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1.

図書

図書
安藤鋭郎[ほか]編
出版情報: 東京 : 朝倉書店, 1973  2冊 ; 22cm
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2.

図書

図書
レーニンジャー, ネルソン, コックス [著] ; 川嵜敏祐編 ; 山科郁男監修
出版情報: 東京 : 廣川書店, 2002.2-2002.3  2冊 ; 26cm
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3.

図書

図書
江崎信芳, 藤田博美編著
出版情報: 京都 : 化学同人, 2002.3  326p ; 24cm
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図書

図書
Brian R. Eggins
出版情報: Chichester, West Sussex : Wiley, c2002  xxi, 273 p. ; 23 cm
シリーズ名: Analytical Techniques in the Sciences(AnTS)
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Series Preface
Preface
Acronyms, Abbreviations and Symbols
About the Author
Introduction / 1:
Introduction to Sensors / 1.1:
What are Sensors? / 1.1.1:
The Nose as a Sensor / 1.1.2:
Sensors and Biosensors--Definitions / 1.2:
Aspects of Sensors / 1.3:
Recognition Elements / 1.3.1:
Transducers--the Detector Device / 1.3.2:
Methods of Immobilization / 1.3.3:
Performance Factors / 1.3.4:
Areas of Application / 1.3.5:
Transduction Elements / 2:
Electrochemical Transducers--Introduction / 2.1:
Potentiometry and Ion-Selective Electrodes: The Nernst Equation / 2.2:
Cells and Electrodes / 2.2.1:
Reference Electrodes / 2.2.2:
Quantitative Relationships: The Nernst Equation / 2.2.3:
Practical Aspects of Ion-Selective Electrodes / 2.2.4:
Measurement and Calibration / 2.2.5:
Voltammetry and Amperometry / 2.3:
Linear-Sweep Voltammetry / 2.3.1:
Cyclic Voltammetry / 2.3.2:
Chronoamperometry / 2.3.3:
Amperometry / 2.3.4:
Kinetic and Catalytic Effects / 2.3.5:
Conductivity / 2.4:
Field-Effect Transistors / 2.5:
Semiconductors--Introduction / 2.5.1:
Semiconductor--Solution Contact / 2.5.2:
Field-Effect Transistor / 2.5.3:
Modified Electrodes, Thin-Film Electrodes and Screen-Printed Electrodes / 2.6:
Thick-Film--Screen-Printed Electrodes / 2.6.1:
Microelectrodes / 2.6.2:
Thin-Film Electrodes / 2.6.3:
Photometric Sensors / 2.7:
Optical Techniques / 2.7.1:
Ultraviolet and Visible Absorption Spectroscopy / 2.7.3:
Fluorescence Spectroscopy / 2.7.4:
Luminescence / 2.7.5:
Optical Transducers / 2.7.6:
Device Construction / 2.7.7:
Solid-Phase Absorption Label Sensors / 2.7.8:
Applications / 2.7.9:
Further Reading
Sensing Elements / 3:
Ionic Recognition / 3.1:
Ion-Selective Electrodes--Introduction / 3.2.1:
Interferences / 3.2.2:
Conducting Devices / 3.2.3:
Modified Electrodes and Screen-Printed Electrodes / 3.2.4:
Molecular Recognition--Chemical Recognition Agents / 3.3:
