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Title: | Optimization of complex fermentation media for glucose oxidase production using statistical approach |
Authors: | Ahmad Anas, Nagoor Gunny Dachyar, Arbain, Prof. Madya Dr. Sithamparam, Logachanthirika ahmadanas@unimap.edu.my dachyar@unimap.edu.my |
Keywords: | Asperfillus terreus Enzyme Ftir Fungus Glucose oxidase Molasses Optimisation RS Urea |
Issue Date: | 2013 |
Publisher: | Asian Network for Scientific Information (ANSINET) |
Citation: | Pakistan Journal of Biological Sciences, vol. 16(18), 2013, pages 960-964 |
Abstract: | Production cost of enzyme is largely determined by the type of the strain and raw material used to propagate the strain. Hence, selection of the strain and raw materials is crucial in enzyme production. For Glucose oxidase (GOx), previous studies showed Aspergillus terreus UniMAP AA-1 offers a better alternative to the existing sources. Thus, a lower production cost could be logically anticipated by growing the strain in a cheaper complex media such as molasses. In this work, sugar cane molasses, supplemented with urea and carbonate salt and a locally isolated strain Aspergillus terreus UniMAP AA-1 were used to produce a crude GOx enzyme in a small scale. A statistical optimization approach namely Response Surface Methodology (RSM) was used to optimize the media components for highest GOx activity. It was found that the highest GOx activity was achieved using a combination of molasses, carbonate salt and urea at concentration 32.51, 4.58 and 0.93% (w/v), respectively. This study provides an alternative optimized media conditions for GOx production using locally available raw materials. |
Description: | Link to publisher's homepage at http://www.ansinet.com/ |
URI: | http://www.scialert.net/abstract/?doi=pjbs.2013.960.964 http://dspace.unimap.edu.my:80/dspace/handle/123456789/33103 |
ISSN: | 1028-8880 |
Appears in Collections: | School of Bioprocess Engineering (Articles) |
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Optimization of complex fermentation media for glucose oxidase production using statistical approach..pdf | 254.42 kB | Adobe PDF | View/Open |
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