1992Journal of Bioactive and Compatible PolymersRequires access

Effect of the Chemical Modification of Dextran on the Degradation by Rat Liver Lysosomal Enzymes

R. Vercauteren, E. Schacht, Ruth Duncan

Open publisher page 28 citations

Abstract

The biodegradation of dextran, reduced dextran dialdehyde and dextran monosuccinate ester was investigated using isolated rat liver lysosomes. It was demonstrated that chemical modification of the parent dex tran resulted in a reduced degradability. The action of the exo-enzyme α-glucos idase (α-D-glucoside glucohydrolase) was nearly the same for parent dextran as for the derivatives. In order to explain the degradation data, the presence of the endo-acting enzyme dextranase (1,6-α-D-glucan 6-glucanohydrolase) in the lysosomes was taken into account.

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What this paper is about

The biodegradation of dextran, reduced dextran dialdehyde and dextran monosuccinate ester was investigated using isolated rat liver lysosomes. It was demonstrated that chemical modification of the parent dex tran resulted in a reduced degradability. The action of the exo-enzyme α-glucos idase (α-D-glucoside glucohydrolase) was nearly the same for parent dextran as for the derivatives. In order to explain the degradation data, the presence of the endo-acting enzyme dextranase (1,6-α-D-glucan 6-glucanohydrolase) in the lysosomes was taken into account.

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OpenAlex reports 28 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

The biodegradation of dextran, reduced dextran dialdehyde and dextran monosuccinate ester was investigated using isolated rat liver lysosomes. It was demonstrated that chemical modification of the parent dex tran resulted in a reduced degradability. The action of the exo-enzyme α-glucos idase (α-D-glucoside glucohydrolase) was nearly the same for parent dextran as for the derivatives. In order to explain the degradation data, the presence of the endo-acting enzyme dextranase (1,6-α-D-glucan 6-glucanohydrolase) in the lysosomes was taken into account.

Key concepts: Dextranase, Dextran, Enzyme, Chemistry, Biodegradation, Chemical modification, Biochemistry, Degradation (telecommunications)

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