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Simple Colorimetric Glucose Biosensor using Chitosan Cryogel Supporting Material

机译:使用壳聚糖冷冻凝胶配套材料的简单比色葡萄糖生物传感器

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Large surface area of porous structure cryogel showed an excellent matrix for enzyme immobilization, especially in the biosensor development. A chitosan cryogel beads was prepare by cross-linking chitosan with sodium tripolyphosphate at subzero temperature. This chitosan cryogel beads was then used to immobilize glucose oxidase for glucose biosensor fabrication. The biosensor was simple design and operation, using a micropipette tip to hold the immobilized enzyme, where the reaction can be performed by suck-hold-release the analyte using micropipette. The detection was based on the reaction between hydrogen peroxide, enzymatic product, with titanium (IV) oxysulfate to produce color change, which finally recorded using commercial scanner. The digital image obtained was then analyze using freeware of ImageJ to get the relationship between color change and the analyte concentration. The result showed a linear response in the glucose detection of 1.0 to 5.0 and 10 mM, with a regression of y = 11.33x + 46.02 and R2 of 0.983. The great enzyme immobilization was showed in the fabricated biosensor with 12 times uninterrupted analysis without reducing significant responses.
机译:多孔结构冷冻凝胶的大表面积显示出优异的酶固定基质,尤其是在生物传感器的发育中。通过在亚零温度下用三聚磷酸钠交联壳聚糖,制备壳聚糖冷冻粒珠。然后使用该壳聚糖冷冻粒子珠子固定葡萄糖氧化酶以用于葡萄糖生物传感器制备。使用微移液尖端,使生物传感器具有简单的设计和操作,以保持固定化的酶,其中可以通过使用微量移液管释放分析物来进行反应。检测基于过氧化氢,酶产物与氧硫酸盐的碳酸酯产物之间的反应产生颜色变化,其最终使用商业扫描仪记录。然后使用imagej的自由分析获得的数字图像以获得颜色变化与分析物浓度之间的关系。结果显示葡萄糖检测的线性响应1.0至5.0和10mm,y = 11.33×46.02和R2的回归为0.983。在制造的生物传感器中显示出良好的酶固定化,不间断地分析12倍,而不会降低显着反应。

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