» Articles » PMID: 12452948

Statistical Medium Optimization and Production of a Hyperthermostable Lipase from Burkholderia Cepacia in a Bioreactor

Overview
Date 2002 Nov 28
PMID 12452948
Citations 7
Authors
Affiliations
Soon will be listed here.
Abstract

Aim: Statistical medium optimization for maximum production of a hyperthermostable lipase from Burkholderia cepacia and its validation in a bioreactor.

Methods And Results: Burkholderia cepacia was grown in shake flasks containing 1% glucose, 0.1% KH2PO4, 0.5% NH4Cl, 0.24% (NH4)2HPO4, 0.01% MgSO4.7H2O and 1% emulsified palm oil, at 45 degrees C and pH 7.0, agitated at 250 rev min(-1) with 6-h-old inoculum (2% v/v) for 20 h. A fourfold enhancement in lipase production (50 U ml(-1)) and an approximately three fold increase in specific activity (160 U mg(-1)) by B. cepacia was obtained in a 14 litre bioreactor within 15 h after statistical optimization following shake flask culture. The statistical model was obtained using face centred central composite design (FCCCD) with five variables: glucose, palm oil, incubation time, inoculum density and agitation. The model suggested no interactive effect of the five factors, although incubation period, inoculum and carbon concentration were the important variables.

Conclusions: The maximum lipase production was 50 U ml(-1), with specific activity 160 U mg(-1) protein, in a 14 litre bioreactor after 15 h in a medium obtained after statistical optimization in shake flasks. Further, the model predicted reduction in time for lipase production with reduction in total carbon supply.

Significance And Impact Of The Study: Statistical optimization allows quick optimization of a large number of variables. It also provides a deep insight into the regulatory role of various parameters involved in enzyme production.

Citing Articles

Production strategies and biotechnological relevance of microbial lipases: a review.

Adetunji A, Olaniran A Braz J Microbiol. 2021; 52(3):1257-1269.

PMID: 33904151 PMC: 8324693. DOI: 10.1007/s42770-021-00503-5.


Optimization of bio-cement production from cement kiln dust using microalgae.

Irfan M, Hossain S, Khalid H, Sadaf F, Al-Thawadi S, Alshater A Biotechnol Rep (Amst). 2019; 23:e00356.

PMID: 31312609 PMC: 6609786. DOI: 10.1016/j.btre.2019.e00356.


Statistical optimization of culture medium for improved production of antimicrobial compound by AG-P1441.

Ju Y, Son K, Jin C, Hwang B, Park D, Kim C Food Sci Biotechnol. 2018; 27(2):581-590.

PMID: 30263783 PMC: 6049630. DOI: 10.1007/s10068-017-0257-1.


Realm of Thermoalkaline Lipases in Bioprocess Commodities.

Lajis A J Lipids. 2018; 2018:5659683.

PMID: 29666707 PMC: 5832097. DOI: 10.1155/2018/5659683.


Extracellular Alkaline Lipase from a Novel Fungus
 sp. DHE 5: Optimisation of Physicochemical Parameters, Partial Purification and Characterisation.

El-Ghonemy D, El-Gamal M, Tantawy A, Ali T Food Technol Biotechnol. 2017; 55(2):206-217.

PMID: 28867950 PMC: 5569341. DOI: 10.17113/ftb.55.02.17.4958.