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Antimutagenesis and Anticarcinogenesis Mechanisms II

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Cover of 'Antimutagenesis and Anticarcinogenesis Mechanisms II'

Table of Contents

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    Book Overview
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    Chapter 1 Antimutagenesis Studies in Japan
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    Chapter 2 Cancer Prevention: Underlying Principles and Practical Proposals
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    Chapter 3 Anticlastogenic Dietary Factors Assessed in Mammalian Assays
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    Chapter 4 Antigenotoxic Activity of Carotenoids in Carcinogen-Exposed Populations
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    Chapter 5 Plant Antimutagens
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    Chapter 6 Human Biomonitoring in Exposure to Environmental Genotoxicants
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    Chapter 7 The Concept of Activity Profiles of Antimutagens
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    Chapter 8 Prevention of Formation of Important Mutagens/Carcinogens in the Human Food Chain
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    Chapter 9 Free Radical Reactions with DNA and Its Nucleotides
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    Chapter 10 Mechanisms of Inactivation of Oxygen Radicals by Dietary Antioxidants and Their Models
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    Chapter 11 Role of Dietary Antioxidants in Protection against Oxidative Damage
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    Chapter 12 Inhibition of Carcinogenesis by Naturally-Occurring and Synthetic Compounds
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    Chapter 13 Newly Recognized Anticarcinogenic Fatty Acids
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    Chapter 14 Caloric Restriction in Experimental Carcinogenesis
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    Chapter 15 Carcinogenicity and Modification of Carcinogenic Response by Antioxidants
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    Chapter 16 Inhibition of Tumor Promotion by DL-α-Difluoromethylornithine, A Specific Irreversible Inhibitor of Ornithine Decarboxylase
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    Chapter 17 New Antitumor Promoters: (-)-Epigallocatechin Gallate and Sarcophytols A and B
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    Chapter 18 Chemoprevention of Mammary Cancer by Retinoids
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    Chapter 19 Suppression of Tumor Promotion by Inhibitors of Poly(ADP)Ribose Formation
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    Chapter 20 Antimutagenic Activity of Vitamins in Cultured Mammalian Cells
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    Chapter 21 Microcell-Mediated Chromosome Transfer: A Strategy for Studying the Genetics and Molecular Pathology of Human Hereditary Diseases with Abnormal Responses to DNA Damage
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    Chapter 22 Genetic Analyses of Cellular Functions Required for UV Mutagenesis in Escherichia Coli
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    Chapter 23 Position of a Single Acetylaminofluorene Adduct Within a Mutational Hot Spot is Critical for the Related Mutagenic Event
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    Chapter 24 Fidelity of Animal Cell DNA Polymerases α and δ and of a Human DNA Replication Complex
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    Chapter 25 Molecular Mechanisms of Replicational Fidelity in Escherichia Coli
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    Chapter 26 Permanent Conversion of NIH3T3 Cells Transformed by Activated c-Ha-ras, c-Ki-ras, N-ras, or c-raf, and of Human Pancreatic Adenocarcinoma Containing Activated c-Ki-ras to Apparently Normal Cells by Treatment with the Antibiotic Azatyrosine
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    Chapter 27 Oncogenes of Stomach Cancers
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    Chapter 28 Oncogenic Potential and Normal Function of the Proto-Oncogenes Encoding Protein-Tyrosine Kinases
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    Chapter 29 Inhibition of the Genotoxicity of 3-Amino-1-Methyl-5H- Pyrido[4,3-b]Indole (Trp-P-2) in Drosophila by Chlorophyll
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    Chapter 30 Inhibition of Tobacco-Specific Nitrosamine 4-(Methylnitrosamino)-1-(3-Pyridyl)-1-Butanone (NNK)-Induced Lung Tumors and DNA Methylation in F344 Rats and A/J Mice by Phenethyl Isothiocyanate
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    Chapter 31 Proteolytic Activation of UmuD and MucA Proteins for SOS Mutagenesis
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    Chapter 32 Analysis of Bleomycin-Resistant DNA Synthesis in Cells from an Inherited Human Disorder, Ataxia Telangiectasia
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    Chapter 33 Tumor Dose-Response Studies with Aflatoxin B1 and the Ambivalent Modulator Indole-3-Carbinol: Inhibitory Versus Promotional Potency
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    Chapter 34 Antimutagenesis in Yeast by Sodium Chloride, Potassium Chloride, and Sodium Saccharin
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    Chapter 35 The Use of Drosophila as an in VIVO System to Study Modifiers of Chemical Mutagenesis
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    Chapter 36 The Mouse Mutant, “Wasted”: Tissue-Specific Radiation Sensitivity and Hematopoietic Cell Lineages
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    Chapter 37 Antimutagenic Effects of Tumor Promoters—Co-Mutagenic Effects of Co-Carcinogens
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    Chapter 38 Antimutagenic Effects of Dimethyl Sulfoxide on Metabolism and Genotoxicity of Benzene in Vivo
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    Chapter 39 Possible Antitumor Promoter in the Glandular Stomach: Calcium Chloride
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    Chapter 40 Reversion of Transformed NIH 3T3 Cells to Flat Cells by Inhibitors of Poly(ADP-ribose) Polymerase
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    Chapter 41 Inactivation of Mutagenic Heterocyclic and Aryl Amines by Linoleic Acid 13-Monohydroperoxide and Methemoglobin
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    Chapter 42 Establishment of a Highly Reproducible Transformation Assay of a Ras-Transfected Balb 3T3 Clone by Treatment with Promoters
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    Chapter 43 Antimutagenic Effect of umuD Mutant Plasmids: Isolation and Characterization of umuD Mutants Reduced in their Ability to Promote UV Mutagenesis in Escherichia Coli
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    Chapter 44 Antitumor-Promoting Activity of Sesquiterpene Isolated from an Herbal Spice
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    Chapter 45 Inhibitory Effects of Chlorogenic Acid, Reserpine, Polyprenoic Acid (E-5166), or Coffee on Hepatocarcinogenesis in Rats and Hamsters
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    Chapter 46 Antimutagenic Structure Modification of Quinoline: Fluorine-Substitution at Position-3
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    Chapter 47 Mutagenicity and Antimutagenicity of Thai Medicinal Plants
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    Chapter 48 Influence of Potential Antioxidants on Free-Radical Damage of Lymphocytes
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    Chapter 49 Specificity of Antimutagens against Chemical Mutagens in Microbial Systems
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    Chapter 50 Classification of Mechanisms of Inhibitors of Mutagenesis and Carcinogenesis
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    Chapter 51 Antimutagenic Effects of Chlorophyllin
Attention for Chapter 51: Antimutagenic Effects of Chlorophyllin
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Chapter title
Antimutagenic Effects of Chlorophyllin
Chapter number 51
Book title
Antimutagenesis and Anticarcinogenesis Mechanisms II
Published by
Springer, Boston, MA, January 1990
DOI 10.1007/978-1-4615-9561-8_51
Book ISBNs
978-1-4615-9563-2, 978-1-4615-9561-8
Authors

G. Bronzetti, A. Galli, C. Della Croce

Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 5 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Mexico 1 20%
Unknown 4 80%

Demographic breakdown

Readers by professional status Count As %
Researcher 3 60%
Student > Bachelor 1 20%
Student > Doctoral Student 1 20%
Readers by discipline Count As %
Agricultural and Biological Sciences 3 60%
Biochemistry, Genetics and Molecular Biology 2 40%