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Novel Photocross-Linked Polymers for Construction of Laccase-Based Amperometric Biosensors

机译:用于构建基于漆酶的舒适性生物传感器的新型光胶囊连接聚合物

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The procedure of enzyme immobilization in biosensorics has a purpose to induce maximal activity of biological element with sufficient stability and reusability of the bioelectrodes. The entrapment of the biomaterial with a porous solid matrix looks most promising in this respect due to minimal alteration of enzyme structure and behavior. On the other hand, the method needs pore-size control to reduce the diffusional limitation of the substrate to the enzyme. We propose the use of photocross-linked polymers consisted of epoxidized linseed oil (ELO) as a matrix for immobilization of fungal laccase. The network properties of the polymer matrixes, holding the biosensing element, were studied by positron annihilation lifetime spectroscopy measurements. The correlation between the operational parameters of the constructed biosensor and the microscopical free volume of the holding photocross-linking matrixes was established.
机译:生物传感器中的酶固定化程序的目的是引起生物元素的最大活性,具有足够的生物电极的稳定性和可重用性。 由于酶结构和行为的最小变化,在这方面,具有多孔固体基质的生物材料的夹杂物看起来最有前途。 另一方面,该方法需要孔径控制以将衬底的扩散限制降低到酶。 我们提出了使用光源连接的聚合物,由环氧化亚麻籽油(ELO)组成,作为用于固定真菌漆酶的基质。 通过正电子湮没寿命光谱测量研究了保持生物传感元件的聚合物基质的网络性质。 建立了构建的生物传感器的操作参数与保持光源连接基质的显微静脉体积之间的相关性。

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