Kinetic parameter studies of 6-amino penicillanic acid (6-APA) production by agarose immobilized penicillin acylase in a packed column reactor

Penicillin acylase, an industrially important biocatalyst catalyzes the conversion of penicillins to 6-amino penicillanic acid (6-APA) which is the main precursor for the production of semisynthetic ß-lactam antibiotics. The present work involves the continuous production of 6- APA in a packed colu...

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Main Authors: Banerjee, Sujoy, Debnath, Mira
Format: Conference or Workshop Item
Language:English
Published: 2006
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Online Access:http://eprints.utm.my/id/eprint/242/1/SujoyBanerjee2006_Kineticparameterstudiesof6-amino.pdf
http://eprints.utm.my/id/eprint/242/
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Institution: Universiti Teknologi Malaysia
Language: English
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spelling my.utm.2422015-08-12T03:37:26Z http://eprints.utm.my/id/eprint/242/ Kinetic parameter studies of 6-amino penicillanic acid (6-APA) production by agarose immobilized penicillin acylase in a packed column reactor Banerjee, Sujoy Debnath, Mira TP Chemical technology Penicillin acylase, an industrially important biocatalyst catalyzes the conversion of penicillins to 6-amino penicillanic acid (6-APA) which is the main precursor for the production of semisynthetic ß-lactam antibiotics. The present work involves the continuous production of 6- APA in a packed column reactor by using agarose immobilized penicillin acylase as a block polymer. The strain Escherichia coli ATCC 11105 was used as enzyme source and penicillin G as substrate. Agarose is a natural polymer (carbohydrate) which is cheap, safe and easily available that makes it very suitable for enzyme immobilization. The acidic nature of 6-APA has an inhibitory effect on the enzyme and so the continuous system of production is a better choice. To overcome this problem penicillin acylase was physically entrapped on agarose gel. Kinetic parameters Vmax and Km values were calculated for both native and immobilized enzyme. The native enzyme showed Vmax=3.3µmol/min and Km value=18.18mM. The immobilized enzyme was packed in the column reactor to study the kinetic parameters by varying flow rate and different substrate concentration (according to the model of Lily et al 1966). For the immobilized enzyme the Km value=22.22mM. Cmax value was calculated using secondary plot of 1/C versus 1/Q to find the maximum capacity of the bioreactor. This study is very useful and applicable to the industry for the conversion of Penicillin G to 6- APA. 2006-07 Conference or Workshop Item PeerReviewed application/pdf en http://eprints.utm.my/id/eprint/242/1/SujoyBanerjee2006_Kineticparameterstudiesof6-amino.pdf Banerjee, Sujoy and Debnath, Mira (2006) Kinetic parameter studies of 6-amino penicillanic acid (6-APA) production by agarose immobilized penicillin acylase in a packed column reactor. In: 1st International Conference on Natural Resources Engineering & Technology 2006, 24-25th July 2006, Putrajaya, Malaysia.
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
language English
topic TP Chemical technology
spellingShingle TP Chemical technology
Banerjee, Sujoy
Debnath, Mira
Kinetic parameter studies of 6-amino penicillanic acid (6-APA) production by agarose immobilized penicillin acylase in a packed column reactor
description Penicillin acylase, an industrially important biocatalyst catalyzes the conversion of penicillins to 6-amino penicillanic acid (6-APA) which is the main precursor for the production of semisynthetic ß-lactam antibiotics. The present work involves the continuous production of 6- APA in a packed column reactor by using agarose immobilized penicillin acylase as a block polymer. The strain Escherichia coli ATCC 11105 was used as enzyme source and penicillin G as substrate. Agarose is a natural polymer (carbohydrate) which is cheap, safe and easily available that makes it very suitable for enzyme immobilization. The acidic nature of 6-APA has an inhibitory effect on the enzyme and so the continuous system of production is a better choice. To overcome this problem penicillin acylase was physically entrapped on agarose gel. Kinetic parameters Vmax and Km values were calculated for both native and immobilized enzyme. The native enzyme showed Vmax=3.3µmol/min and Km value=18.18mM. The immobilized enzyme was packed in the column reactor to study the kinetic parameters by varying flow rate and different substrate concentration (according to the model of Lily et al 1966). For the immobilized enzyme the Km value=22.22mM. Cmax value was calculated using secondary plot of 1/C versus 1/Q to find the maximum capacity of the bioreactor. This study is very useful and applicable to the industry for the conversion of Penicillin G to 6- APA.
format Conference or Workshop Item
author Banerjee, Sujoy
Debnath, Mira
author_facet Banerjee, Sujoy
Debnath, Mira
author_sort Banerjee, Sujoy
title Kinetic parameter studies of 6-amino penicillanic acid (6-APA) production by agarose immobilized penicillin acylase in a packed column reactor
title_short Kinetic parameter studies of 6-amino penicillanic acid (6-APA) production by agarose immobilized penicillin acylase in a packed column reactor
title_full Kinetic parameter studies of 6-amino penicillanic acid (6-APA) production by agarose immobilized penicillin acylase in a packed column reactor
title_fullStr Kinetic parameter studies of 6-amino penicillanic acid (6-APA) production by agarose immobilized penicillin acylase in a packed column reactor
title_full_unstemmed Kinetic parameter studies of 6-amino penicillanic acid (6-APA) production by agarose immobilized penicillin acylase in a packed column reactor
title_sort kinetic parameter studies of 6-amino penicillanic acid (6-apa) production by agarose immobilized penicillin acylase in a packed column reactor
publishDate 2006
url http://eprints.utm.my/id/eprint/242/1/SujoyBanerjee2006_Kineticparameterstudiesof6-amino.pdf
http://eprints.utm.my/id/eprint/242/
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