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musand moderator Сантьяго де Куба |
Ред. Evans G. CRC Press; 2004; 416стр.; ISBN: 0415275199 ISBN-13: 9780415275194 To buy: Book Description This stimulating new handbook examines the techniques, methodology, and theory of bioanalysis and drug metabolism from the perspective of scientists with extensive professional experience in drug discovery and development. It covers topics such as high performance liquid chromatography, protein binding, pharmacokinetics and drug-drug interactions. A Handbook of Bioanalysis and Drug Metabolism is an invaluable guide for senior undergraduates and postgraduates studying drug metabolism in courses such as pharmaceutical science, pharmacology, chemistry, physiology and toxicology - especially those considering industrial placements or a career in the biotechnology industry. Book Info Examines the techniques, methodology, and theory of bioanalysis, pharmacokinetics, and metabolism for researchers in the pharmaceutical industry. Covers such topics as physicochemical properties of drugs, sample preparation, high performance liquid chromatography, immunoassay, protein binding, isotope drug studies, and more. For senior undergraduates or postgraduates. From the Publisher Recent years have seen a greater industrial emphasis in the composition of undergraduate and postgraduate courses in the pharmaceutical and chemical sciences. However, textbooks have been slow to adapt, leaving cohorts of students without a reference text to take into the industrial setting -- until now. This stimulating new handbook examines the techniques, methodology, and theory of bioanalysis, pharmacokinetics, and metabolism from the perspective of scientists working in research and development in the pharmaceutical industry. The aim is to provide a bridge between introductory principles and professional training. Each chapter has been written by contributors who have extensive experience working in drug discovery and development and have specialist knowledge of the individual topics. A Handbook of Bioanalysis and Drug Metabolism is an invaluable reference to senior undergraduates and postgraduates studying drug metabolism in courses such as pharmaceutical science, pharmacology, chemistry, physiology, and toxicology -- especially those considering industrial placements. They will find the unique industrial perspective helps reinforce the theory and develop valuable analytical and interpreting skills. This book was written as a dedication to Grieves Harnby. Synopsis An invaluable guide for pharmacology students and professionals which will help to reinforce the theory in the subject of drug metabolism, and help develop valuable analytical and interpreting skills. Rating 3 Stars from Doody
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musand moderator Сантьяго де Куба |
Doody Review Services Reviewer: Gregory Reed, PhD (University of Kansas Medical Center) Description: This book pulls together relevant aspects of analytical chemistry, biochemistry and molecular biology, immunology, pharmacology and toxicology, and physiology as they apply to the study of drug disposition. Purpose: Effective planning, execution, and interpretation of studies in drug disposition requires an appropriate understanding of several separate areas of science. In the past this broad training was accomplished by following directions from senior investigators and by heeding their advice, while at the same time trying to recall principles taught didactically in very different contexts. This book aims to accelerate the training process by assembling the key theoretical and practical aspects of many areas and then stressing their application to the study of drug disposition. This is a highly worthy goal, and one that the book generally meets. Audience: The book is proposed as a text for senior undergraduate and graduate students, primarily those enrolled in pharmaceutical and chemical science programs. This audience could well be broadened to include post-docs and professionals in related fields, and even to experienced practitioners as a refresher course. Features: The first half of the book focuses on bioanalysis and on the use of the resultant data for pharmacokinetic and pharmacodynamic modeling. These chapters are quite straightforward in their ordering and their individual presentations. The subsequent sections discuss phase I and II enzymes and metabolism, in vitro approaches in drug metabolism, and the role of molecular biology in the field. These chapters, especially the metabolism and the molecular biology chapters, are somewhat problematic. The scope of the book requires that these be simplified and rather minimalist presentations of these areas, but this restriction sometimes lessens the clarity and, on a few occasions, the accuracy of what is presented. Assessment: The potential value of a single-source teaching and reference book for bioanalysis and drug metabolism, as opposed to having to mine relevant sections of numerous separate book, is great. This book is a worthy attempt. For a more detailed and broader treatment strictly of bioanalysis, Venn's Principles and Practice of Bioanalysis (Taylor & Francis, 2000) is preferred, but that book lacks the extensions to both the molecular side (enzymes, molecular biology) and to the whole organism side (pharmacokinetics, pharmacodynamics) that this book provides. |
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