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Nonenzymatic Amperometric Aptamer Cytosensor for UltrasensitiveDetection of Circulating Tumor Cells and Dynamic Evaluation of CellSurface N-Glycan Expression

机译:非酶安培适体细胞传感器用于超敏循环肿瘤细胞的检测和细胞动态评估N-聚糖表面表达

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摘要

Dynamic assessment of glycan expression on the cell surface and accurate determination of circulating tumor cells are increasingly imperative for cancer diagnosis and therapeutics. Herein, a unique and versatile nonenzymatic sandwich-structured electrochemical cytosensor was developed. The cytosensor was constructed based on a cell-specific aptamer, the lectin-functionalized porous core–shell palladium gold nanoparticles (Pd@Au NPs). To establish the cytosensor, amine-modified-SYL3C aptamer was first attached to the surface of aminated Fe3O4@SiO2 nanoparticles (Fe3O4@SiO2–NH2 NPs) through cross-linked reaction via glutaraldehyde. Besides, in terms of noncovalent assembly of concanavalin A on Pd@Au NPs, a lectin-functionalized nanoprobe was established. This nanoprobe had the capabilities of both the specific carbohydrate recognition and the current signal amplification in view of the Pd@Au NPs as the electrocatalyst for the reduction of hydrogen peroxide (H2O2). Herein, we used MCF-7 cells as a model target, and the constructed cytosensor showed a low detection limit (down to three cells), a wide linear detection ranging from100 to 1 × 106 cells mL–1. The establishedmethod sensitively realized the detection of the amount of cell andexact evaluation of glycan expression on cell surface, demonstratinggreat application prospects.
机译:动态评估细胞表面聚糖表达和准确测定循环肿瘤细胞对于癌症的诊断和治疗越来越重要。在本文中,开发了独特且通用的非酶夹心结构的电化学细胞传感器。细胞传感器是基于细胞特异性适体,即凝集素功能化的多孔核-壳钯金纳米颗粒(Pd @ Au NPs)构造的。为了建立细胞传感器,首先通过戊二醛的交联反应将胺改性的SYL3C适体附着在胺化的Fe3O4 @ SiO2纳米颗粒(Fe3O4 @ SiO2–NH2 NPs)的表面上。此外,针对伴刀豆球蛋白A在Pd @ Au NPs上的非共价组装,建立了凝集素功能化的纳米探针。鉴于Pd @ Au NPs作为还原过氧化氢(H2O2)的电催化剂,该纳米探针具有特异性碳水化合物识别和电流信号放大的功能。在本文中,我们以MCF-7细胞为模型目标,构建的细胞传感器显示出低检测限(低至3个细胞),线性检测范围从100至1×10 6 个细胞mL –1 。既定的该方法灵敏地实现了细胞数量的检测,并且准确评估细胞表面上聚糖的表达,证明广阔的应用前景。

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