Literature DB >> 21674819

Techno-economic evaluation of an inclusion body solubilization and recombinant protein refolding process.

Esteban J Freydell1, Luuk A M van der Wielen, Michel H M Eppink, Marcel Ottens.   

Abstract

Expression of recombinant proteins in Escherichia coli is normally accompanied by the formation of inclusion bodies (IBs). To obtain the protein product in an active (native) soluble form, the IBs must be first solubilized, and thereafter, the soluble, often denatured and reduced protein must be refolded. Several technically feasible alternatives to conduct IBs solubilization and on-column refolding have been proposed in recent years. However, rarely these on-column refolding alternatives have been evaluated from an economical point of view, questioning the feasibility of their implementation at a preparative scale. The presented study assesses the economic performance of four distinct process alternatives that include pH induced IBs solubilization and protein refolding (pH_IndSR); IBs solubilization using urea, dithiothreitol (DTT), and alkaline pH followed by batch size-exclusion protein refolding; inclusion bodies (IBs) solubilization using urea, DTT, and alkaline pH followed by simulated moving bed (SMB) size-exclusion protein refolding, and IBs solubilization using urea, DTT and alkaline pH followed by batch dilution protein refolding. The economic performance was judged on the basis of the direct fixed capital, and the production cost per unit of product (P(C)). This work shows that (1) pH_IndSR system is a relatively economical process, because of the low IBs solubilization cost; (2) substituting β-mercaptoethanol for dithiothreithol is an attractive alternative, as it significantly decreases the product cost contribution from the IBs solubilization; and (3) protein refolding by size-exclusion chromatography becomes economically attractive by changing the mode of operation of the chromatographic reactor from batch to continuous using SMB technology.
Copyright © 2011 American Institute of Chemical Engineers (AIChE).

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Year:  2011        PMID: 21674819     DOI: 10.1002/btpr.652

Source DB:  PubMed          Journal:  Biotechnol Prog        ISSN: 1520-6033


  3 in total

1.  Characterization of the 4,6-α-glucanotransferase GTFB enzyme of Lactobacillus reuteri 121 isolated from inclusion bodies.

Authors:  Yuxiang Bai; Rachel Maria van der Kaaij; Albert Jan Jacob Woortman; Zhengyu Jin; Lubbert Dijkhuizen
Journal:  BMC Biotechnol       Date:  2015-06-09       Impact factor: 2.563

Review 2.  Advances in monitoring and control of refolding kinetics combining PAT and modeling.

Authors:  Jan Niklas Pauk; Janani Raju Palanisamy; Julian Kager; Krisztina Koczka; Gerald Berghammer; Christoph Herwig; Lukas Veiter
Journal:  Appl Microbiol Biotechnol       Date:  2021-02-17       Impact factor: 4.813

3.  Recombinant expression of insoluble enzymes in Escherichia coli: a systematic review of experimental design and its manufacturing implications.

Authors:  Suraj Mital; Graham Christie; Duygu Dikicioglu
Journal:  Microb Cell Fact       Date:  2021-10-30       Impact factor: 5.328

  3 in total

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