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Immobilization of Candida antarctica lipase B onto Purolite(A (R)) MN102 and its application in solvent-free and organic media esterification

Authorized Users Only
2017
Authors
Ćorović, Marija
Mihailović, Mladen
Banjanac, Katarina
Carević, Milica
Milivojević, Ana
Milosavić, Nenad
Bezbradica, Dejan
Article (Published version)
Metadata
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Abstract
The aim of this study was to develop simple and efficient method for immobilization of Candida antarctica lipase B onto hydrophobic anion exchange resin Purolite(A (R)) MN102 and to apply immobilized catalyst for the enzymatic synthesis of two valuable esters-isoamyl acetate and l-ascorbyl oleate. At optimized conditions (1 M phosphate buffer pH = 7, 7 h at 25 A degrees C, and 18.75 mg of offered proteins g(-1) of support), immobilized lipase with hydrolytic activity of 888.4 p-nitrophenyl butyrate units g(-1) was obtained. Afterwards, preparation was applied for the solvent-free synthesis of isoamyl acetate from triacetin and isoamyl alcohol. At 75 A degrees C, 1 M of isoamyl alcohol, and 6 mg ml(-1) of enzyme 100 % yield was achieved in 6 h, while at prolonged reaction times, complete conversion was enabled even at lower temperatures, lower lipase loadings, and higher substrate concentrations. After 15 consecutive reuses (60 h), activity of catalyst dropped to 50 % of its initial val...ue and total amount of 1.31 mol (170.55 g) of ester with 1 g of biocatalyst was produced. Even higher operational stability of lipase (25 % loss of activity in 200 h) was observed in the synthesis of l-ascorbyl oleate performed in organic solvent (t-butanol). Multiple use of one batch of immobilized biocatalyst in both cases led to a significant process cost reduction and substantial increment of corresponding productivities.

Keywords:
Candida antarctica lipase B / Immobilization / Esterification / Isoamyl acetate / L-Ascorbyl oleate
Source:
Bioprocess and Biosystems Engineering, 2017, 40, 1, 23-34
Publisher:
  • Springer, New York
Funding / projects:
  • Novel encapsulation and enzyme technologies for designing of new biocatalysts and biologically active compounds targeting enhancement of food quality, safety and competitiveness (RS-46010)

