Method of fixing glucose oxidase by organic modification sol-gel

A glucose oxidase and modified technology, applied in the directions of oxidoreductase, immobilized on/in organic carriers, etc., can solve the problems of short service life, easy loss of enzyme, loss of activity, etc., to maintain activity and stability , good permeability, good adhesion effect

Inactive Publication Date: 2007-10-17
FUZHOU UNIV
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  • Summary
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AI Technical Summary

Problems solved by technology

Although the immobilization of enzymes by physical adsorption is simple in operation, the stability is poor, the enzymes are easy to lose, and the service life is short; Strong chemical bonding reduces or even inactivates the immobilized enzyme; due to the above shortcomings, the embedding method has become the most widely used immobilization technology so far. Not easy to lose, the pore size and geometry of the membrane can be controlled, high stability, long-term storage
[0003] The sol-gel embedding method can maintain the liquid phase properties of immobilized reagents or microorganisms, which is very suitable for the immobilization of biomolecules or biologically active substances such as bacteria, but the sol-gel method also has problems such as leakage and poor stability.

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0016] Mix tetramethoxysilane (TMOS) and dimethyldimethoxysilane (DiMe-DMOS) at a volume ratio of 1:1.2; add 0.01 mol of the same volume as tetramethoxysilane dropwise under ultrasonic vibration / L HCl aqueous solution; put the mixed solution in a small bottle, add a cap with a small hole, stir and hydrolyze in a water bath at 60°C; after the reaction, the lower layer of the solution is milky white gel; let it stand for 3 minutes, and leave a layer of gel solution for later use; Mix the 5% (W / V) PVA-124 aqueous solution and the above-mentioned gel solution in a volume ratio of 1:1 (add 5% (W / V) PVA-124 aqueous solution first, then add the gelatin dropwise under stirring. Glue), after standing for 3 minutes, take the supernatant and mix with the phosphate buffer dissolved in glucose oxidase in a volume ratio of 1:1, and spread films of different thicknesses on the surfaces of glass, oxygen sensing probes, etc., at room temperature Dry and shape.

[0017] Glucose oxidase is imm...

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Abstract

The present invention provides a method for fixing glucose oxidase using organic modified sol- gelatin. Mixing evenly of oxygen radix silane and dimethyl dimethoxy silane, adding HCl aqueous solution of same volume with tetramethyl silane, placing mixing liquor in bottle, covering with lid mounted with a hole, stirring in water bath, placing for 3-5min, reserving gel liquor, mixing prepared gel and polyvinyl alcohol water solution, placing for 3-5min, taking upper clear solution after lamination and mixing with phosphate buffer dissolved with glucose oxidase, applying it on surface of matrix, drying for molding. The invention successfully solves the problem of swelling property derived from using individual PVA embedment. The glucose oxidase is embedded in porous matrix hybridized by gel solution and PVA so it is not easy to be lost and can be stored in a long-term and keeps the activity and stability.

Description

technical field [0001] The invention belongs to a method for preparing an enzyme sensor by embedding enzymes in organically modified sol-gel, and more particularly relates to a method for immobilizing glucose oxidase in organically modified sol-gel. Background technique [0002] Enzyme-catalyzed reactions are characterized by high efficiency, rapidity, and high selectivity, so they have received extensive attention. However, unimmobilized enzymes are usually unstable and difficult to reuse, so immobilized enzyme technology is very necessary. At present, the common enzyme immobilization technologies at home and abroad mainly include: physical adsorption method (Liu et al., Biosensors & Bioelectronics 14 (2000) 883~893; Niculescu et al., Biosensors & Bioelectronics 19 (2004) 1175~1184), total Valence bonding method (Doretti et al., Biosensors & Bioelectronics 11 (1996) 365-373; Li et al., Biomaterials 19 (1998) 45-53), embedding method (Peter et al., Biosensors & Bioelectroni...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C12N11/04C12N9/04
Inventor 陈曦王旭东邱彬陈国南谢增鸿
Owner FUZHOU UNIV
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