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比率型催化组装纳米簇荧光探针:一种用于放大 DNA 检测的非酶方法。

Ratiometric Catalyzed-Assembly of NanoCluster Beacons: A Nonenzymatic Approach for Amplified DNA Detection.

机构信息

College of Chemistry and Pharmaceutical Sciences, Qingdao Agricultural University , Qingdao, 266109, People's Republic of China.

出版信息

ACS Appl Mater Interfaces. 2017 Sep 20;9(37):32089-32096. doi: 10.1021/acsami.7b09034. Epub 2017 Sep 5.

Abstract

In this work, a novel fluorescent transformation phenomenon of oligonucleotide-encapsulated silver nanoclusters (AgNCs) was demonstrated, in which green-emissive AgNCs effectively transformed to red-emissive AgNCs when placed in close proximity to a special DNA fragment (denoted as convertor here). Taking advantage of a catalyzed-hairpin-assembly (CHA) amplification strategy, we rationally and compatibly engineered a simple and sensitive AgNC-based fluorescent signal amplification strategy through the ratiometric catalyzed-assembly (RCA) of green-emissive NanoCluster Beacon (NCB) with a convertor modified DNA hairpin to induce the template transformation circularly. The proposed ratiometric fluorescent biosensing platform based on RCA-amplified NCB (RCA-NCB) emits intense green fluorescence in the absence of target DNA and will undergo consecutively fluorescent signal transformation from green emission to red emission upon exposure to its target DNA. The ratiometric adaptation of the NCB to CHA circuit advances their general usability as biosensing platform with great improvements in detection sensitivity. By measuring the fluorescence intensity ratio of the red emission and green emission, the proposed RCA-NCB platform exhibits sensitive and accurate analytical performance toward Werner Syndrome-relevant gene, the proof-of-concept target in this work. A low detection limit down to the pM level was achieved, which is lower than most of the reported AgNC-based fluorescent DNA biosensors, making the proposed RCA-NCB biosensing strategy appealing in amplifying the ratiometric fluorescent signal for sensitive DNA detection. Moreover, our proposed RCA-NCB platform shows good recovery toward the target DNA in real human serum samples, illustrating their potential promise for clinical and imaging applications in the future.

摘要

在这项工作中,展示了一种寡核苷酸包裹的银纳米簇(AgNCs)的新型荧光转变现象,其中绿色发光的 AgNCs 当放置在特殊的 DNA 片段(此处表示为转化器)附近时,有效地转变为红色发光的 AgNCs。利用催化发夹组装(CHA)扩增策略,我们通过绿色发光的 NanoCluster Beacon(NCB)与修饰有转化器的 DNA 发夹的比率催化组装(RCA),合理且兼容地设计了一种简单而灵敏的基于 AgNC 的荧光信号放大策略,以诱导模板循环转化。所提出的基于 RCA 扩增 NCB(RCA-NCB)的比率荧光生物传感平台在不存在靶 DNA 的情况下发出强烈的绿色荧光,并且在暴露于其靶 DNA 时,将经历从绿色发射到红色发射的连续荧光信号转变。NCB 对 CHA 电路的比率适应提高了它们作为生物传感平台的通用性,并大大提高了检测灵敏度。通过测量红色发射和绿色发射的荧光强度比,所提出的 RCA-NCB 平台对 Werner 综合征相关基因(本工作中的概念验证靶标)表现出敏感和准确的分析性能。达到了低至 pM 级别的检测限,低于大多数报道的基于 AgNC 的荧光 DNA 生物传感器,这使得所提出的 RCA-NCB 生物传感策略在放大比率荧光信号以进行灵敏的 DNA 检测方面具有吸引力。此外,我们提出的 RCA-NCB 平台在真实的人血清样本中对靶 DNA 显示出良好的回收率,这表明它们在未来具有用于临床和成像应用的潜力。

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