Welcome Guest
  |   0 items in your shopping cart
 

BROWSE BY STANDARDS

BROWSE BY CATEGORY

***
 
 
Join our mailing list to recieve newsletters
 

GFP Whole Cell Microbial Biosensors : Scale-Up and Scale-Down Effects on Biopharmaceutical Processes

Send to friend
 
Title: GFP Whole Cell Microbial Biosensors : Scale-Up and Scale-Down Effects on Biopharmaceutical Processes
Author: Alison Brognaux, Frank Delvigne, Philippe Thonart, Shanshan Han, Soren J. Sorensen
ISBN: 0791860094 / 9780791860090
Format: Hard Cover
Pages: 60
Publisher: ASME
Year: 2013
Availability: 45-60 days
     
 
  • Description
  • Contents

Up to 40 volumes are planned for this concise monograph series, which focuses on the implementation of various engineering principles in the conception, design, development, analysis and operation of biomedical, biotechnological and nanotechnology systems and applications.

Abstract: Two strategies are usually considered for the optimization of microbial bioprocesses. The first one involves genetic or metabolic engineering of the target microbial strains in order to improve its production efficiency or its tolerance to adverse conditions. The second one is based on the chemical engineering improvement of the bioreactors and scaling-up rules. This work is more particularly dedicated to this second class of parameters. Recent developments in bioreactor technologies follow the scaling-out principle, i.e. carrying out several cultures in parallel with controlled conditions for screening purposes. Several mini-bioreactor concepts, i.e. bioreactor with working volume of 1 to 100 mL with controlling devices, have been developed following this principle. In general, chemical engineering similarities between conventional stirred bioreactors and their miniature equivalent are well characterized. However, the actual scaling-up rules are not able to cope with the complexity of the microbial stress response. Indeed, microbial stress response still remains not completely understood considering the process perturbations and the environmental fluctuations accompanying the scaling-up to industrial bioreactors.

At this time, this kind of response can only be experimentally predicted by using scale-down bioreactors, i.e. lab-scale bioreactors designed in order to reproduce mixing imperfections that have to be expected at large-scale. However, the use of such an approach is time consuming and requires an experimented staff to elaborate the scaling-down protocols. Indeed, bioprocess development involves several steps which cannot be necessarily linked with each other considering the different cultivation equipment used.

Preface

Chapter 1 : Interaction Between Fluid Flow and Microbial Cells : Importance of The Operating Scale
Chapter 2 : Stochastic Simulation of The Displacement of Microbial Cells Along Concentration Field
Chapter 3 : Experimental Results Gained From The Physiological Response of GFP Biosensors in Scale-Down Conditions
Chapter 4 : Another Source of Information : Protein Leakage and The Study of The Secretome

References
Index

 
 
 
About Us | Contact us
loading...
This page was created in 0.19447207450867 seconds