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一种机械化的脲酶活性测定法。

A mechanized urease activity assay.

机构信息

University of Warsaw, Faculty of Chemistry, L. Pasteura 1, 02-093, Warsaw, Poland.

University of Warsaw, Faculty of Chemistry, L. Pasteura 1, 02-093, Warsaw, Poland.

出版信息

Enzyme Microb Technol. 2019 Apr;123:1-7. doi: 10.1016/j.enzmictec.2019.01.001. Epub 2019 Jan 3.

Abstract

Two fully mechanized flow analysis systems for urease activity assays have been developed, characterized and compared. Both of them are based on almost the same compact system of solenoid micropumps and microvalves controlled and actuated by highly effective, low-power and economic Arduino microcontroller. For photometric detection of ammonia formed in the course of enzymatic hydrolysis of urea, the Berthelot method and the Nessler reaction have been examined. For both these detection schemes very simple dedicated optoelectronic flow-through detectors made of paired light emitting diodes have been developed. In both systems single enzyme assay lasting a few minutes allows determination of urease in activity range 0.02-5.3 U mL with detection limit 0.02 U mL and in 1.3-5.3 U mL range with 0.75 U mL detection limit for Nessler reaction and Berthelot method based systems, respectively. When compared with mechanized Berthelot method, the bioanalytical system based on Nessler reaction offers higher sensitivity, lower detection/determination limits, better selectivity and lower cost of the assay. It has been demonstrated that the developed bioanalytical flow systems could be useful for urease determination in complex biological matrix like plant extracts and media for microbial cultures as well as for inhibitive determination of heavy metals at sub-ppm levels.

摘要

两种用于脲酶活性分析的全机械化流动分析系统已经被开发、表征和比较。它们都基于几乎相同的紧凑电磁阀微泵和微阀系统,由高效、低功率和经济的 Arduino 微控制器控制和驱动。对于在尿素酶水解过程中形成的氨的光度检测,已经检验了伯尔蒂埃法和奈斯勒反应。对于这两种检测方案,都开发了非常简单的专用光电流通式检测器,由成对的发光二极管组成。在这两个系统中,单次酶分析只需几分钟,就可以在 0.02-5.3 U mL 的活性范围内测定脲酶,检测限为 0.02 U mL,而对于奈斯勒反应和伯尔蒂埃法基础系统,检测限分别为 0.75 U mL 和 1.3-5.3 U mL。与机械化伯尔蒂埃法相比,基于奈斯勒反应的生物分析系统具有更高的灵敏度、更低的检测/测定限、更好的选择性和更低的分析成本。已经证明,所开发的生物分析流动系统可用于复杂生物基质(如植物提取物和微生物培养介质)中的脲酶测定,以及痕量重金属的抑制性测定。

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