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结合纳米金刚石量子传感的颜色编码交通信号法用于精确检测微小RNA

Color-Coded Traffic Signal Method Combined with Nanodiamond Quantum Sensing for Accurate miRNA Detection.

作者信息

Wang Wei, Xing Youqiang, Liu Lei, Wu Min, Huang Peng, Li Bingjue, Wu Ze

机构信息

School of Mechanical Engineering, Southeast University, Nanjing 211189, People's Republic of China.

Suzhou Research Institute of Southeast University, Suzhou 215123, People's Republic of China.

出版信息

ACS Sens. 2025 Jan 24;10(1):310-319. doi: 10.1021/acssensors.4c02511. Epub 2024 Dec 23.

Abstract

Background noise interferes with the accurate detection of early tumor biomarkers. This study introduces a method that effectively reduces background noise to enhance detection accuracy by combining a color-coded signaling approach with the unique fluorescent properties and room-temperature tunable quantum spin characteristics of fluorescent diamonds (FNDs) with nitrogen-vacancy centers. In this approach, a red signal indicates the presence of the target analyte within the spectral region, a green signal indicates its absence, and a yellow signal indicates the need for further analysis using FNDs' quantum spin properties for optical detection magnetic resonance (ODMR) to distinguish the FND signal from background noise. Preliminary results demonstrate that this method enables the detection of breast cancer-related miRNA-21 and miRNA-96 concentrations as low as 1 fM within a 100 × 100 μm area, achieving single-molecule detection capability. This method is suitable for accurate biomarker identification and detection under high-background fluorescence conditions.

摘要

背景噪声会干扰早期肿瘤生物标志物的准确检测。本研究介绍了一种方法,该方法通过将颜色编码信号方法与具有氮空位中心的荧光金刚石(FND)独特的荧光特性和室温可调量子自旋特性相结合,有效降低背景噪声以提高检测准确性。在这种方法中,红色信号表示光谱区域内存在目标分析物,绿色信号表示其不存在,黄色信号表示需要利用FND的量子自旋特性进行光学检测磁共振(ODMR)进一步分析,以将FND信号与背景噪声区分开来。初步结果表明,该方法能够在100×100μm的区域内检测低至1fM的乳腺癌相关miRNA-21和miRNA-96浓度,实现单分子检测能力。该方法适用于在高背景荧光条件下准确识别和检测生物标志物。

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