DOI: 10.1007/s00449-016-1671-0

ISSN: 1615-7591

PubMed: 27534413

WoS: 000391382800003

Scopus: 2-s2.0-84982279844
[ Google Scholar ]
16
11
URI
http://TechnoRep.tmf.bg.ac.rs/handle/123456789/3655
Collections
  • Radovi istraživača / Researchers’ publications (TMF)
  • Radovi istraživača (Inovacioni centar) / Researchers’ publications (Innovation Centre)
Institution/Community
Tehnološko-metalurški fakultet
TY  - JOUR
AU  - Ćorović, Marija
AU  - Mihailović, Mladen
AU  - Banjanac, Katarina
AU  - Carević, Milica
AU  - Milivojević, Ana
AU  - Milosavić, Nenad
AU  - Bezbradica, Dejan
PY  - 2017
UR  - http://TechnoRep.tmf.bg.ac.rs/handle/123456789/3655
AB  - The aim of this study was to develop simple and efficient method for immobilization of Candida antarctica lipase B onto hydrophobic anion exchange resin Purolite(A (R)) MN102 and to apply immobilized catalyst for the enzymatic synthesis of two valuable esters-isoamyl acetate and l-ascorbyl oleate. At optimized conditions (1 M phosphate buffer pH = 7, 7 h at 25 A degrees C, and 18.75 mg of offered proteins g(-1) of support), immobilized lipase with hydrolytic activity of 888.4 p-nitrophenyl butyrate units g(-1) was obtained. Afterwards, preparation was applied for the solvent-free synthesis of isoamyl acetate from triacetin and isoamyl alcohol. At 75 A degrees C, 1 M of isoamyl alcohol, and 6 mg ml(-1) of enzyme 100 % yield was achieved in 6 h, while at prolonged reaction times, complete conversion was enabled even at lower temperatures, lower lipase loadings, and higher substrate concentrations. After 15 consecutive reuses (60 h), activity of catalyst dropped to 50 % of its initial value and total amount of 1.31 mol (170.55 g) of ester with 1 g of biocatalyst was produced. Even higher operational stability of lipase (25 % loss of activity in 200 h) was observed in the synthesis of l-ascorbyl oleate performed in organic solvent (t-butanol). Multiple use of one batch of immobilized biocatalyst in both cases led to a significant process cost reduction and substantial increment of corresponding productivities.
PB  - Springer, New York
T2  - Bioprocess and Biosystems Engineering
T1  - Immobilization of Candida antarctica lipase B onto Purolite(A (R)) MN102 and its application in solvent-free and organic media esterification
EP  - 34
IS  - 1
SP  - 23
VL  - 40
DO  - 10.1007/s00449-016-1671-0
ER  - 
@article{
author = "Ćorović, Marija and Mihailović, Mladen and Banjanac, Katarina and Carević, Milica and Milivojević, Ana and Milosavić, Nenad and Bezbradica, Dejan",
year = "2017",
abstract = "The aim of this study was to develop simple and efficient method for immobilization of Candida antarctica lipase B onto hydrophobic anion exchange resin Purolite(A (R)) MN102 and to apply immobilized catalyst for the enzymatic synthesis of two valuable esters-isoamyl acetate and l-ascorbyl oleate. At optimized conditions (1 M phosphate buffer pH = 7, 7 h at 25 A degrees C, and 18.75 mg of offered proteins g(-1) of support), immobilized lipase with hydrolytic activity of 888.4 p-nitrophenyl butyrate units g(-1) was obtained. Afterwards, preparation was applied for the solvent-free synthesis of isoamyl acetate from triacetin and isoamyl alcohol. At 75 A degrees C, 1 M of isoamyl alcohol, and 6 mg ml(-1) of enzyme 100 % yield was achieved in 6 h, while at prolonged reaction times, complete conversion was enabled even at lower temperatures, lower lipase loadings, and higher substrate concentrations. After 15 consecutive reuses (60 h), activity of catalyst dropped to 50 % of its initial value and total amount of 1.31 mol (170.55 g) of ester with 1 g of biocatalyst was produced. Even higher operational stability of lipase (25 % loss of activity in 200 h) was observed in the synthesis of l-ascorbyl oleate performed in organic solvent (t-butanol). Multiple use of one batch of immobilized biocatalyst in both cases led to a significant process cost reduction and substantial increment of corresponding productivities.",
publisher = "Springer, New York",
journal = "Bioprocess and Biosystems Engineering",
title = "Immobilization of Candida antarctica lipase B onto Purolite(A (R)) MN102 and its application in solvent-free and organic media esterification",
pages = "34-23",
number = "1",
volume = "40",
doi = "10.1007/s00449-016-1671-0"
}
Ćorović, M., Mihailović, M., Banjanac, K., Carević, M., Milivojević, A., Milosavić, N.,& Bezbradica, D.. (2017). Immobilization of Candida antarctica lipase B onto Purolite(A (R)) MN102 and its application in solvent-free and organic media esterification. in Bioprocess and Biosystems Engineering
Springer, New York., 40(1), 23-34.
https://doi.org/10.1007/s00449-016-1671-0
Ćorović M, Mihailović M, Banjanac K, Carević M, Milivojević A, Milosavić N, Bezbradica D. Immobilization of Candida antarctica lipase B onto Purolite(A (R)) MN102 and its application in solvent-free and organic media esterification. in Bioprocess and Biosystems Engineering. 2017;40(1):23-34.
doi:10.1007/s00449-016-1671-0 .
Ćorović, Marija, Mihailović, Mladen, Banjanac, Katarina, Carević, Milica, Milivojević, Ana, Milosavić, Nenad, Bezbradica, Dejan, "Immobilization of Candida antarctica lipase B onto Purolite(A (R)) MN102 and its application in solvent-free and organic media esterification" in Bioprocess and Biosystems Engineering, 40, no. 1 (2017):23-34,
https://doi.org/10.1007/s00449-016-1671-0 . .

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