An Overview of Fermentation Production and Application of Bacterial Cellulose

Article Preview

Abstract:

Bacterial cellulose is a new pattern material produced by microorganism, because it has unique physical properties, chemical characteristics and mechanical properities, so it’s widely applied into food, biomedical, textile and many other kinds of industry. On the other side, because it’s a kind of pure natural biopolymer produced by microorganism, so the cellulose has biological activity, biodegradability and biocompatibility etc of excellent characteristics. It has been proved that bacterial cellulose is a biological environmental protection type material, so it becomes the hotspot of many researches and applications all over the world. This paper summarized the method of screening the cellulose-producing strain, how to make the bacterial cellulose yield increase, and the bacterial cellulose’s important applications in different industries.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

878-884

Citation:

Online since:

December 2012

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2013 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

[1] Chief editor J.Z. Zhang,Microbial Taxonomy.Shanghai:Fudan University Press,1992. (In Chinese)

Google Scholar

[2] S.M.Lu,J.J. Jia,Ying Yang.research Progress of Bacterial Cellulose Fermentation Technology and Application . Food and Fermentation Technology,2011,47(1),27-31. (In Chinese)

Google Scholar

[3] H.P. Cao,Shuai Yuan,Kun Zhao,etc. Selection and identification of high yield strains of bacterial cellulose .Food Science, 2010, 31(05):211-214.

Google Scholar

[4] X.J. Zhang Z.D. Lin W.B. Chen J.H. Rong. Progress on Study of Bacterial Cellulose Nanocomposite. Synthetic Fiber in China,2010.01.

Google Scholar

[5] H.P. Cao,Shuai Yuan,Kun Zhao,etc. Selection and Identification of High Yield Strains of Bacterial Cellulose .Food Science, 2010, 31(05):211-214. (In Chinese)

Google Scholar

[6] Ya Liu,Yong Yang,Yi Xiao,etc. Selection and Identification of High Yield Bacteria of Cellulose Food Science, 2008, 29(03):304-306. (In Chinese)

Google Scholar

[7] Y.F. Zhang H.M.Lu,F.J. Zhang,etc. Rain Poured Liquid Vinegar Production Membrane Separation of Bacteria in the Middle and Bacteria Film Components Research. Cellulose Science and Technology,2008,16(1):20-24. (In Chinese)

Google Scholar

[8] Z.G. Wang C.Y. Zhong X.B. Wang,Rui Zheng.Coconut Water Fermentation in Natural Conditions Have the Influence On the Bacterial Cellulose Production. China Brewing,2009,04,32-33. (In Chinese)

Google Scholar

[9] Dan Huang,Yong Cai Y.F. Wang. Analysis of the Structure and Properties of Bacterial Cellulose Produced in Different Cultivation Mode . China Brewing.2008,07,51-53. (In Chinese)

Google Scholar

[10] Ya Liu,Yong Yang,Yi Xiao,etc. Selection and Identification of High Yield Bacteria of Cellulose Food Science, 2008, 29(03):304-306. (In Chinese)

Google Scholar

[11] Q.S. Shi,Jing Feng. Separated and Preliminarily Identified of a Bacterial Cellulose Production Strain. Fermentation Technology Communication,2009,38(2):11-14.

Google Scholar

[12] Julasak Juntaro, Marion Pommet, Gerhard Kalinka, Athanasios Mantalaris, Milo S. P. Shaffer, Alexander Bismarck ,Creating Hierarchical Structures in Renewable Composites by Attaching Bacterial Cellulose onto Sisal Fibers ,Advanced Materials,4 JUL 2008,3122-3126.

DOI: 10.1002/adma.200703176

Google Scholar

[13] Prashant R. Chawla, Ishwar B. Bajaj, Shrikant A. Survase and Rekha S. Singhal. Microbial Cellulose: Fermentative Production and Applications, Fermentative Production of Microbial Cellulose, Food Technol. Biotechnol. 2009,47 (2) 107–124.

Google Scholar

[14] F.D.E. Goelzer, P.C.S. Faria-Tischer, J.C. Vitorino, Maria -R. Sierakowski, C.A. Tischer,Production and Characterization of Nanospheres of Bacterial Cellulose From Acetobacter Xylinum From Processed Rice Bark. Materials Science and Engineering: C.1 March 2009, 546-551.

DOI: 10.1016/j.msec.2008.10.013

Google Scholar

[15] G.C. Zhang,S.R,Jia,Ling Yan,Jing Li. Plasma into Mutagenesis Breeding High Product Bacterial Cellulose Strain. Modern Food Science and Technology, 2010, 1354-1357. (In Chinese)

Google Scholar

[16] K.Y. Qiu. Low Cost Culture Medium Carbon Source Preparation and high Yield Cellulose Mutation Breeding of Acetobacter Xylinum. Donghua University,2006. (In Chinese)

Google Scholar

[17] W.H. Tang,Fei Li,Y.Y. Jia, S.R. Jia. Bacterial Cellulose Strain of Mutation Breeding and High Yield Research Conditions of Fermentation. Modern Food Science and Technology, 2009, 1016-1019. (In Chinese)

Google Scholar

[18] K.Y. Qiu,Feng Hong. Mutagenesis Breeding Acetobacter Xylinum to Improve Bacterial Cellulose Production. Donghua University Journal: Natural Science Edition.2008(02):181-185. (In Chinese)

Google Scholar

[19] Y.C. Wang L.J.Li,Y.H.Ma,X.J. Wang M.H.Lu.Progress of Bacterial Cellulose Production and Application Research. China Brewing.2011(04),20-23. (In Chinese)

Google Scholar

[20] K.C Cheng, Jeff M Catchmark and Ali Demirci.Enhanced Production of Bacterial Cellulose by Using a Biofilm Reactor and its Material Property Analysis.Journal of Biological Engineering,24 July 2009.