Thermodynamic--Complex Formation / 3.3.1:
Kinetic--Catalytic Effects: Kinetic Selectivity / 3.3.2:
Molecular Size / 3.3.3:
Molecular Recognition--Spectroscopic Recognition / 3.4:
Infrared Spectroscopy--Molecular / 3.4.1:
Ultraviolet Spectroscopy--Less Selective / 3.4.3:
Nuclear Magnetic Resonance Spectroscopy--Needs Interpretation / 3.4.4:
Mass Spectrometry / 3.4.5:
Molecular Recognition--Biological Recognition Agents / 3.5:
Enzymes / 3.5.1:
Tissue Materials / 3.5.3:
Micro-Organisms / 3.5.4:
Mitochondria / 3.5.5:
Antibodies / 3.5.6:
Nucleic Acids / 3.5.7:
Receptors / 3.5.8:
Immobilization of Biological Components / 3.6:
Adsorption / 3.6.1:
Microencapsulation / 3.6.3:
Entrapment / 3.6.4:
Cross-Linking / 3.6.5:
Covalent Bonding / 3.6.6:
Selectivity / 4:
Ion-Selective Electrodes / 4.2.1:
Others / 4.2.2:
Sensitivity / 4.3:
Range, Linear Range and Detection Limits / 4.3.1:
Time Factors / 4.4:
Response Times / 4.4.1:
Recovery Times / 4.4.2:
Lifetimes / 4.4.3:
Precision, Accuracy and Repeatability / 4.5:
Different Biomaterials / 4.6:
Different Transducers / 4.7:
Urea Biosensors / 4.7.1:
Amino Acid Biosensors / 4.7.2:
Glucose Biosensors / 4.7.3:
Uric Acid / 4.7.4:
Some Factors Affecting the Performance of Sensors / 4.8:
Amount of Enzyme / 4.8.1:
Immobilization Method / 4.8.2:
pH of Buffer / 4.8.3:
Electrochemical Sensors and Biosensors / 5:
Potentiometric Sensors--Ion-Selective Electrodes / 5.1:
Concentrations and Activities / 5.1.1:
Calibration Graphs / 5.1.2:
Examples of Ion-Selective Electrodes / 5.1.3:
Gas Sensors--Gas-Sensing Electrodes / 5.1.4:
Potentiometric Biosensors / 5.2:
pH-Linked / 5.2.1:
Ammonia-Linked / 5.2.2:
Carbon Dioxide-Linked / 5.2.3:
Iodine-Selective / 5.2.4:
Silver Sulfide-Linked / 5.2.5:
Amperometric Sensors / 5.3:
Direct Electrolytic Methods / 5.3.1:
The Three Generations of Biosensors / 5.3.2:
First Generation--The Oxygen Electrode / 5.3.3:
Second Generation--Mediators / 5.3.4:
Third Generation--Directly Coupled Enzyme Electrodes / 5.3.5:
NADH/NAD[superscript +] / 5.3.6:
Examples of Amperometric Biosensors / 5.3.7:
Amperometric Gas Sensors / 5.3.8:
Conductometric Sensors and Biosensors / 5.4:
Chemiresistors / 5.4.1:
Biosensors Based on Chemiresistors / 5.4.2:
Semiconducting Oxide Sensors / 5.4.3:
Applications of Field-Effect Transistor Sensors / 5.5:
Chemically Sensitive Field-Effect Transistors (CHEMFETs) / 5.5.1:
Ion-Selective Field-Effect Transistors (ISFETs) / 5.5.2:
