Effect of High-Pressure Technologies on Enzymes
ebook ∣ Science and Applications · Foundations and Frontiers in Enzymology
By Bruno Ricardo de Castro Leite Júnior
Sign up to save your library
With an OverDrive account, you can save your favorite libraries for at-a-glance information about availability. Find out more about OverDrive accounts.
Find this title in Libby, the library reading app by OverDrive.

Search for a digital library with this title
Title found at these libraries:
Library Name | Distance |
---|---|
Loading... |
Effect of High-Pressure Technologies on Enzyme: Science and Applications provides a deep, practical discussion of high-pressure processing (HPP) and high-pressure homogenization (HPH) technologies and biochemical approaches, applied across research and industry, with applications ranging from food to pharmaceuticals and commercial enzyme production. Early chapters discuss foundational aspects of HPP and HPH approaches; the science of enzyme modification; and basic aspects of enzyme activity, stability, and structure as studied in biochemical processes. Later chapters consider the effect of HPP and HPH technologies and their mechanisms of controlling enzyme modification to improve enzyme performance for chosen applications. Special attention is paid to the application of HPP and HPH technologies and enzyme modifications in food processing, microbial enzyme modification, drug discovery, and production of other commercial enzymes, as well as the challenges of undesirable enzyme inactivation. The final chapter discusses future directions of the field and technologies, and expanded applications. - Offers a broad overview of HPP and HPH approaches and technologies applied in enzyme modification
- Introduces fundamental aspects of enzyme activity, stability, and structure as studied in biochemical processes and applications
- Discusses applications of HPP- and HPH-based enzyme modifications in food processing, microbial enzyme modification, drug discovery, and production of other commercial enzymes
- Includes chapter contributions from international leaders in the field, across research and industry