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基于树枝状聚合物的夹层对酶固定化的影响及其在谷氨酸模型电化学传感系统中的应用。

Effect of dendrimer-based interlayers for enzyme immobilization on a model electrochemical sensing system for glutamate.

机构信息

Nalecz Institute of Biocybernetics and Biomedical Engineering Polish Academy of Sciences, Ks. Trojdena 4, 02-109 Warsaw, Poland.

Nalecz Institute of Biocybernetics and Biomedical Engineering Polish Academy of Sciences, Ks. Trojdena 4, 02-109 Warsaw, Poland.

出版信息

Bioelectrochemistry. 2023 Aug;152:108407. doi: 10.1016/j.bioelechem.2023.108407. Epub 2023 Mar 5.

DOI:10.1016/j.bioelechem.2023.108407
PMID:36917883
Abstract

In this paper, we discuss dendrimer usage in enzyme-based electrochemical biosensors, particularly with respect to biomolecule loading on the sensing surface. A novel approach to design bioactive layers with immobilized enzymes for electrochemical biosensors using the surface plasmon resonance (SPR) method in combination with electrochemical impedance spectroscopy was presented. The gold surface was modified with linear linkers (various mercaptoalkanoic acids and aminoalkanethiols) and poly(amidoamine) dendrimers from the first- to fifth-generation. The best functionalization procedure was established by detailed SPR studies and transferred onto gold electrodes to electrochemically examine the model enzymatic reaction catalysed by glutamate oxidase. In the case of the chronoamperometric method, the determined sensitivity was 3.36 ± 0.08 μA∙mM, and the low limit of detection (LOD) was 1.52 μM. Comparing the sensitivity and LOD obtained for CV measurements, the values of these parameters were 2.5 times higher and 4 times lower, respectively, for the fourth-generation dendrimer-based biosensor and the biosensor with a linear linker. The positive impact of the dendrimer interlayer on the long-term enzyme activity was also confirmed. The research results indicate the possibility of a significant increase in the sensor response using the dendrimer itself without enriching it with electrochemical components.

摘要

在本文中,我们讨论了树枝状大分子在基于酶的电化学生物传感器中的应用,特别是在生物分子在传感表面上的负载方面。提出了一种使用表面等离子体共振 (SPR) 方法结合电化学阻抗谱设计具有固定化酶的生物活性层的新方法,用于电化学生物传感器。金表面用线性接头(各种巯基烷酸和氨烷基硫醇)和从第一代到第五代的聚(酰胺-胺)树枝状大分子修饰。通过详细的 SPR 研究确定了最佳的功能化程序,并将其转移到金电极上,以电化学方式检查谷氨酸氧化酶催化的模型酶反应。在计时安培法中,确定的灵敏度为 3.36±0.08 μA∙mM,检测限(LOD)低至 1.52 μM。与 CV 测量相比,对于第四代基于树枝状大分子的生物传感器和具有线性接头的生物传感器,这些参数的灵敏度和 LOD 值分别高 2.5 倍和低 4 倍。还证实了树枝状大分子层间对酶长期活性的积极影响。研究结果表明,无需在树枝状大分子中富集电化学组件,仅使用树枝状大分子本身就有可能显著提高传感器的响应。

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