FET-Based Biosensors (ENFETs) / 5.5.3:
Photometric Applications / 6:
Techniques for Optical Sensors / 6.1:
Modes of Operation of Waveguides in Sensors / 6.1.1:
Immobilized Reagents / 6.1.2:
Visible Absorption Spectroscopy / 6.2:
Measurement of pH / 6.2.1:
Measurement of Carbon Dioxide / 6.2.2:
Measurement of Ammonia / 6.2.3:
Examples That Have Been Used in Biosensors / 6.2.4:
Fluorescent Reagents / 6.3:
Fluorescent Reagents for pH Measurements / 6.3.1:
Halides / 6.3.2:
Sodium / 6.3.3:
Potassium / 6.3.4:
Gas Sensors / 6.3.5:
Indirect Methods Using Competitive Binding / 6.4:
Reflectance Methods--Internal Reflectance Spectroscopy / 6.5:
Evanescent Waves / 6.5.1:
Reflectance Methods / 6.5.2:
Attenuated Total Reflectance / 6.5.3:
Total Internal Reflection Fluorescence / 6.5.4:
Surface Plasmon Resonance / 6.5.5:
Light Scattering Techniques / 6.6:
Types of Light Scattering / 6.6.1:
Quasi-Elastic Light Scattering Spectroscopy / 6.6.2:
Photon Correlation Spectroscopy / 6.6.3:
Laser Doppler Velocimetry / 6.6.4:
Mass-Sensitive and Thermal Sensors / 7:
The Piezo-Electric Effect / 7.1:
Principles / 7.1.1:
Gas Sensor Applications / 7.1.2:
Biosensor Applications / 7.1.3:
The Quartz Crystal Microbalance / 7.1.4:
Surface Acoustic Waves / 7.2:
Plate Wave Mode / 7.2.1:
Evanescent Wave Mode / 7.2.2:
Lamb Mode / 7.2.3:
Thickness Shear Mode / 7.2.4:
Thermal Sensors / 7.3:
Thermistors / 7.3.1:
Catalytic Gas Sensors / 7.3.2:
Thermal Conductivity Devices / 7.3.3:
Specific Applications / 8:
Determination of Glucose in Blood--Amperometric Biosensor / 8.1:
Survey of Biosensor Methods for the Determination of Glucose / 8.1.1:
Aim / 8.1.2:
Determination of Nanogram Levels of Copper(I) in Water Using Anodic Stripping Voltammetry, Employing an Electrode Modified with a Complexing Agent / 8.2:
Background to Stripping Voltammetry--Anodic and Cathodic / 8.2.1:
Determination of Several Ions Simultaneously--'The Laboratory on a Chip' / 8.2.2:
Sensor Arrays and 'Smart' Sensors / 8.3.1:
Background to Ion-Selective Field-Effect Transistors / 8.3.3:
Determination of Attomole Levels of a Trinitrotoluene--Antibody Complex with a Luminescent Transducer / 8.3.4:
Background to Immuno--Luminescent Assays / 8.4.1:
Determination of Flavanols in Beers / 8.4.2:
Background / 8.5.1:
Responses to Self-Assessment Questions / 8.5.2:
Bibliography
Glossary of Terms
SI Units and Physical Constants
Periodic Table
Index
Series Preface
Preface
Acronyms, Abbreviations and Symbols
5.

