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Optimisation of immobilisation conditions for chick pea β-galactosidase (CpGAL) to alkylamine glass using response surface methodology and its applications in lactose hydrolysis
Authors:Devesh Kishore  Arvind M Kayastha
Affiliation:School of Biotechnology, Faculty of Science, Banaras Hindu University, Varanasi 221005, India
Abstract:Response surface methodology was advantageously used to optimally immobilise a β-galactosidase from chick pea onto alkylamine glass using Box–Behnken experimental design, resulting in an overall 91% immobilisation efficiency. Analysis of variance was performed to determine the adequacy and significance of the quadratic model. Immobilised enzyme showed a shift in the optimum pH; however, optimum temperature remained unaffected. Thermal denaturation kinetics demonstrated significant improvement in thermal stability of the enzyme after immobilisation. Galactose competitively inhibits the enzyme in both soluble and immobilised conditions. Lactose in milk whey was hydrolysed at comparatively higher rate than that of milk. Immobilised enzyme showed excellent reusability with retention of more than 82% enzymatic activity after 15 uses. The immobilised enzyme was found to be fairly stable in both dry and wet conditions for three months with retention of more than 80% residual activity.
Keywords:CpGAL  chick pea β-galactosidase  ONPG  o-nitrophenyl-β-d galactopyranoside  RSM  response surface methodology  ANOVA  analysis of variance  GRAS  generally regarded as safe  NIDDK  The National Institute of Diabetes and Digestive and Kidney diseases  NIH  National Institute of Health  FDA  The Food and Drug Administration
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