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通过将葡萄糖氧化酶限制在中空碳酸钙颗粒中构建的增强型化学发光生物平台。

An enhanced chemiluminescence bioplatform by confining glucose oxidase in hollow calcium carbonate particles.

作者信息

Wang Congmin, Zhou Cuisong, Long Yuyin, Cai Honglian, Yin Cuiyun, Yang Qiufang, Xiao Dan

机构信息

College of Chemistry, Sichuan University, 29 Wangjiang Road, Chengdu 610064, People's Republic of China.

College of Chemical Engineering, Sichuan University, 29 Wangjiang Road, Chengdu 610065, People's Republic of China.

出版信息

Sci Rep. 2016 Apr 15;6:24490. doi: 10.1038/srep24490.

Abstract

A chemiluminescence (CL) amplification platform based on HCC/Lucigenin&GOx (HLG) film was developed. Hollow structural calcium carbonate (HCC) particles were used as alternative materials for carrying both enzyme and CL reagent. The model enzyme (GOx), immobilized in confined space of HCC particles, exhibited an improved biocatalysis. The Michaelis constant (Km) and the enzymatic rate constant (kcat) were determined to be 0.209 μM and 2.21 s(-1), respectively, which are much better than those of either free GOx in aqueous solution or the GOx immobilized on common nanomaterials. Based on the HLG platform, CL signal was effectively amplified and visualized after adding trace glucose, which could be attributed to the HCC particles' high biocompatibility, large specific surface area, attractive interfacial properties and efficient interaction with analyses. The visual CL bioplatform showed an excellent performance with high selectivity, wide linear range and low detection limit for sensing trace glucose. Because it eliminates the need of complicated assembly procedure and enables visualization by the naked eye, the sensitive and selective CL bioplatform would provide wide potential applications in disease diagnosis and food safety.

摘要

构建了一种基于肝癌细胞/光泽精&葡萄糖氧化酶(HLG)膜的化学发光(CL)放大平台。中空结构碳酸钙(HCC)颗粒被用作同时携带酶和CL试剂的替代材料。固定在HCC颗粒受限空间内的模型酶(葡萄糖氧化酶)表现出增强的生物催化作用。米氏常数(Km)和酶促速率常数(kcat)分别测定为0.209μM和2.21 s(-1),这比水溶液中的游离葡萄糖氧化酶或固定在普通纳米材料上的葡萄糖氧化酶都要好得多。基于HLG平台,加入微量葡萄糖后CL信号得到有效放大并可视化,这可归因于HCC颗粒的高生物相容性、大比表面积、有吸引力的界面性质以及与分析物的高效相互作用。视觉CL生物平台在检测微量葡萄糖时表现出优异的性能,具有高选择性、宽线性范围和低检测限。由于它无需复杂的组装过程且能通过肉眼可视化,这种灵敏且选择性的CL生物平台将在疾病诊断和食品安全方面提供广泛的潜在应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e946/4832249/17b2ebe905f0/srep24490-f1.jpg

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