図書

図書
edited by Astrid Sigel and Helmut Sigel
出版情報: New York : Marcel Dekker, c2002  lix, 810 p. ; 24 cm
シリーズ名: Metal ions in biological systems / edited by Helmut Sigel ; v. 39
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Preface to the Series
Preface to Volume 39
In Memoriam of Professor Robert C. Bray
Contributors
Contents of Previous Volumes
Handbook on Toxicity of Inorganic Compounds
Handbook on Metals in Clinical and Analytical Chemistry
Handbook on Metalloproteins
The Biogeochemistry of Molybdenum and Tungsten / Edward I. StiefelChapter 1:
Introduction / 1.:
Molybdenum and Tungsten in the Environment / 2.:
The Nitrogen Cycle / 3.:
Sulfur Metabolism and the Sulfur Cycle / 4.:
Carbon Metabolism / 5.:
Arsenic, Selenium, and Chlorine Metabolism / 6.:
Conclusion / 7.:
Acknowledgment
Abbreviations
References
Transport, Homeostasis, Regulation, and Binding of Molybdate and Tungstate to Proteins / Richard N. Pau ; David M. LawsonChapter 2:
Competition with Iron(III)
Transport Systems
Cytoplasmic Molybdate-Binding Proteins
Conclusions
Acknowledgments
Abbreviations and Definitions
Molybdenum Nitrogenases: A Crystallographic and Mechanistic View / Barry E. SmithChapter 3:
The Nitrogenases
The Molybdenum-Iron Protein
The Iron Protein
Mechanistic Studies
The Nitrogenase Complex
The Active Site
Chemical Dinitrogen Fixation by Molybdenum and Tungsten Complexes: Insights From Coordination Chemistry / Masanobu Hidai ; Yasushi Mizobe8.:
Preparation and Structures of Dinitrogen Complexes
Reactions of Coordinated Dinitrogen
Biosynthesis of the Nitrogenase Iron-Molybdenum-Cofactor From Azotobacter Vinelandii / Jeverson Frazzon ; Dennis R. DeanChapter 5:
Biochemical Genetic Analysis of FeMo Cofactor Biosynthesis
A General Model for FeMo Cofactor Biosynthesis
Mobilization of Iron and Sulfur
NifB Cofactor
The NifEN Complex
Homocitrate Formation and Molybdenum Insertion
Role of Intermediate Carriers in FeMo Cofactor Biosynthesis
Role of the Iron Protein in Cofactor Assembly / 9.:
Summary and Future Prospects / 10.:
Molybdenum Enzymes Containing the Pyranopterin Cofactor: an Overview / Russ HilleChapter 6:
Classification of the Mononuclear Molybdenum Enzymes
Consideration of Selected Enzymes Not Covered in Other Chapters
Mechanistic Considerations
Concluding Remarks
The Molybdenum and Tungsten Cofactors: A Crystallographic View / Holger Dobbek ; Robert HuberChapter 7:
Structure of the Mo/W Cofactor
Moco-Containing Enzyme Families
Limitations of a Crystallographic Model
Models for the Pyranopterin-Containing Molybdenum and Tungsten Cofactors / Berthold Fischer ; Sharon J. Nieter BurgmayerChapter 8:
Early Models
Model Complexes of 1,2-Ene-Dithiolates
Metal Complexes of Pterins
Models with All Three Redox Sites
Biosynthesis and Molecular Biology of the Molybdenum Cofactor (Moco) / Ralf R. Mendel ; Gunter SchwarzChapter 9:
Genetics of the Molybdenum Cofactor
Biosynthesis of the Molybdenum Cofactor
Regulation of Molybdenum Cofactor Synthesis
Molybdenum in Nitrate Reductase and Nitrite Oxidoreductase / Peter M. H. Kroneck ; Dietmar J. AbtChapter 10:
Bacterial Respiratory Chains, Metalloenzymes, and Bioenergetics
Nitrate Reductase
Nitrite Oxidoreductase
Environmental Aspects and Biosensors
The Molybdenum-Containing Hydroxylases of Nicotinate, Isonicotinate, and Nicotine / Jan R. Andreesen ; Susanne FetznerChapter 11:
Hydroxylations of Nicotinate and Derivatives
Catabolism of Isonicotinate and Derivatives
Nicotine Catabolism: Enzymes and Genes Involved in Aerobic Transformations
Biotechnological Potentials and Medical Implications
The Molybdenum-Containing Xanthine Oxidoreductases and Picolinate Dehydrogenases / Emil F. Pai ; Takeshi NishinoChapter 12:
