Radiosensitizers and Radiochemotherapy in the Treatment of Cancer catalogs and describes the mechanism of action for entities characterized as radiosensitizers. Developments in the biological and physical sciences have introduced new radiosensitizers and defined novel targets for radiosensitization. As a result, a book about radiosensitization must now address a huge range of topics, covering everything from molecular oxygen and high Z elements to monoclonal antibodies and complex phytochemicals.
At the molecular level, the understanding of the molecular consequences of DNA damage and the DNA damage response have informed the development of targeted radiosensitizers and shed light on the mode of action of radiochemotherapy protocols of known clinical efficacy.
In this book the mechanisms of action at the molecular and cellular level are described for documented radiosensitizers including, where applicable, a brief history of their clinical use and most recent clinical results. In addition, the clinical context is addressed including the importance of factors such as dose and dose rate, normal tissue toxicity, and drug delivery. Intuitively organized by topic and application, the book includes extensive illustrations, end-of-chapter summaries, and a wealth of references.
Автор: A. Breccia Название: Advanced Topics on Radiosensitizers of Hypoxic Cells ISBN: 1475704011 ISBN-13(EAN): 9781475704013 Издательство: Springer Рейтинг: Цена: 6097.00 р. Наличие на складе: Есть у поставщика Поставка под заказ.
Описание: In July 1979, the Faculty of Pharmacy of the University of Bologna received a proposal from Professor Breccia to hold an International Conference on "Nitroimidazoles: Chemistry, Pharmacology and Clinical Application."
Автор: Walsh Название: Antibiotics: Challenges, Mechanisms, Opportunities ISBN: 1555819303 ISBN-13(EAN): 9781555819309 Издательство: Wiley Рейтинг: Цена: 16466.00 р. Наличие на складе: Поставка под заказ.
Описание: Antibiotics: Challenges, Mechanisms, Opportunities details the contemporary challenges for discovery, optimization, and advancement of new antibiotics. It focuses on discovery not preclinical or clinical development. Given that the few classes of clinically significant antibiotics are all small molecules, this book focuses on the molecular structures and characteristics of both natural and synthetic antibacterial agents. Antibiotics is a valuable reference for microbiologists, bacterial physiologists, geneticists, pharmacologists, and drug developers. A chemocentric view of the molecular structures of antibiotics, their origins, actions, and major categories of resistance Antibiotics: Challenges, Mechanisms, Opportunities focuses on antibiotics as small organic molecules, from both natural and synthetic sources. Understanding the chemical scaffold and functional group structures of the major classes of clinically useful antibiotics is critical to understanding how antibiotics interact selectively with bacterial targets. This textbook details how classes of antibiotics interact with five known robust bacterial targets: cell wall assembly and maintenance, membrane integrity, protein synthesis, DNA and RNA information transfer, and the folate pathway to deoxythymidylate. It also addresses the universe of bacterial resistance, from the concept of the resistome to the three major mechanisms of resistance: antibiotic destruction, antibiotic active efflux, and alteration of antibiotic targets. Antibiotics also covers the biosynthetic machinery for the major classes of natural product antibiotics. Authors Christopher Walsh and Timothy Wencewicz provide compelling answers to these questions: • What are antibiotics? • Where do antibiotics come from?• How do antibiotics work? • Why do antibiotics stop working? • How should our limited inventory of effective antibiotics be addressed? Antibiotics is a textbook for graduate courses in chemical biology, pharmacology, medicinal chemistry, and microbiology and biochemistry courses. It is also a valuable reference for microbiologists, biological and natural product chemists, pharmacologists, and research and development scientists.
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