首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >Carbohydrate derivative-functionalized biosensing toward highly sensitive electrochemical detection of cell surface glycan expression as cancer biomarker
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Carbohydrate derivative-functionalized biosensing toward highly sensitive electrochemical detection of cell surface glycan expression as cancer biomarker

机译:碳水化合物衍生物功能化的生物传感技术,用于高度敏感的电化学检测细胞表面聚糖的表达,并将其作为癌症的生物标志物

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摘要

Accurate and highly sensitive detection of glycan expression on cell surface is extremely important for cancer diagnosis and therapy. Herein, a carbohydrate derivative-functionalized biosensor was developed for electrochemical detection of the expression level of cell surface glycan (mannose used as model). Thiomannosyl dimer was synthesized to design the thiomannosyl-functionalized biosensor by direct and rapid one-step protocols. The biosensing surface-confined mannose could effectively mimic the presentation of cell surface mannose and was responsible for competing with mannose on cancer cells in incubation solution. Greatly enhanced sensitivity was achieved by exploiting the excellent conductivity of multiwalled carbon nanotube/Au nanoparticle (MWNT/AuNP), the amplification effect of MWNTs, and the favorable catalytic ability of horseradish peroxidase (HRP). Using competitive strategy, the developed biosensor exhibits attractive performances for the analysis of mannose expression with rapid response, high sensitivity and accuracy, and possesses great promise for evaluation of cell surface glycan expression by using a greater variety of lectins. (C) 2015 Elsevier B.V. All rights reserved.
机译:准确,高度灵敏地检测细胞表面聚糖表达对于癌症的诊断和治疗极为重要。在本文中,开发了碳水化合物衍生物官能化的生物传感器,用于电化学检测细胞表面聚糖(用作模型的甘露糖)的表达水平。合成了硫代甘露糖基二聚体,通过直接和快速的一步操作步骤设计了硫代甘露糖基功能化的生物传感器。生物传感表面受限的甘露糖可有效模拟细胞表面甘露糖的呈递,并负责与甘露糖在培养液中与癌细胞竞争。通过利用多壁碳纳米管/金纳米粒子(MWNT / AuNP)的优异电导率,MWNTs的扩增效果以及辣根过氧化物酶(HRP)的良好催化能力,可以大大提高灵敏度。通过使用竞争策略,开发的生物传感器具有快速响应,高灵敏度和准确性的甘露糖表达分析方面的诱人性能,并通过使用更多种凝集素对细胞表面聚糖表达的评估具有广阔的前景。 (C)2015 Elsevier B.V.保留所有权利。

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