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基于玫瑰红游动球菌腐胺氧化酶的腐胺生物传感器。

Putrescine biosensor based on putrescine oxidase from Kocuria rosea.

机构信息

EGERFOOD Regional Knowledge Centre, Eszterházy Károly College, Eszterházy tér 1, H-3300 Eger, Hungary.

出版信息

Enzyme Microb Technol. 2012 Oct 10;51(5):258-62. doi: 10.1016/j.enzmictec.2012.07.006. Epub 2012 Jul 20.

Abstract

The novel putrescine oxidase based amperometric biosensor selectively measures putrescine, which can be considered as an indicator of microbial spoilage. Putrescine oxidase (PUOX, EC 1.4.3.10) was isolated from Kocuria rosea (Micrococcus rubens) by an improved and simplified purification process. Cells were grown on brain heart infusion medium supplemented with putrescine. Cell-free extract was prepared in Tris buffer (pH 8.0) by Bead-beater. A newly elaborated step based on three-phase partitioning (TPP) was applied in the purification protocol of PUOX. The purified enzyme was immobilized on the surface of a spectroscopic graphite electrode in redox hydrogel with horseradish peroxidase, Os mediator and poly(ethylene glycol) (400) diglycidyl ether (PEGDGE) as crosslinking agent. This modified working electrode was used in wall-jet type amperometric cell together with the Ag/AgCl (0.1M KCl) reference electrode and a platinum wire as auxiliary electrode in flow injection analysis system (FIA). Hydrogel composition, pH and potential dependence were studied. Optimal working conditions were 0.45 mLmin(-1) flow rate of phosphate buffer (66 mM, pH 8.0) and +50 mV polarizing potential vs. Ag/AgCl. The linear measuring range of the method was 0.01-0.25 mM putrescine, while the detection limit was 5 μM. Beer samples were investigated by the putrescine biosensor and the results were compared by those of HPLC reference method.

摘要

新型腐胺氧化酶安培生物传感器可选择性地测量腐胺,腐胺可作为微生物腐败的指标。腐胺氧化酶(PUOX,EC 1.4.3.10)是从玫瑰色微球菌(红色微球菌)中通过改良和简化的纯化工艺分离出来的。细胞在含有腐胺的脑心浸液培养基中生长。无细胞提取物是在 Tris 缓冲液(pH 8.0)中通过 Bead-beater 制备的。在纯化方案中应用了一种新设计的三相分配(TPP)步骤。纯化的酶与辣根过氧化物酶、Os 介体和聚乙二醇(400)二缩水甘油醚(PEGDGE)一起固定在光谱石墨电极表面的氧化还原水凝胶中,作为交联剂。这种修饰后的工作电极与 Ag/AgCl(0.1M KCl)参比电极和铂丝一起在流动注射分析系统(FIA)中用于壁喷式安培池。研究了水凝胶组成、pH 值和电位依赖性。最佳工作条件为磷酸盐缓冲液(66 mM,pH 8.0)的 0.45 mLmin(-1)流速和+50 mV 相对于 Ag/AgCl 的极化电位。该方法的线性测量范围为 0.01-0.25 mM 腐胺,检测限为 5 μM。腐胺生物传感器对啤酒样品进行了研究,并将结果与 HPLC 参考方法的结果进行了比较。

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