DOI: 10.13031/2013.27013

Google Scholar

[21] BAE SO,SUGANO Y,OHI K,et a1.Features of Bacterial Cellulose Synthesis in a Mutant Generated by Disruption of the Diguanylate Cyclase 1 Gene of Acetobacter Xylinum BPR 2001.Appi Microbiol Biot, 2004,65:315-322.

DOI: 10.1007/s00253-004-1593-7

Google Scholar

[22] Henrik Bäckdahl , Maricris Esguerra, Dick Delbro, Bo Risberg, Paul Gatenholm. Engineering Microporosity in Bacterial Cellulose Scaffolds,Journal of Tissue Engineering and Regenerative Medicine,August 2008,320-330.

DOI: 10.1002/term.97

Google Scholar

[23] Amir Sani, Yaser Dahman,Improvements in the Production of Bacterial Synthesized Biocellulose Nanofibres Using Different Culture Methods.Journal of Chemical Technology and Biotechnology,February 2010,page151-164.

DOI: 10.1002/jctb.2300

Google Scholar

[24] Prashant R. Chawla, Ishwar B. Bajaj, Shrikant A. Survase and Rekha S. Singhal. Microbial Cellulose: Fermentative Production and Applications, Fermentative Production of Microbial Cellulose, Food Technol. Biotechnol. 2009,47 (2) 107–124 .

Google Scholar

[25] Houssni El-Saied, Ahmed I. El-Diwany, Altaf H. Basta, Nagwa A. Atwa, Dina E. El-Ghwas.Production and Characterization of Economical Bacterial Cellulose. BioResources, Vol 3, No 4 (2008).

DOI: 10.15376/biores.3.4.1196-1217

Google Scholar

[26] Seto A,Saito Y,Matsushige M,et a1.Effective Cellulose Production by a Coculture of Gluconacetobacter Xylinus and Lactobacillus Mail.Appl Microbiol Biotechnol,2006,73(4):915-921.

DOI: 10.1007/s00253-006-0515-2

Google Scholar

[27] Hu Y,Catchmark J M.Influence of 1-Methylcyclopropene(1•MCP)on the Production of Bacterial Cellulose Biosynthesized by Acetobacter Xylinum Under the Agitated Culture.Lett Appl Microbiol,2010,51(1):109-113.

DOI: 10.1111/j.1472-765x.2010.02866.x

Google Scholar

[28] Amir Sani, Yaser Dahman,Improvements in the Production of Bacterial Synthesized Biocellulose Nanofibres Using Different Culture Methods.Journal of Fermentation and Bioengineering, February 2010,page 151-164.

DOI: 10.1002/jctb.2300

Google Scholar

[29] K.C Cheng, Jeff M Catchmark and Ali Demirci.Enhanced Production of Bacterial Cellulose by Using a Biofilm Reactor and its Material Property Analysis.Journal of Biological Engineering,24 July 2009.

DOI: 10.13031/2013.27013

Google Scholar

[30] W.H Tang,S.H Jia,Y.Y Jia H.J. Yang. The Influence of Fermentation Conditions and Post-treatment Methods on Porosity of Bacterial Cellulose Membrane,World Journal of Microbiology and Biotechnology, 2010(26) ,125-131.

DOI: 10.1007/s11274-009-0151-y

Google Scholar

[31] Joong K P, Omer S, Taous K, et al. Production of Bacterial Cellulose by Gluconacetobacter Hasenii Using a New Bioreactor Equipped with Centrifugal Impeller. Korean Journal of Chemical Engineering, 2007, 24(2):265-271.

DOI: 10.1016/j.jbiotec.2008.07.1131

Google Scholar

[32] Y.C. Wang L.J.Li,Y.H.Ma,X.J. Wang M.H.Lu.Progress of Bacterial Cellulose Production and Application Research. China Brewing.2011(04),20-23. (In Chinese)

Google Scholar

[33] Kanya Kondo, Keisuke Ohto, Katsutoshi Inoue, Yoshinari Baba,Preparation of Phosphorylated Bacterial Cellulose as an Adsorbent for Metal Ions.Reactive and Functional Polymers,January 2008, Pages 376–383 .

DOI: 10.1016/j.reactfunctpolym.2007.07.046

Google Scholar

[34] J. Wang, Y.Z. Wan, H.L. Luo, C. Gao, Y. Huang.Immobilization of Gelatin on Bacterial Cellulose Nanofibers Surface Via Crosslinking Technique.Materials Science and Engineering: C, 14 December 2011.pageS:536-541.

DOI: 10.1016/j.msec.2011.12.006

Google Scholar