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 >Protein-inorganic hybrid nanoflowers as ultrasensitive electrochemical cytosensing Interfaces for evaluation of cell surface sialic acid
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Protein-inorganic hybrid nanoflowers as ultrasensitive electrochemical cytosensing Interfaces for evaluation of cell surface sialic acid

机译:蛋白质-无机杂合纳米花作为超灵敏的电化学细胞传感界面,用于评估细胞表面唾液酸

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摘要

The identification of biocompatible nanomaterials with high conductivities as sensing interfaces is important in developing novel electrochemical cytosensors. We prepared a novel protein-inorganic nano-material-bovine serum albumin (BSA) incorporated Ag nanoflowers with three-dimensional porous architectures, using a simple biomimetic method. The BSA-incorporated Ag nanoflowers were modified on a glassy carbon electrode (GCE) surface and conjugated with a targeting lectin molecule, i.e., Sambucus nigra agglutinin (SNA), for sensing DLD-1 human colon cancer cells. The BSA-incorporated Ag nanoflowers were a suitable platform, and showed improved cell-immobilization capacity, and good bio-compatibility, with retention of activity of the immobilized cells. These properties are attributed to the large surface area of the porous structure and the natural BSA layer acting as a biocompatible support. The attachment of DLD-1 cells to the GCE increased the electron-transfer resistance, with a good correlation with the logarithm of the concentration from 1.35 x 10(2) to 1.35 x 10(7) cells mL(-1), with a low detection limit of 40 cells mL(-1). Based on the affinity between SNA and sialic acid (SA), the UV-vis absorption spectrum of the one-step reaction between SA and acidic ninhydrin indicated that the average number of SA molecules on a single living DLD-1 cell surface was approximately 2.16 x 10(12). This proposed cytosensing strategy had good reproducibility, acceptable precision, and high specificity for SA-over-expressed cells, indicating that it has potential applications for the early monitoring of tumor cells and convenient evaluation of SA on living cells. (C) 2015 Elsevier B.V. All rights reserved.
机译:具有高电导率的生物相容性纳米材料作为传感界面的识别对于开发新型电化学细胞传感器非常重要。我们使用一种简单的仿生方法,制备了一种新型的蛋白质-无机纳米材料-牛血清白蛋白(BSA),该蛋白结合了具有三维多孔结构的Ag纳米花。掺入BSA的Ag纳米花在玻璃碳电极(GCE)表面上修饰,并与靶向凝集素分子即黑接骨凝集素(SNA)偶联,用于感测DLD-1人结肠癌细胞。掺有BSA的Ag纳米花是合适的平台,并显示出提高的细胞固定能力和良好的生物相容性,并保留了固定细胞的活性。这些性质归因于多孔结构的大表面积和充当生物相容性载体的天然BSA层。 DLD-1细胞与GCE的附着增加了电子转移阻力,并且与浓度从1.35 x 10(2)到1.35 x 10(7)个细胞mL(-1)的对数具有良好的相关性,低检测限为40个细胞mL(-1)。基于SNA与唾液酸(SA)之间的亲和力,SA与酸性茚三酮之间一步反应的UV-vis吸收光谱表明,单个活的DLD-1细胞表面上SA分子的平均数量约为2.16。 x 10(12)。该拟议的细胞传感策略具有良好的重现性,可接受的精度和对SA过表达细胞的高特异性,表明其在早期监测肿瘤细胞和方便评估SA在活细胞上具有潜在的应用价值。 (C)2015 Elsevier B.V.保留所有权利。

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