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A high precision MUA-spaced single-cell sensor for cellular receptor assay based on bifunctional Au@Cu-PbCQD nanoprobes

机译:高精度MUA-spaced单细胞传感器细胞受体分析基于双官能

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摘要

A single-cell sensor with a spatial architecture was firstly fabricated for realizing high precision single-cell analysis using an 11-mercaptoundecanoic acid (MUA)-spaced sensing interface to prop up single cells and provide a suitable space for effective nanoprobe labeling. Mercapto acids (MA) with different carbon chain lengths were optimized and MUA was selected to provide optimal interspace on the electrodeposited PANI/AuNP substrates, and its carboxyl could couple with folic acid to capture cancer cells. Bifunctional Au@Cu-PbCQD nanoprobes, in which the AuNP cores were linked with lead-coadsorbed carbon quantum dots (PbCQDs) by a copper(ii) ion bridge, were firstly synthesized and applied as highly sensitive electrochemiluminescence (ECL) probes and electrochemical probes. Hyaluronic acid (HA)-functionalized Au@Cu-PbCQD nanoprobes were labelled on MCF-7 cells via specific recognition to the CD44 receptor, which served as the research model. The ECL response of the sensor was applied to evaluate the validity of nanoprobe labeling. With MUA modified, the sensor was able to enhance the ECL intensity by 37.5 +/- 3.9%, indicating the remarkable amelioration of the accuracy of single-cell analysis. To take advantage of the bifunctional nanoprobes, differential pulse voltammetry (DPV) was further applied to confirm the feasibility of the proposed single-cell sensor with a spatial architecture. Therefore, the novel strategy provides a single-cell analysis platform to acquire high-precision analytical results, and more accurately to elucidate cellular heterogeneity and biological function.
机译:一个单细胞传感器空间架构是首先捏造实现高吗使用一个单细胞分析精度11-mercaptoundecanoic酸(邮件用户代理)行距的感应支持单个细胞,并提供一个接口合适的空间有效nanoprobe标签。含巯基的酸(MA)与不同碳链长度进行了优化选择和邮件用户代理提供最佳的空隙聚苯胺/电镀AuNP基质,其羧基可以用叶酸捕捉夫妇癌细胞。nanoprobes, AuNP核有关lead-coadsorbed碳量子点(PbCQDs)由铜(ii)离子桥,首先合成和应用为高度敏感电化学发光(ECL)探测器和电化学探针。(HA)功能化Au@Cu-PbCQD nanoprobes标签MCF-7细胞通过特定的识别受体CD44,担任的研究模型。应用于评价nanoprobe的有效性标签。加强ECL强度由37.5 + / - 3.9%,指示的显著改善单细胞分析的准确性。利用双官能nanoprobes,微分脉冲伏安法(第一项)应用于确定的可行性提出了单细胞传感器空间体系结构。提供了一个单细胞分析平台获得高精度的分析结果更准确地阐明细胞异质性和生物功能。

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