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In Enzyme and Microbial Biosensors: Protocols and Techniques, master experimentalists detail cutting-edge methods developed in their own laboratories for the construction and evaluation of enzyme- and cell-based biosensors. The enzyme biosensors detailed here are based on potentiometric, amperometric, conductimetric, optical, and thermal transducers, whereas the microbial biosensors are based on oxygen-gas electrode and optical techniques in which microorganisms are coupled to the signal transducer. All the techniques are thoroughly tested and are presented in sufficient detail to ensure robust and easily reproducible results. A companion volume, Affinity Biosensors: Protocols and Techniques, by Rogers & Mulchandani, concentrates on affinity biosensors based on optical, electrochemical, thermal, acoustic, and plasmon resource techniques as applied to nucleic acids, liposomes, and eukaryotic cells. Clearly the optimal starting point for all graduate students, postdoctoral and senior researchers, and technicians in academia, industry, and research establishments seeking rapid entry into the field of biosensors, Enzyme and Microbial Biosensors: Protocols and Techniques instantly becomes today's leading reference. Its step-by-step descriptions of various enzyme- and microbial-based biosensor techniques will allow both novices and experienced investigators alike successfully to apply these powerful new tools, and thus sharply enhance their laboratories' productivity.
Biosensors. --- Chemical detectors. --- Biotechnological process monitoring. --- Biotechnological process control. --- microorganisms --- Biotechnology --- Indicator organisms --- Enzymes --- Enzyme activity --- Electronics --- Biocapteurs --- Détecteurs de produits chimiques --- Procédés biotechnologiques --- Surveillance --- Contrôle --- Bioprocess control --- Biotechnical process control --- Bioprocess monitoring --- Biotechnical process monitoring --- Monitoring, Biotechnological process --- Chemical sensors --- Biodetectors --- Biological detectors --- Biological sensors --- Biomedical detectors --- Biomedical sensors --- Chemical apparatus --- Detectors --- Medical instruments and apparatus --- Physiological apparatus --- Process control --- Biochemistry. --- Biochemistry, general. --- Biological chemistry --- Chemical composition of organisms --- Organisms --- Physiological chemistry --- Biology --- Chemistry --- Medical sciences --- Composition
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Affinity Biosensors: Protocols and Techniques is a major new work that describes how affinity biosensors are developed, constructed, and applied across the widest range of biological research. Here, scientists long-experienced with the construction and evaluation of these biosensors detail their most successful techniques and applications. The methods include protocols for affinity biosensors based on optical, electrochemical, thermal acoustic, and plasmon resonance techniques involving the use of antibodies, receptor, nucleic acids, liposomes, and eukaryotic cells. All the techniques are time-tested and sufficiently detailed to ensure robust and easily reproducible results. A companion volume, Enzyme and Microbial Biosensors: Protocols and Techniques, by Mulchandani & Rogers, concentrates on enzyme-biosensors based on potentiometric, amperometric, conductimetric, optical, and thermal transducers, as well as microbial biosensors based on amperometric and optical transducers. Clearly the optimal starting point for all graduate students, postdoctoral and senior researchers, and technicians in academia, industry, and research establishments seeking rapid entry into the field of biosensors, Affinity Biosensors: Protocols and Techniques instantly becomes today's leading reference. Its step-by-step descriptions of various affinity biosensor techniques will allow both novices and experienced investigators alike successfully to apply these powerful new tools, and thus sharply enhance their laboratories' productivity.
Biosensors. --- Electronic books. -- local. --- Immunotechnology. --- Biosensors --- Immunotechnology --- Molecular Probe Techniques --- Biochemical Processes --- Cell Physiological Processes --- Signal Transduction --- Biosensing Techniques --- Biochemical Phenomena --- Cell Physiological Phenomena --- Investigative Techniques --- Chemical Processes --- Chemical Phenomena --- Phenomena and Processes --- Analytical, Diagnostic and Therapeutic Techniques and Equipment --- Health & Biological Sciences --- Biomedical Engineering --- Biocapteurs --- Immunotechnologie --- Antibody engineering --- Immunological engineering --- Industrial immunology --- Biodetectors --- Biological detectors --- Biological sensors --- Biomedical detectors --- Biomedical sensors --- Biotechnology --- Immunology --- Detectors --- Medical instruments and apparatus --- Physiological apparatus --- Biochemistry. --- Biochemistry, general. --- Biological chemistry --- Chemical composition of organisms --- Organisms --- Physiological chemistry --- Biology --- Chemistry --- Medical sciences --- Composition
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Biosensors --- Chemical detectors --- Biotechnological process monitoring --- Biotechnological process control --- Biological Science Disciplines --- Natural Science Disciplines --- Technology --- Molecular Probe Techniques --- Disciplines and Occupations --- Technology, Industry, and Agriculture --- Investigative Techniques --- Analytical, Diagnostic and Therapeutic Techniques and Equipment --- Technology, Industry, Agriculture --- Biotechnology --- Chemistry --- Biosensing Techniques --- Health & Biological Sciences --- Biomedical Engineering --- Congresses --- Congresses. --- Biotechnological process monitoring - Congresses. --- Biotechnological process control - Congresses.
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Biosensors --- Chemical detectors --- Biotechnological process monitoring --- Biotechnological process control
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