Principles, techniques, and applications of biocatalyst immobilization for industrial application

被引:293
作者
Es, Ismail [1 ,2 ]
Goncalves Vieira, Jose Daniel [3 ]
Amaral, Andre Correa [1 ,2 ]
机构
[1] Univ Fed Goias, Inst Trop Pathol & Publ Hlth, Lab Nanotechnol & Biotechnol, Goiania, Go, Brazil
[2] Univ Fed Goias, Inst Biol Sci, Mol Biol & Genet Post Grad Program, Goiania, Go, Brazil
[3] Univ Fed Goias, Inst Trop Pathol & Publ Hlth, Dept Microbiol, Goiania, Go, Brazil
关键词
Immobilization; Biocatalysts; Bioprocess; Bioreactor; FLUIDIZED-BED REACTOR; PENICILLIN-G ACYLASE; BIODIESEL PRODUCTION; ENZYME IMMOBILIZATION; BETA-GALACTOSIDASE; CALCIUM ALGINATE; BACILLUS-LICHENIFORMIS; ALPHA-AMYLASE; LIPASE; ENTRAPMENT;
D O I
10.1007/s00253-015-6390-y
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Immobilization is one of the most effective and powerful tools used in industry, which has been studied and improved since the last century. Various immobilization techniques and support materials have been used on both laboratory and industrial scale. Each immobilization technique is applicable for a specific production mostly depending on the cost and sensibility of process. Compared to free biocatalyst systems, immobilization techniques often offer better stability, increased activity and selectivity, higher resistance, improved separation and purification, reuse of enzymes, and consequently more efficient process. Recently, many reviews have been published about immobilization systems; however, most of them have focused on a specific application or not emphasized in details. This review focuses on most commonly used techniques in industry with many recent applications including using bioreactor systems for industrial production. It is also aimed to emphasize the advantages and disadvantages of the immobilization techniques and how these systems improve process productivity compared to non-immobilized systems.
引用
收藏
页码:2065 / 2082
页数:18
相关论文
共 137 条
[1]   Immobilized Burkholderia cepacia lipase for biodiesel production from crude Jatropha curcas L. oil [J].
Abdulla, Rahmath ;
Ravindra, Pogaku .
BIOMASS & BIOENERGY, 2013, 56 :8-13
[2]  
Aehle W, 2006, ENZYMES IND PRODUCTS, P73
[3]  
Aguilera JM, 2010, FOOD ENG INTERFACES, P121
[4]   Preparation and characterization of Protein A-immobilized PVDF and PES membranes [J].
Akashi, N. ;
Kuroda, S. .
EXPRESS POLYMER LETTERS, 2015, 9 (01) :2-13
[5]  
Albertsson P., 1986, Partitioning of Cell Particles and Macromolecules, DOI DOI 10.1002/CBF.290050311
[6]   A Comparative Study of Stout Beer Batch Fermentation Using Free and Microencapsulated Yeasts [J].
Almonacid, Sergio F. ;
Najera, Ana L. ;
Young, Manuel E. ;
Simpson, Ricardo J. ;
Acevedo, Cristian A. .
FOOD AND BIOPROCESS TECHNOLOGY, 2012, 5 (02) :750-758
[7]  
Amaral AC, 2013, CURR PROTEIN PEPT SC, V14, P588
[8]  
[Anonymous], CHINESE SOCIOL REV
[9]  
Araki T, 1990, LIQUID MEMBRANES CHE, P35
[10]   EDC and sulfo-NHS functionalized on PVC-g-PEGMA for streptokinase immobilization [J].
Arenas, E. ;
Castillon, F. F. ;
Farias, M. H. .
DESIGNED MONOMERS AND POLYMERS, 2012, 15 (04) :369-378