Sorbitol galactoside synthesis using β- galactosidase immobilized on functionalized silica nanoparticles
Authors
Carević, Milica
Banjanac, Katarina
Ćorović, Marija

Milivojević, Ana
Prlainović, Nevena
Marinković, Aleksandar

Bezbradica, Dejan

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Nowadays, considering the growing awareness of functional food beneficial effects on human health, due attention is dedicated to the research in the field of obtaining new prominent products exhibiting improved physiological and physicochemical characteristics. Therefore, different approaches to valuable bioactive compounds synthesis have been proposed. β-Galactosidase, for example, although mainly utilized as hydrolytic enzyme, proved to be a promising tool for these
purposes. Namely, under the particular conditions, such as high lactose concentration, elevated temperatures and low water activities, reaction of galactose moiety transfer to free hydroxyl group of the alternative acceptor (e.g. different sugars, alcohols or aromatic compounds) can generate a wide range of potentially interesting products. Up to now, galactooligosaccharides and lactulose have attracted the most attention due to their inherent prebiotic properties. The goal of this
study was to obtain a novel product so...rbitol galactoside, using the similar reaction mechanism, namely transgalactosylation reaction catalyzed by β-galactosidase from Aspergillus oryzae. By using sugar alcohol (sorbitol) as alternative acceptor, a diverse mixture of potential prebiotics is produced, enabling its more favorable functional features. Nevertheless, an
introduction of alternative acceptor into the reaction mixture contributed to the complexity of reaction scheme, since several potential reaction pathways were introduced. Therefore, the thorough optimization using response surface method (RSM), in order to get an insight into different parameter (lactose concentration, sorbitol to lactose molar ratio, enzyme concentration, NaCl concentration and reaction time) influences, as well as their mutual interactions on product yield and productivity, was performed. In view of product yield maximization, the obtained model predicted optimal lactose concentration 500 mM, the molar ratio of sobitol to lactose 9, enzyme concentration 0.76 mg/ml, concentration of NaCl 0.8M, and the reaction time 7h. From the aspect of productivity, the optimum substrate molar ratio was found to be 1, while the values for other factors coincide. In order to additionally, improve enzyme efficiency and enable its reuse and potential continual application, immobilization of β-galactosidase onto tailored silica nanoparticles was performed. These non-porous fumed silica nanoparticles (FNS)were chosen on the basis of their biocompatibility and non-toxicity, as well as their advantageous mechanical and hydrodinamical properties. However, in order to achieve better compatibility between enzymes and the carrier, modifications of the silica surface using amino functional organosilane (3-aminopropyltrimethoxysilane, APTMS) were made. Obtained support with amino functional groups (AFNS) enabled high enzyme loadings and, more importantly, extremely high expressed activities, approximately 230 mg proteins/g and 2100 IU/g, respectively. Moreover, this immobilized preparation showed high affinity towards sorbitol galactoside synthesis. Therefore, the findings of this study could provided a valuable contribution to the efficient production of physiologically active galactosides in immobilized enzyme reactors.
