E-Book, Englisch, 536 Seiten
Sadana Handbook of Biosensors and Biosensor Kinetics
1. Auflage 2010
ISBN: 978-0-08-093285-9
Verlag: Elsevier Science & Techn.
Format: EPUB
Kopierschutz: 6 - ePub Watermark
E-Book, Englisch, 536 Seiten
ISBN: 978-0-08-093285-9
Verlag: Elsevier Science & Techn.
Format: EPUB
Kopierschutz: 6 - ePub Watermark
Biosensors are essential to an ever-expanding range of applications, including healthcare; drug design; detection of biological, chemical, and toxic agents; environmental monitoring; biotechnology; aviation; physics; oceanography; and the protection of civilian and engineering infrastructures. This book, like the previous five books on biosensors by this author (and one by the co-author), addresses the neglected areas of analyte-receptor binding and dissociation kinetics occurring on biosensor surfaces. Topics are covered in a comprehensive fashion, with homogeneous presentation for the benefit of the reader. The contributors address the economic aspects of biosensors and incorporate coverage of biosensor fabrication and nanobiosensors, among other topics. The comments, comparison, and discussion presented provides a better perspective of where the field of biosensors is heading.
Serves as a comprehensive resource on biosensor analysisExamines timely topics such as biosensor fabrication and nanobiosensors Covers economic aspects and medical applications (e.g., the role of analytes in controlling diabetes)
Autoren/Hrsg.
Weitere Infos & Material
1;Front cover;1
2;Handbook of Biosensors and Biosensor Kinetics;4
3;Copyright page;5
4;Contents;6
5;Preface;12
6;Chapter 1: Introduction;13
6.1;1.1. Introduction;13
6.2;1.2. Biosensor Markets and Economics;21
6.3;1.3. Chapter Contents;23
7;Chapter 2: Modeling and Theory;27
7.1;2.1. Introduction;27
7.2;2.2. Theory;31
8;Chapter 3: Fabrication of Biosensors;47
8.1;3.1. Introduction;48
8.2;3.2. Different Methods of Biosensor Fabrication;49
8.3;3.3. Conclusions;67
9;Chapter 4: Biosensors Involved in Drug Discovery;73
9.1;4.1. Introduction;73
9.2;4.2. Theory;74
9.3;4.3. Results;76
9.4;4.4. Conclusions;104
10;Chapter 5: Nanobiosensors;107
10.1;5.1. Introduction;107
10.2;5.2. Optical Dna Detection By Multifunctional Cross-Linked Au Nanoaggregates (Li Et al., 2009);109
10.3;5.3. High-Performance Multiplexed Determination of Proteins: Determinations of Cancer Biomarkers in Serum and Saliva Using Qd;111
10.4;5.4. Carbon Nanofiber Paste Electrode Nonenzymatic Glucose Sensor (Liu Et al., 2009);113
10.5;5.5. Use of Gold Nanoparticles in a Sensitive Immunochromatographic Assay for the Detection of Psa in Serum (Nagatani Et al.,;116
10.6;5.6. In Vitro Characterization of an Intracellular Nanosensor For Ros (Henderson Et al., 2009);117
10.7;5.7. Combined Fluorescence and Sers Molecular Beacon Assay To Detect Human Viral Rna (Sha Et al., 2007);119
10.8;5.8. Nanotube-Based Biosensor for the Detection of Disease-Specific Autoantibodies in Human Serum (Drouvalakis Et al., 2008).;121
10.9;5.9. Gold Nanoparticle Amperometric Immunosensor (Biosensor) For Opg (Singh Et al., 2008);123
10.10;5.10. Label-Free Antigen-Antibody Binding on a Gold Nanoparticle Sensor Array (Olkhov and Shaw, 2008);125
10.11;5.11. Electrochemical Immunosensing Using Magnetic Beads and Gold Nanocatalysts (Selvaraju Et al., 2007);128
10.12;5.12. Conclusions;130
11;Chapter 6: Binding of the Same Analyte to Different Biosensor Surfaces;141
11.1;6.1. Introduction;141
11.2;6.2. Theory;143
11.3;6.3. Results;144
11.4;6.5. Conclusions;171
12;Chapter 7: Binding of the Same Analyte (Glucose) to Different Biosensor Surfaces;181
12.1;7.1. Introduction;181
12.2;7.2. Theory;182
12.3;7.3. Results;184
12.4;7.4. Conclusions;205
13;Chapter 8: Medical Applications of Biosensors;209
13.1;8.1. Introduction;209
13.2;8.2. Theory;210
13.3;8.3. Results;212
13.4;8.4. Conclusions;232
14;Chapter 9: Physiological Cellular Reactions Detection on Biosensor Surfaces;235
14.1;9.1. Introduction;235
14.2;9.2 Theory;236
14.3;9.3. Results;238
14.4;9.4. Conclusions;264
15;Chapter 10: Detection of Gases on Biosensor Surfaces;267
15.1;10.1. Introduction;267
15.2;10.2. Theory;268
15.3;10.3. Results;270
15.4;10.4. Conclusions;304
16;Chapter 11: Detection of Analytes on Arrays/Microarrays/Dna Chips;309
16.1;11.1. Introduction;309
16.2;11.2. Theory;310
16.3;11.3. Results;311
16.4;11.4. Conclusions;344
17;Chapter 12: Binding and Dissociation Kinetics of Different Analytes on Novel Biosensing Surfaces;347
17.1;12.1. Introduction;347
17.2;12.2 Theory;348
17.3;12.3 Results;350
17.4;12.4 Conclusions;373
18;Chapter 13: Binding of Different Analytes on Biosensor Surfaces;377
18.1;13.1. Introduction;377
18.2;13.2. Theory;378
18.3;13.3. Results;380
18.4;13.4. Conclusions;396
19;Chapter 14: Toxins and Pollutants Detection on Biosensor Surfaces;401
19.1;14.1. Introduction;401
19.2;14.2. Theory;405
19.3;14.3. Results;406
19.4;14.4. Conclusions;430
20;Chapter 15: Fractal Analysis of the Binding and Dissociation Kinetics of Protein Biomarkers and Other Medically Oriented Anal;435
20.1;15.1. Introduction;435
20.2;15.2. Theory;436
20.3;15.3. Results;438
20.4;15.4 Conclusions;455
21;Chapter 16: Binding and Dissociation Kinetics During Hybridization on Biosensor Surfaces;461
21.1;16.1. Introduction;461
21.2;16.2. Theory;462
21.3;16.3. Results;464
21.4;16.4. Conclusions;494
22;Chapter 17: Economics of Biosensors;499
22.1;17.1. Introduction;499
22.2;17.2. Market Reports and Trends;500
22.3;17.3. Examples of Investment/Financing in Biosensor Companies;512
23;Index;519




