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Antimutagenesis and Anticarcinogenesis Mechanisms

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Cover of 'Antimutagenesis and Anticarcinogenesis Mechanisms'

Table of Contents

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    Book Overview
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    Chapter 1 Introduction
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    Chapter 2 Carcinogens and Anticarcinogens
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    Chapter 3 The Relation of Activation and Inactivation to Antimutagenic Processes
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    Chapter 4 Cancer and Free Radicals
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    Chapter 5 Cytochromes P-450 and the Activation and Inactivation of Mutagens and Carcinogens
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    Chapter 6 Alteration of Mutagenic Potentials by Peroxidase, Catalase, and Superoxide Dismutase
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    Chapter 7 Effects of Vitamins C and E on Carcinogen Formation and Action, and Relationship to Human Cancer
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    Chapter 8 Modifiers of Endogenous Nitrosamine Synthesis and Metabolism
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    Chapter 9 Glutathione Transferases and Carcinogenesis
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    Chapter 10 Introduction: Natural Environmental Antimutagens
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    Chapter 11 Antioxidants/Antimutagens in Foods
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    Chapter 12 Role of Enzymes in Antimutagenesis of Human Saliva and Serum
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    Chapter 13 Isolation and Identification of Higher Plant Agents Active in Antimutagenic Assay Systems: Glycyrrhiza Glabra
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    Chapter 14 Interception of Toxic Agents/Mutagens/Carcinogens: Some of Nature’s Novel Strategies
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    Chapter 15 Antimutagens and their Modes of Action
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    Chapter 16 Introduction: Avoidance of Spontaneously Occurring Errors in DNA
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    Chapter 17 Introduction: Avoidance of errors after DNA Damage
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    Chapter 18 Alkylation and oxidative damages to DNA: constitutive and inducible repair systems.
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    Chapter 19 Molecular Mechanism of Adaptive Response to Alkylating Agents
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    Chapter 20 Nucleotide excision repair genes from the yeast Saccharomyces cerevisiae.
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    Chapter 21 Introduction: Molecular Basis of Genomic Stability and Change
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    Chapter 22 Genetic analyses of the roles of umuDC and mucAB in mutagenesis.
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    Chapter 23 Mechanisms of Spontaneous Mutagenesis: Clues from Altered Mutational Specificity in DNA Repair-Defective Strains
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    Chapter 24 Introduction: Comparative Responses to DNA Damage in Bacteria and Mammalian Cells
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    Chapter 25 Inducible cellular responses to DNA damage in mammalian cells.
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    Chapter 26 Single-base mutations associated with mouse lymphomas.
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    Chapter 27 The mouse mutant "wasted": an animal model for ataxia-telangiectasia.
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    Chapter 28 Introduction: Oxygen Metabolism, DNA Repair, and the Origin of Spontaneous Genetic Instability
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    Chapter 29 Multiple Inducible Cytochromes P-450 in Yeast
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    Chapter 30 DNA Repair Genes of Mammalian Cells
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    Chapter 31 Genetic and Chemical Factors Affecting Chemical Mutagenesis in Cultured Mammalian Cells
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    Chapter 32 Mechanisms of Carcinogenicity and Anticarcinogenicity: Role of Dietary Components
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    Chapter 33 Reducing the Genotoxic Damage in the Oral Mucosa of Betel Quid/Tobacco Chewers
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    Chapter 34 The Concentration of Bile Acids in the Fecal Stream as a Risk Factor for Colon Cancer
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    Chapter 35 Hormones and Dietary Factors Controlling Gene Activation and Expression in Carcinogenesis
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    Chapter 36 Dietary Promoters and Antipromoters
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    Chapter 37 A Mutagen is a Mutagen, Not Necessarily a Carcinogen
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    Chapter 38 DNA Repair and Replication in Xeroderma Pigmentosum and Related Disorders
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    Chapter 39 Role of Intercellular Communication in Modifying the Consequences of Mutations in Somatic Cells
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    Chapter 40 Genetic Aspects of Cancer Epidemiology
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    Chapter 41 Protective Effects of Beta-Carotene Against Psoralen Phototoxicity: Relevance to Protection Against Carcinogenesis
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    Chapter 42 Carcinogenic and other protective effects of dithiolthiones.
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    Chapter 43 Antioxidants as Antitumor Promoters
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    Chapter 44 Introduction: Future Directions for Research in Antimutagenesis and Anticarcinogenesis
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    Chapter 45 Inhibitors of Mutagenesis and their Relevance to Carcinogenesis
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    Chapter 46 Population Consequences of Mutagenesis and Antimutagenesis
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    Chapter 47 A Summary—and a Look Ahead
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Title
Antimutagenesis and Anticarcinogenesis Mechanisms
Published by
Springer US, March 2013
DOI 10.1007/978-1-4684-5182-5
ISBNs
978-1-4684-5184-9, 978-1-4684-5182-5
Editors

Shankel, Delbert M., Hartman, Philip E., Kada, Tsuneo, Hollaender, Alexander, Wilson, Claire M., Kuny, Gregory

Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 3 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 3 100%

Demographic breakdown

Readers by professional status Count As %
Student > Bachelor 2 67%
Student > Doctoral Student 1 33%
Readers by discipline Count As %
Pharmacology, Toxicology and Pharmaceutical Science 2 67%
Biochemistry, Genetics and Molecular Biology 1 33%