Volume 39, Issue 6 pp. 1130-1136
Research Article

Clusters of Phospholipid Vesicles as Platforms for Glucose Oxidase-Catalyzed Reaction in a Bubble-Column Bioreactor

Makoto Yoshimoto

Corresponding Author

Makoto Yoshimoto

Department of Applied Molecular Bioscience, Yamaguchi University, Ube, Japan.

Department of Applied Molecular Bioscience, Yamaguchi University, Ube, Japan.Search for more papers by this author
Yuki Sakakida

Yuki Sakakida

Department of Applied Molecular Bioscience, Yamaguchi University, Ube, Japan.

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Ryota Tamura

Ryota Tamura

Department of Applied Molecular Bioscience, Yamaguchi University, Ube, Japan.

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Tomotaka Natsume

Tomotaka Natsume

Department of Applied Molecular Bioscience, Yamaguchi University, Ube, Japan.

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Tomoaki Ikeda

Tomoaki Ikeda

Department of Applied Molecular Bioscience, Yamaguchi University, Ube, Japan.

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First published: 17 March 2016
Citations: 4

Abstract

Clusters of negatively charged liposomes encapsulated with glucose oxidase were prepared in the presence of Ca2+ and used to catalyze the oxidation of glucose in an external loop airlift bubble column. The clusters exhibited higher catalytic activity compared to nonclustered glucose oxidase-containing liposomes (GOLs) when the liposome membranes were incorporated with cholesterol. The clusters were structurally altered in shear flow to give sufficient interfacial area accessible to glucose. The reactivity of GOL clusters could be modulated on the basis of lipid composition of the membranes which affected the mode of interaction among liposomes through Ca2+. Part of GOL clusters could be separated from the reaction mixture by centrifugation, which would be advantageous for reusing liposomal catalysts. The liposome clusters can be the platforms to regulate the catalytic performance of glucose oxidase in the airlift.

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