chemicals. Each article summarizes the chemical properties and uses, and presents a detailed review of the chemical and metabolic pathways in soil, plants and animals. Over 450 examples of xenobiotics and their fate in animals and plants Each compound includes systematic information about the metabolic pathway of drugs for human and veterinary medicine, agrochemicals and major industrial chemicals. Chemical and biological fate data The Handbook summarises data from scientific literature, patent literature, industrial resources and regulatory agencies, such as the EPA, FDA, EU, WHO and FAO, in a single reference for the first time. An essential reference for everyone working and studying pharmacokinetics and drug metabolism Coverage of the chemical and biological reactivity of molecules and primary sub-structures makes this an ideal reference for students and research scientists. The broad and diverse coverage of chemical and biological fate under different exposure and biological compartments make this a useful resource for regulatory and developmental scientists. Experience the scope of content offered in the Handbook of Metabolic Pathways of Xenobiotics for yourself, download these articles today: Review Article: Fundamentals of organic chemistry as applicable to the biotransformation of foreign compounds Review Article: Metabolic stability screen in drug discovery Review Article: Unusual metabolic reactions and pathways Compound Article: Ganoderic acid D Compound Article: Milnacipran Compound Article: Tenofovir Online Edition Coming Soon! Featuring the same great content as the five volume print set, the Handbook of Metabolic Pathways for Xenobiotics will be available on Wiley Online Library in summer 2014. The online reference will benefit from the enhanced functionality powered by The Smart Article – learn more about The Smart Article at wileyonlinelibrary.com/thesmartarticle. Free trials will be available when the Online Edition goes live, bookmark this page or sign-up for regular product alerts at www.wiley.com/email to stay informed.
Biotransformation of Pesticides is an updated, "one-stop" resource for academic, industry and regulatory scientists involved in research and regulatory activities related to pesticide biotransformation and human health. This book provides an in depth look at how pesticides are biotransformed, which is essential to understanding exposure, dose, toxicity and health risks. This essential reference contains the biotransformation of pesticides from uptake to excretion, including toxicokinetics and emphasizes metabolism in non-target species, including experimental animals and humans. - Includes four new chapters and expanded material on pesticide biotransformation and disposition, an active area of pesticide toxicology that is becoming increasingly important for human health risk assessment - Offers a practical and portable guide covering the most up-to-date research results on metabolic transformations of pesticides - Provides scientists and regulatory researchers with the information they need to conduct accurate risk assessments and make informed decisions on which exposures to study further in human populations
Biocontrol and Secondary Metabolites: Applications and Immunization for Plant Growth and Protection covers established and updated research on emerging trends in plant defense signaling in, and during, stress phases. Other topics cover growth at interface as a sustainable way of life and the context of human welfare and conservation of fungi as a group of organisms. Further, the book explores induced systemic resistance using biocontrol agents and/or secondary metabolites as a milestone for sustainable agricultural production, thus providing opportunities for the minimization or elimination of the use of fungicides. - Presents an overview on mechanisms by which plants protect themselves against herbivory and pathogenic microbes - Identifies the use of immunization as a popular and effective alternative to chemical pesticides - Explores how these fungi help crop plants in better uptake of soil nutrients, increase soil fertility, produce growth promoting substances, and secrete metabolites that act as bio-pesticides
Many potential applications of synthetic and systems biology are relevant to the challenges associated with the detection, surveillance, and responses to emerging and re-emerging infectious diseases. On March 14 and 15, 2011, the Institute of Medicine's (IOM's) Forum on Microbial Threats convened a public workshop in Washington, DC, to explore the current state of the science of synthetic biology, including its dependency on systems biology; discussed the different approaches that scientists are taking to engineer, or reengineer, biological systems; and discussed how the tools and approaches of synthetic and systems biology were being applied to mitigate the risks associated with emerging infectious diseases. The Science and Applications of Synthetic and Systems Biology is organized into sections as a topic-by-topic distillation of the presentations and discussions that took place at the workshop. Its purpose is to present information from relevant experience, to delineate a range of pivotal issues and their respective challenges, and to offer differing perspectives on the topic as discussed and described by the workshop participants. This report also includes a collection of individually authored papers and commentary.
This edited book, Toxicity and Hazard of Agrochemicals, is intended to provide an overview of toxicology that examines the hazardous effects of common agrochemicals employed every day in our agricultural practices. Furthermore, it is hoped that the information in the present book will be of value to those directly engaged in the handling and use of agrochemicals and that this book will continue to meet the expectations and needs of all interested in the different aspects of human and environmental risk toxicities.
A guide to the diversity of pesticides used in modern agricultural practices, and the relevant social and environmental issues Pesticides in Crop Production offers an important resource that explores pesticide action in plants; pesticide metabolism in soil microbes, plants and animals; bioaccumulation of pesticides and sensitiveness of microbiome towards pesticides. The authors explore pesticide risk assessment, the development of pesticide resistance in pests, microbial remediation of pesticide intoxicated legumes and pesticide toxicity amelioration in plants by plant hormones. The authors include information on eco-friendly pest management. They review the impact of pesticides on soil microorganism, crops and other plants along with the impact on other organisms like aquatic fauna and terrestrial animals including human beings. The book also contains an analysis of pesticide by GC-MS/MS (Gas Chromatography tandem Mass Spectrometry) a reliable method for the quantification and confirmation of multiclass pesticide residues. This important book: Offers a comprehensive guide to the use of the diversity of pesticides and the pertinent social and environmental issues Explores the impact of pesticides from morphological, anatomical, physiological and biochemical perspectives Shows how pesticides affects soil microorganisms, crops and other plants along with the impact on other organisms like aquatic fauna and animals Critically examines whether chemical pesticides are boon or bane and whether they can be replaced by environmental friendly pesticides Written for students, researchers and professionals in agriculture, botany, entomology and biotechnology, Pesticides in Crop Production examines the effects of chemical pesticides and the feasibility of using bio-pesticides.
This book describes recent progress in enzyme-driven green syntheses of industrially important molecules. The first three introductory chapters overview recent technological advances in enzymes and cell-based transformations, and green chemistry metrics for synthetic efficiency. The remaining chapters are directed to case studies in biotechnological production of pharmaceuticals (small molecules, natural products and biologics), flavors, fragrance and cosmetics, fine chemicals, value-added chemicals from glucose and biomass, and polymeric materials. The book is aimed to facilitate the industrial applications of this powerful and emerging green technology, and catalyze the advancement of the technology itself.