Artificial neural network-genetic algorithm based optimization for the immobilization of cellulase on the smart polymer Eudragit L-100

被引:77
作者
Zhang, Yu [1 ,2 ]
Xu, Jingliang [1 ]
Yuan, Zhenhong [1 ]
Xu, Huijuan [1 ]
Yu, Qiang [1 ,2 ]
机构
[1] Chinese Acad Sci, Guangzhou Inst Energy Convers, Key Lab Renewable Energy & Gas Hydrate, Guangzhou 510640, Guangdong, Peoples R China
[2] Chinese Acad Sci, Grad Univ, Beijing 100049, Peoples R China
基金
国家高技术研究发展计划(863计划);
关键词
Immobilized cellulase; Artificial neural network; Smart biocatalysis; Response surface methodology; Generic algorithm; XYLAN-DEGRADING ENZYMES; REPEATED HYDROLYSIS; MEDIA OPTIMIZATION; INTELLIGENCE; KINETICS; MODEL; ACID;
D O I
10.1016/j.biortech.2009.12.080
中图分类号
S2 [农业工程];
学科分类号
082806 [农业信息与电气工程];
摘要
Cellulase was covalently immobilized on a smart polymer, Eudragit L-100 by carbodiimide coupling. Using data of central composite design, response surface methodology (RSM) and artificial neural network (ANN) were developed to investigate the effect of pH, carbodiimide concentration, and coupling time on the activity yield of immobilized cellulase. Results showed simulation and prediction accuracy of ANN was apparently higher compared to RSM. The Maximum activity yield obtained from RSM was 57.56% at pH 5.54, carbodiimide concentration 0.32%, and coupling time 3.03 h, where the experimental value was 60.87 +/- 4.79%. Using ANN as fitness function, a maximum activity yield of 69.83% was searched by genetic algorithm at pH 5.07, carbodiimide concentration 0.36%, and Coupling time 4.10 h, where the experimental value was 66.75 +/- 5.21%. ANN gave a 9.7% increase of activity yield over RSM. After reusing immobilized cellulase for 5 cycles, the remaining productivity was over 50%. (C) 2009 Elsevier Ltd. All rights reserved.
引用
收藏
页码:3153 / 3158
页数:6
相关论文
共 34 条
[1]
Predictive non-linear modeling of complex data by artificial neural networks [J].
Almeida, JS .
CURRENT OPINION IN BIOTECHNOLOGY, 2002, 13 (01) :72-76
[2]
Cellulases and related enzymes in biotechnology [J].
Bhat, MK .
BIOTECHNOLOGY ADVANCES, 2000, 18 (05) :355-383
[3]
A MODEL STUDY ON EUDRAGIT AND POLYETHYLENEIMINE AS SOLUBLE CARRIERS OF ALPHA-AMYLASE FOR REPEATED HYDROLYSIS OF STARCH [J].
CONG, L ;
KAUL, R ;
DISSING, U ;
MATTIASSON, B .
JOURNAL OF BIOTECHNOLOGY, 1995, 42 (01) :75-84
[4]
Comparison of artificial neural network (ANN) and response surface methodology (RSM) in fermentation media optimization: Case study of fermentative production of scleroglucan [J].
Desai, Kiran M. ;
Survase, Shrikant A. ;
Saudagar, Parag S. ;
Lele, S. S. ;
Singhal, Rekha S. .
BIOCHEMICAL ENGINEERING JOURNAL, 2008, 41 (03) :266-273
[5]
Studies on the properties of Celluclast/Eudragit L-100 conjugate [J].
Dourado, F ;
Bastos, M ;
Mota, M ;
Gama, FM .
JOURNAL OF BIOTECHNOLOGY, 2002, 99 (02) :121-131
[6]
Preparation of cross-linked cellulases and their application for the enzymatic production of glucose from municipal paper wastes [J].
Filos, G ;
Tziala, T ;
Lagios, G ;
Vynios, DH .
PREPARATIVE BIOCHEMISTRY & BIOTECHNOLOGY, 2006, 36 (02) :111-125
[7]
Galaev I.Y., 2002, SMART POLYM BIOSEPAR
[8]
Immobilization of xylan-degrading enzymes from Scytalidium thermophilum on Eudragit L-100 [J].
Gaur, R ;
Lata ;
Khare, SK .
WORLD JOURNAL OF MICROBIOLOGY & BIOTECHNOLOGY, 2005, 21 (6-7) :1123-1128
[9]
MEASUREMENT OF CELLULASE ACTIVITIES [J].
GHOSE, TK .
PURE AND APPLIED CHEMISTRY, 1987, 59 (02) :257-268
[10]
Medium factor optimization and fermentation kinetics for phenazine-1-carboxylic acid production by Pseudomonas sp M18G [J].
He, Li ;
Xu, Yu-Quan ;
Zhang, Xue-Hong .
BIOTECHNOLOGY AND BIOENGINEERING, 2008, 100 (02) :250-259