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Immobilized bacterial luciferase and its applications
1Department of Chemistry, M.V. Lomonosov Moscow State University, USSR.
Applied Biochemistry and Biotechnology
|June 1, 1987
Summary
This review covers bioluminescent bacterial systems and enzyme immobilization techniques. It explores applications of immobilized bacterial luciferases in analytical biochemistry and biotechnology.
Area of Science:
- Biochemistry
- Biotechnology
- Microbiology
Background:
- Bioluminescent bacterial systems offer unique enzymatic properties for various applications.
- Enzyme immobilization is crucial for enhancing stability and reusability.
- Bacterial luciferases are key enzymes in bioluminescence reactions.
Purpose of the Study:
- To review the properties of bioluminescent bacterial systems.
- To discuss methods for immobilizing bacterial luciferases and co-immobilizing them with other enzymes.
- To describe analytical systems utilizing immobilized bacterial luciferases and their applications.
Main Methods:
- Literature review of scientific publications.
- Analysis of immobilization techniques for bacterial luciferases.
- Examination of co-immobilization strategies with other enzymes.
- Review of analytical systems and their applications.
Main Results:
- Detailed discussion of bacterial bioluminescence properties.
- Overview of various immobilization methods for bacterial luciferases.
- Examples of co-immobilization with other enzymes for enhanced functionality.
- Description of analytical systems and their use in biochemistry and biotechnology.
Conclusions:
- Immobilized bacterial luciferases provide robust tools for analytical applications.
- Co-immobilization strategies expand the utility of these systems.
- Bioluminescent bacterial systems hold significant potential in biotechnology and analytical biochemistry.