Keywords:
β-galactosidase / immobilization / silica nanoparticles / transgalactosylationSource:
XIX International Conference on Biotechnology, Bioengineering and Nanoengineering, Lisbon, Portugal, Book of abstract, 2017, 11, 774-Publisher:
- World Academy of Science, Engineering and Technology International Journal of Biotechnology and Bioengineering
Institution/Community
Tehnološko-metalurški fakultetTY - CONF AU - Carević, Milica AU - Banjanac, Katarina AU - Ćorović, Marija AU - Milivojević, Ana AU - Prlainović, Nevena AU - Marinković, Aleksandar AU - Bezbradica, Dejan PY - 2017 UR - http://TechnoRep.tmf.bg.ac.rs/handle/123456789/6044 AB - Nowadays, considering the growing awareness of functional food beneficial effects on human health, due attention is dedicated to the research in the field of obtaining new prominent products exhibiting improved physiological and physicochemical characteristics. Therefore, different approaches to valuable bioactive compounds synthesis have been proposed. β-Galactosidase, for example, although mainly utilized as hydrolytic enzyme, proved to be a promising tool for these purposes. Namely, under the particular conditions, such as high lactose concentration, elevated temperatures and low water activities, reaction of galactose moiety transfer to free hydroxyl group of the alternative acceptor (e.g. different sugars, alcohols or aromatic compounds) can generate a wide range of potentially interesting products. Up to now, galactooligosaccharides and lactulose have attracted the most attention due to their inherent prebiotic properties. The goal of this study was to obtain a novel product sorbitol galactoside, using the similar reaction mechanism, namely transgalactosylation reaction catalyzed by β-galactosidase from Aspergillus oryzae. By using sugar alcohol (sorbitol) as alternative acceptor, a diverse mixture of potential prebiotics is produced, enabling its more favorable functional features. Nevertheless, an introduction of alternative acceptor into the reaction mixture contributed to the complexity of reaction scheme, since several potential reaction pathways were introduced. Therefore, the thorough optimization using response surface method (RSM), in order to get an insight into different parameter (lactose concentration, sorbitol to lactose molar ratio, enzyme concentration, NaCl concentration and reaction time) influences, as well as their mutual interactions on product yield and productivity, was performed. In view of product yield maximization, the obtained model predicted optimal lactose concentration 500 mM, the molar ratio of sobitol to lactose 9, enzyme concentration 0.76 mg/ml, concentration of NaCl 0.8M, and the reaction time 7h. From the aspect of productivity, the optimum substrate molar ratio was found to be 1, while the values for other factors coincide. In order to additionally, improve enzyme efficiency and enable its reuse and potential continual application, immobilization of β-galactosidase onto tailored silica nanoparticles was performed. These non-porous fumed silica nanoparticles (FNS)were chosen on the basis of their biocompatibility and non-toxicity, as well as their advantageous mechanical and hydrodinamical properties. However, in order to achieve better compatibility between enzymes and the carrier, modifications of the silica surface using amino functional organosilane (3-aminopropyltrimethoxysilane, APTMS) were made. Obtained support with amino functional groups (AFNS) enabled high enzyme loadings and, more importantly, extremely high expressed activities, approximately 230 mg proteins/g and 2100 IU/g, respectively. Moreover, this immobilized preparation showed high affinity towards sorbitol galactoside synthesis. Therefore, the findings of this study could provided a valuable contribution to the efficient production of physiologically active galactosides in immobilized enzyme reactors. PB - World Academy of Science, Engineering and Technology International Journal of Biotechnology and Bioengineering C3 - XIX International Conference on Biotechnology, Bioengineering and Nanoengineering, Lisbon, Portugal, Book of abstract T1 - Sorbitol galactoside synthesis using β- galactosidase immobilized on functionalized silica nanoparticles SP - 774 VL - 11 VL - 4 UR - https://hdl.handle.net/21.15107/rcub_technorep_6044 ER -
