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Mutagenicity: New Horizons in Genetic Toxicology provides an overview of the various applications and studies in the field of genetic toxicology and environmental mutagenesis. The book is composed of selected scientific papers written by experts in the field. The text presents topics on naturally occurring mutagens; occupational carcinogen; and evaluation of cooking methods. Experiments on mammalian cell mutation; chromosomal aberrations; and organisms that can be used as environmental monitors of toxicity are discussed as well. Ecologists, environmental and sanitary engineers, toxicologists, and anyone interested in environmental mutagenesis, genetic toxicology, occupational health, or the regulation of toxic substances will find the book a good source of insight.
The field of genetic toxicology has gone through remarkable development in the seven years since the appearance of the first edition of Principles of Genetic Toxicology. One branch of toxicology research, chemical mutagenesis, has been elucidated and expanded as a result of increased effort, testing, and the sharing of data. This expansion has occurred not only in the industrialized countries, but also in countries that are comparatively less advanced in scientific implementation. These developing countries have taken advan tage of the basic practical methods that were so well described in the first edition of this work. It is significant to note how many centers have been established throughout the world and are now studying the basic concepts and applying them to practical problems such as the detection of genetic effects caused by exposure to chemicals. In fact, there are now toxicology training centers in twelve countries. Genetic toxicology, in addition to being investigated as a science unto itself, has been taught to people in the applied fields so that these techniques may be put to use in solving other biological problems. For these reasons, it is most useful to have an update of the basic methods and their development. Dr. Brusick should be congratulated for doing such an excellent job of assembling a text that will be worthwhile to any researcher who is interested in the principles of genetic toxicology. Alexander Hollaender Council for Research Planning in Biological Sciences, Inc. Washington, D. C.
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This rigorous and practical account of the interpretation of mutagenicity test data draws upon the expertise of toxicologists and statisticians. Chemicals, such as drugs, food additives and pesticides, all need careful screening to eliminate potentially mutagenic compounds.
First multi-year cumulation covers six years: 1965-70.
How can biological markers help assess and predict human health risks? Find out the answers to this question and others in this timely new book examining the use of biological markers in animals and plants for evaluating the ecological and health effects of environmental contamination. The book explains the concept of environmental sentinels, presents example of field studies and discusses the utility of biomarkers within a risk analysis paradigm. Anyone who needs to know how to assess and predict environmental contamination should consider this book essential reading.
The theme of this volume--risk analysis in the private sector--reflects a changing emphasis in risk analysis. Until re cently, attention has been focused on risk analyses conducted in support of federal regulatory decision making. Such analyses have been used to help set safety standards, to illuminate issues of regulatory concern, and to evaluate regulatory alternatives. As this volume indicates, however, risk analysis encompasses a broader set of activities. Analyses performed by private sector institutions aimed at preventing or reducing potential adverse health or environmental effects also play an important part in societal risk management. In virtually all societies, there have been strong incentives for the private sector to conduct such analyses. These incentives range from moral or altruistic norms and values to simple self-interest based on fear of monetary loss, possible civil or criminal litigation, or punitive or restrictive government action. The papers in this volume address the overall theme from a variety of perspectives. Specifically, the papers represent con tributions from such diverse fields as toxicology, epidemiology, chemistry, biology, engineering, statistics, decision analysis, economics, psychology, philosophy, and the law.
At the invitation of the Deutsche Forschungsgemeinschaft (DFG), a round-table discussion was held on 9 and 10 March 2000, dealing with future possibilities for biomonitoring in occupational and environmental medicine. Biomonitoring has reached a high standard in Germany over the past 30 years, not least due to the fact that the results of the Senate commission on materials hazardous to health at the workplace have been directly implemented as part of the jurisdiction relating to occupational safety. This book combines the expertise gathered from various areas within toxicology, occupational medicine, immunology and human genetics, right up to analysis and epidemiology. Throughout, the focus is on comprehensively determining the diagnostic validity of cytogenetic parameters as well as biochemical and biological effect markers for the prevention of illnesses resulting from harmful substances. Thus, the discussion allowed an initial exchange of ideas, pointing to future research, so as to maintain Germany's leading role in this important and rapidly expanding field. "...provides an excellent tutorial on the use of biological monitoring in occupational and environmental medicine...should be read by everyone involved with exposure analysis." - Chemical Chemistry