Xanthine Dehydrogenase/Xanthine Oxidase
Picolinate Dehydrogenase
Enzymes of the Xanthine Oxidase Family: the Role of Molybdenum / David J. LoweChapter 13:
The Reactions Catalyzed
Spectroscopic Investigations
Kinetic Studies
Theoretical Calculations
Discussion
The Molybdenum-Containing Hydroxylases of Quinoline, Isoquinoline, and Quinaldine / Reinhard Kappl ; Jurgen HuttermannChapter 14:
Biochemical and Genetic Characterization
Structural Features of Related Enzymes
EPR and ENDOR Characterization of Redox Centers
Molybdenum Enzymes in Reactions Involving Aldehydes and Acids / Maria Joao Romao ; Carlos A. Cunha ; Carlos D. Brondino ; Jose J. G. MouraChapter 15:
Enzymes of the Xanthine Oxidase Family
Enzymes of the Aldehyde Oxidoreductase Family
Molybdenum and Tungsten Enzymes in C1 Metabolism / Julia A. Vorholt ; Rudolf K. ThauerChapter 16:
Formate Dehydrogenase
Formylmethanofuran Dehydrogenase
Carbon Monoxide Dehydrogenase
Formaldehyde Dehydrogenases
Molybdenum Enzymes and Sulfur Metabolism / John H. Enemark ; Michele Mader CosperChapter 17:
Sulfite Oxidase
Dimethyl Sulfoxide Reductase
Biotin Sulfoxide Reductase
Polysulfide Reductase
Comparison of Selenium-Containing Molybdoenzymes / Vadim N. GladyshevChapter 18:
Overview of Selenium-Containing Molybdoenzymes
Incorporation of Selenium into Molybdoenzymes
Selenium Versus Sulfur in Catalysis
Evolution of Selenocysteine-Containing Molybdoenzymes
Tungsten-Dependent Aldehyde Oxidoreductase: A New Family of Enzymes Containing the Pterin Cofactor / Roopali Roy ; Michael W. W. AdamsChapter 19:
Classification of Tungstoenzymes
Aldehyde Ferredoxin Oxidoreductase
Carboxylic Acid Reductase and Aldehyde Dehydrogenase
Formaldehyde Ferredoxin Oxidoreductase
Glyceraldehyde-3-Phosphate Ferredoxin Oxidoreductase
Hypothetical Tungstoenzymes--WOR4 and WOR5
Tungsten Versus Molybdenum in the AOR Family
Tungsten-Substituted Molybdenum Enzymes / C. David Garner ; Lisa J. StewartChapter 20:
Molybdenum and Tungsten Chemistry: Similarities and Differences
Molybdenum and Tungsten Geochemistry and Link to Bioavailability
Early Attempts to Substitute Tungsten for Molybdenum
Molybdenum-Substituted Tungsten Acetylene Hydratase
Molybdenum Metabolism and Requirements in Humans / Judith R. TurnlundChapter 21:
Essentiality of Molybdenum in Humans
Dietary Intake and Bioavailability of Molybdenum
Molybdenum Deficiency and Toxicity
Stable Isotope Studies of Molybdenum Metabolism
Metabolism and Toxicity of Tungsten in Humans and Animals / Florence Lagarde ; Maurice LeroyChapter 22:
Metabolism of Tungsten
Toxicity of Tungsten
Subject Index
Preface to the Series
Preface to Volume 39
In Memoriam of Professor Robert C. Bray
6.

図書

図書
高橋英一著
出版情報: 東京 : 研成社, 2001.10  167p ; 19cm
シリーズ名: のぎへんのほん
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7.

図書

図書
小城勝相著
出版情報: 東京 : 講談社, 2002.1  215, viip ; 18cm
シリーズ名: ブルーバックス ; B-1357
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8.

図書

図書
Ugo Testa
出版情報: Noca Raton : CRC Press, c2002  559 p. ; 25 cm
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Iron Absorption
Iron and Cell Proliferation: Mechanisms and Applications in Cancer Therapy
Lactoferin
Transferrin
Transferrin Receptors
Soluble Transferrin Receptor
Alternative Iron Uptake Systems
Iron-Responsive Elements and Iron Regulatory Proteins
Ferritin
Iron Absorption
Iron and Cell Proliferation: Mechanisms and Applications in Cancer Therapy
Lactoferin
9.

図書

図書
by Timo Koski
出版情報: Dordrecht : Kluwer Academic Publishers, c2001  xvii, 391 p. ; 25 cm
シリーズ名: Computational biology series ; vol. 2
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10.

図書

図書
安藤祥司 [ほか] 共著
出版情報: 京都 : 化学同人, 2001.4  vii, 190p ; 26cm
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