Statistical Optimisation of Fermentation Media for Novel Clostridium novyi -NT Using Response Surface Methodology.

ABSTRACT Clostridial collagenase is recognized as one of the important proteolytic enzymes used in treatment of varieties of fibro-proliferative disorders. The present work aimed to optimise the biomass concentration and collagenase enzyme activity of novel bacilli Clostridium novyi-NT. The response...

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Main Authors: Kannan Krishnamoorthy, Anil Vijay Landge
Format: Article
Language:English
Published: Instituto de Tecnologia do Paraná (Tecpar) 2018-11-01
Series:Brazilian Archives of Biology and Technology
Subjects:
Online Access:http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1516-89132018000100429&lng=en&tlng=en
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spelling doaj-81ea401c774e41d693d4bc6f74f54bbf2020-11-24T23:54:21ZengInstituto de Tecnologia do Paraná (Tecpar)Brazilian Archives of Biology and Technology1678-43242018-11-0161010.1590/1678-4324-2018180026S1516-89132018000100429Statistical Optimisation of Fermentation Media for Novel Clostridium novyi -NT Using Response Surface Methodology.Kannan KrishnamoorthyAnil Vijay LandgeABSTRACT Clostridial collagenase is recognized as one of the important proteolytic enzymes used in treatment of varieties of fibro-proliferative disorders. The present work aimed to optimise the biomass concentration and collagenase enzyme activity of novel bacilli Clostridium novyi-NT. The response surface methodology tool was used to identify the optimal fermentation parameters. Central composite design (CCD) was applied with respect to three influencing factors - pH, proteose peptone and trypticase soya broth. These factors showed significant effect on the overall biomass concentration and collagenase enzyme activity (p<0.05). The maximum biomass concentration in terms of absorbance and collagenase activity (of crude enzyme) was achieved and recorded as 0.8309±0.0012 and 298.88±1.36 units/mg respectively after 22 hours of fermentation period while optimisation of media factors with help of response surface quadratic model. This is the first study to report maximum biomass concentration and collagenase activity by Clostridium novyi-NT till date by combining statistical designs.http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1516-89132018000100429&lng=en&tlng=enCollagenaseClostridium novyi-NTFibro-proliferative disordersResponse Surface Methodology
collection DOAJ
language English
format Article
sources DOAJ
author Kannan Krishnamoorthy
Anil Vijay Landge
spellingShingle Kannan Krishnamoorthy
Anil Vijay Landge
Statistical Optimisation of Fermentation Media for Novel Clostridium novyi -NT Using Response Surface Methodology.
Brazilian Archives of Biology and Technology
Collagenase
Clostridium novyi-NT
Fibro-proliferative disorders
Response Surface Methodology
author_facet Kannan Krishnamoorthy
Anil Vijay Landge
author_sort Kannan Krishnamoorthy
title Statistical Optimisation of Fermentation Media for Novel Clostridium novyi -NT Using Response Surface Methodology.
title_short Statistical Optimisation of Fermentation Media for Novel Clostridium novyi -NT Using Response Surface Methodology.
title_full Statistical Optimisation of Fermentation Media for Novel Clostridium novyi -NT Using Response Surface Methodology.
title_fullStr Statistical Optimisation of Fermentation Media for Novel Clostridium novyi -NT Using Response Surface Methodology.
title_full_unstemmed Statistical Optimisation of Fermentation Media for Novel Clostridium novyi -NT Using Response Surface Methodology.
title_sort statistical optimisation of fermentation media for novel clostridium novyi -nt using response surface methodology.
publisher Instituto de Tecnologia do Paraná (Tecpar)
series Brazilian Archives of Biology and Technology
issn 1678-4324
publishDate 2018-11-01
description ABSTRACT Clostridial collagenase is recognized as one of the important proteolytic enzymes used in treatment of varieties of fibro-proliferative disorders. The present work aimed to optimise the biomass concentration and collagenase enzyme activity of novel bacilli Clostridium novyi-NT. The response surface methodology tool was used to identify the optimal fermentation parameters. Central composite design (CCD) was applied with respect to three influencing factors - pH, proteose peptone and trypticase soya broth. These factors showed significant effect on the overall biomass concentration and collagenase enzyme activity (p<0.05). The maximum biomass concentration in terms of absorbance and collagenase activity (of crude enzyme) was achieved and recorded as 0.8309±0.0012 and 298.88±1.36 units/mg respectively after 22 hours of fermentation period while optimisation of media factors with help of response surface quadratic model. This is the first study to report maximum biomass concentration and collagenase activity by Clostridium novyi-NT till date by combining statistical designs.
topic Collagenase
Clostridium novyi-NT
Fibro-proliferative disorders
Response Surface Methodology
url http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1516-89132018000100429&lng=en&tlng=en
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