@conference{ author = "Carević, Milica and Banjanac, Katarina and Ćorović, Marija and Milivojević, Ana and Prlainović, Nevena and Marinković, Aleksandar and Bezbradica, Dejan", year = "2017", abstract = "Nowadays, considering the growing awareness of functional food beneficial effects on human health, due attention is dedicated to the research in the field of obtaining new prominent products exhibiting improved physiological and physicochemical characteristics. Therefore, different approaches to valuable bioactive compounds synthesis have been proposed. β-Galactosidase, for example, although mainly utilized as hydrolytic enzyme, proved to be a promising tool for these purposes. Namely, under the particular conditions, such as high lactose concentration, elevated temperatures and low water activities, reaction of galactose moiety transfer to free hydroxyl group of the alternative acceptor (e.g. different sugars, alcohols or aromatic compounds) can generate a wide range of potentially interesting products. Up to now, galactooligosaccharides and lactulose have attracted the most attention due to their inherent prebiotic properties. The goal of this study was to obtain a novel product sorbitol galactoside, using the similar reaction mechanism, namely transgalactosylation reaction catalyzed by β-galactosidase from Aspergillus oryzae. By using sugar alcohol (sorbitol) as alternative acceptor, a diverse mixture of potential prebiotics is produced, enabling its more favorable functional features. Nevertheless, an introduction of alternative acceptor into the reaction mixture contributed to the complexity of reaction scheme, since several potential reaction pathways were introduced. Therefore, the thorough optimization using response surface method (RSM), in order to get an insight into different parameter (lactose concentration, sorbitol to lactose molar ratio, enzyme concentration, NaCl concentration and reaction time) influences, as well as their mutual interactions on product yield and productivity, was performed. In view of product yield maximization, the obtained model predicted optimal lactose concentration 500 mM, the molar ratio of sobitol to lactose 9, enzyme concentration 0.76 mg/ml, concentration of NaCl 0.8M, and the reaction time 7h. From the aspect of productivity, the optimum substrate molar ratio was found to be 1, while the values for other factors coincide. In order to additionally, improve enzyme efficiency and enable its reuse and potential continual application, immobilization of β-galactosidase onto tailored silica nanoparticles was performed. These non-porous fumed silica nanoparticles (FNS)were chosen on the basis of their biocompatibility and non-toxicity, as well as their advantageous mechanical and hydrodinamical properties. However, in order to achieve better compatibility between enzymes and the carrier, modifications of the silica surface using amino functional organosilane (3-aminopropyltrimethoxysilane, APTMS) were made. Obtained support with amino functional groups (AFNS) enabled high enzyme loadings and, more importantly, extremely high expressed activities, approximately 230 mg proteins/g and 2100 IU/g, respectively. Moreover, this immobilized preparation showed high affinity towards sorbitol galactoside synthesis. Therefore, the findings of this study could provided a valuable contribution to the efficient production of physiologically active galactosides in immobilized enzyme reactors.", publisher = "World Academy of Science, Engineering and Technology International Journal of Biotechnology and Bioengineering", journal = "XIX International Conference on Biotechnology, Bioengineering and Nanoengineering, Lisbon, Portugal, Book of abstract", title = "Sorbitol galactoside synthesis using β- galactosidase immobilized on functionalized silica nanoparticles", pages = "774", volume = "11, 4", url = "https://hdl.handle.net/21.15107/rcub_technorep_6044" }
Carević, M., Banjanac, K., Ćorović, M., Milivojević, A., Prlainović, N., Marinković, A.,& Bezbradica, D.. (2017). Sorbitol galactoside synthesis using β- galactosidase immobilized on functionalized silica nanoparticles. in XIX International Conference on Biotechnology, Bioengineering and Nanoengineering, Lisbon, Portugal, Book of abstract World Academy of Science, Engineering and Technology International Journal of Biotechnology and Bioengineering., 11, 774. https://hdl.handle.net/21.15107/rcub_technorep_6044
Carević M, Banjanac K, Ćorović M, Milivojević A, Prlainović N, Marinković A, Bezbradica D. Sorbitol galactoside synthesis using β- galactosidase immobilized on functionalized silica nanoparticles. in XIX International Conference on Biotechnology, Bioengineering and Nanoengineering, Lisbon, Portugal, Book of abstract. 2017;11:774. https://hdl.handle.net/21.15107/rcub_technorep_6044 .
Carević, Milica, Banjanac, Katarina, Ćorović, Marija, Milivojević, Ana, Prlainović, Nevena, Marinković, Aleksandar, Bezbradica, Dejan, "Sorbitol galactoside synthesis using β- galactosidase immobilized on functionalized silica nanoparticles" in XIX International Conference on Biotechnology, Bioengineering and Nanoengineering, Lisbon, Portugal, Book of abstract, 11 (2017):774, https://hdl.handle.net/21.15107/rcub_technorep_6044 .