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Volume 14 in the series Comprehensive Toxicology extends and complements the previously published 13-volume set. This volume will be available separately. Toxicology is the study of the nature and actions of chemicals on biological systems. In more primitive times, it really was the study of poisons. However, in the early 1500s, it was apparent to Paracelsus that "the dose differentiates a poison and a remedy". Clearly, the two most important tenets of toxicology were established during that time. The level of exposure (dose) and the duration of exposure (time) will determine the degree and nature of a toxicological response. Since that time the discipline of toxicology has made major advances in identifying and characterizing toxicants. The growth of toxicology as a scientific discipline has been driven to a large extent by the use of extremely powerful molecular and cell biology techniques. The overall aim of this volume is to demonstrate how these advances are being used to elucidate causal pathways (or linkages) for potential adverse health consequences of human exposure to environmental chemicals or radiation. A unique feature of this volume is its illustration of how carefully-designed studies of the molecular mechanisms of chemical action provide not only understanding of the potential toxicity of the chemical under investigation, but also new insights into the functioning of the biological system used as an experimental model. Each chapter contains a listing of major peer-reviewed articles and reviews and useful web-sites. In addition, each chapter contains a broad introductory section that outlines the subsequent sections. These Introductory and Overview sections are designed to be stand alone chapters, and may be packaged as a textbook in graduate level courses.
Molecular toxicology is on the way to setting a new standard in toxic risk assessment, with the powerful help of concepts and methods developed in the fields of molecular and cellular biology. The methods of molecular toxicology are endowed with qualities not always secured in more traditional approaches to toxicity assessment. These methods are easily standardized, reliable, reproducible and require only tiny amounts of the xenobiotic. They are much simpler, faster and less costly than current tests on animals and can be implemented with modest laboratory resources. This volume of Advances in Molecular Toxicology represents a collection of invited papers presented at the First European Workshop on Molecular Toxicology in Sophia Antipolis, France, The book covers 8 selected topics in molecular toxicology. The first two are devoted to ''physics'', dealing respectively with advanced instrumentation enabling location and quantification of xenobiotics in cells and organs with ultimate precision, and computer-assisted assessment of risk (QSAR). A comprehensive and up-to-date survey of molecular toxicology in the pharmaceutical industry is contributed by a pioneer in this field. The third section addresses the effect of xenobiotics on cell-cycle actors. Sections 4--6 deal with molecular toxicology in skin, kidney, nerve, liver and pancreatic cells. The last two sections describe methods to probe DNA damage and repair, and immunotoxicity.