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Scheper, Thomas [Editor]; Bhatia, P.K. [Contributor]; Danielsson, B. [Contributor]; Gemeiner, P. [Contributor]; Grabley, S. [Contributor]; Lammers, F. [Contributor]; Mukhopadhyay, A. [Contributor]; Ramanathan, K. [Contributor]; Saleemuddin, M. [Contributo:

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Editor-Thomas Scheper; Contributor-P.K. Bhatia; Contributor-B. Danielsson; Contributor-P. Gemeiner; Contributor-S. Grabley; Contributor-F. Lammers; Contributor-A. Mukhopadhyay; Contributor-K. Ramanathan; Contributor-M. Saleemuddin; Contributor-T. Scheper;:

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Thermal Biosensors Bioactivity Bioaffinity - gebunden oder broschiert

1998

ISBN: 3540649670

1999 Gebundene Ausgabe Biotechnologie, Industrielle Chemie und Chemietechnologie, Biosensor; biotechnology; Chromatography; Protein; Sensors, mit Schutzumschlag 11, [PU:Springer Berlin … Mehr…

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Details zum Buch
Thermal Biosensors Bioactivity Bioaffinity

The immobilized biocatalyst (IMB) is a key component of biotransformation systems that are used to transform substrates to desired products. The impro- ment of biocatalyst properties has a direct influence on the overall effectiveness of the process based on the biotransformation. The basic catalytic characte- stics of biocatalyst that are followed include kinetic properties, pH optima, stability, and inhibition. The investigation of catalytic properties of immobilized enzymes is still a time consuming procedure and is not always simple. In the 1980s, a major effort was made to standardize the rules by which IMB is char- terized. The Working Party of EFB on immobilized biocatalysts has formul- ed principles of individual methods, among them the requirement of kinetic characterization [1]. It was recommended to use a packed-bed reactor, equipped with temperature control and with infinite flow circulation. The system should be equipped with a post-column unit to measure the time-dependence of the product or substrate concentration [2, 3], the most commonly used analytical methods being spectrophotometry, chemiluminiscence, automatic titration, bioluminiscence, chromatography, polarimetry, and biosensors based on the oxygen electrode. There are two main drawbacks to the application of these methods: 1. The need to vary the analytical principles, depending on the chemical and physical-chemical properties of analytes; 2. In some cases, mainly in the study of hydrolytic enzymes, the natural s- strate must be replaced by an artificial one, that is chromolytic, chromogenic, chemiluminiscent, bioluminiscent, or fluorescent.

Detailangaben zum Buch - Thermal Biosensors Bioactivity Bioaffinity


EAN (ISBN-13): 9783540649670
ISBN (ISBN-10): 3540649670
Gebundene Ausgabe
Taschenbuch
Erscheinungsjahr: 1999
Herausgeber: Springer Berlin

Buch in der Datenbank seit 2007-07-01T20:42:54+02:00 (Vienna)
Detailseite zuletzt geändert am 2023-10-27T16:56:37+02:00 (Vienna)
ISBN/EAN: 3540649670

ISBN - alternative Schreibweisen:
3-540-64967-0, 978-3-540-64967-0
Alternative Schreibweisen und verwandte Suchbegriffe:
Autor des Buches: ramanathan, gemeiner, scheper, xie, prakash, danielsson, grabley, thomas lammer, bhatia, lammers, mukhopadhyay
Titel des Buches: biosensor, biochemical engineering biotechnology, advances biochemical engineering


Daten vom Verlag:

Autor/in: Thomas Scheper
Titel: Advances in Biochemical Engineering/Biotechnology; Thermal Biosensors Bioactivity Bioaffinity
Verlag: Springer; Springer Berlin
239 Seiten
Erscheinungsjahr: 1998-12-04
Berlin; Heidelberg; DE
Sprache: Englisch
213,99 € (DE)
219,99 € (AT)
236,00 CHF (CH)
Available
IX, 239 p. 28 illus.

BB; Hardcover, Softcover / Biologie/Genetik, Gentechnik; Biotechnologie; Verstehen; Biosensor; biotechnology; chromatography; protein; sensors; Biotechnology; Analytical Chemistry; Industrial Chemistry; Analytische Chemie; Industrielle Chemie und Chemietechnologie; EA; BC

Principles of Enzyme Thermistor Systems: Applications to Biomedical and Other Measurements.- Thermal Biosensors in Biotechnology.- Investigation of Catalytic Properties of Immobilized Enzymes and Cells by Flow Microcalorimetry.- Bioactive Agents from Natural Sources: Trends in Discovery and Application.- Protein Glycosylation: Implications for In Vivo Functions and Therapeutic Applications.- Bioaffinity Based Immobilization of Enzymes.
This review series covers actual trends in modern biology All aspects of this interdisciplinary technology, where knowledge, methods and expertise are required from chemistry, biochemistry, microbiology, genetics, chemical engineering and computerscience, are treated In parts of the series special volumes are dedicated to selected topics

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