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基于表面增强拉曼光谱的侧向流动分析法,利用钯金核壳纳米棒和催化发夹组装技术对人血清中两种喉鳞状细胞癌相关微小RNA生物标志物进行快速超灵敏定量分析。

SERS Based Lateral Flow Assay for Rapid and Ultrasensitive Quantification of Dual Laryngeal Squamous Cell Carcinoma-Related miRNA Biomarkers in Human Serum Using Pd-Au Core-Shell Nanorods and Catalytic Hairpin Assembly.

作者信息

Li Guang, Niu Ping, Ge Shengjie, Cao Dawei, Sun Aidong

机构信息

Department of Otorhinolaryngology-Head and Neck Surgery, The Affiliated Hospital of Yangzhou University, Yangzhou University, Yangzhou, China.

Departments of Otolaryngology, The Affiliated Hospital of Shandong First Medical University, Qingzhou People's Hospital, Qingzhou, China.

出版信息

Front Mol Biosci. 2022 Feb 11;8:813007. doi: 10.3389/fmolb.2021.813007. eCollection 2021.

Abstract

Non-invasive early diagnosis is of great significant in disease pathologic development and subsequent medical treatments, and microRNA (miRNA) detection has attracted critical attention in early cancer screening and diagnosis. However, it was still a challenge to report an accurate and sensitive method for the detection of miRNA during cancer development, especially in the presence of its analogs that produce intense background noise. Herein, we developed a surface-enhanced Raman scattering (SERS)-based lateral flow assay (LFA) biosensor, assisted with catalytic hairpin assembly (CHA) amplification strategy, for the dynamic monitoring of miR-106b and miR-196b, associated with laryngeal squamous cell carcinoma (LSCC). In the presence of target miRNAs, two hairpin DNAs could self-assemble into double-stranded DNA, exposing the biotin molecules modified on the surface of palladium (Pd)-gold (Au) core-shell nanorods (Pd-AuNRs). Then, the biotin molecules could be captured by the streptavidin (SA), which was fixed on the test lines (T1 line and T2 line) beforehand. The core-shell spatial structures and aggregation Pd-AuNRs generated abundant active "hot spots" on the T line, significantly amplifying the SERS signals. Using this strategy, the limits of detections were low to aM level, and the selectivity, reproducibility, and uniformity of the proposed SERS-LFA biosensor were satisfactory. Finally, this rapid analysis strategy was successfully applied to quantitatively detect the target miRNAs in clinical serum obtained from healthy subjects and patients with LSCC at different stages. The results were consistent with the quantitative real-time PCR (qRT-PCR). Thus, the CHA-assisted SERS-LFA biosensor would become a promising alternative tool for miRNAs detection, which showed a tremendous clinical application prospect in diagnosing LSCC.

摘要

非侵入性早期诊断在疾病病理发展及后续治疗中具有重大意义,微小RNA(miRNA)检测在早期癌症筛查与诊断中备受关注。然而,要报道一种在癌症发展过程中检测miRNA的准确且灵敏的方法仍是一项挑战,尤其是在存在会产生强烈背景噪声的类似物的情况下。在此,我们开发了一种基于表面增强拉曼散射(SERS)的侧向流动分析(LFA)生物传感器,并辅以催化发夹组装(CHA)扩增策略,用于动态监测与喉鳞状细胞癌(LSCC)相关的miR - 106b和miR - 196b。在存在靶标miRNA的情况下,两条发夹DNA可自组装成双链DNA,使修饰在钯(Pd)-金(Au)核壳纳米棒(Pd - AuNRs)表面的生物素分子暴露出来。然后,生物素分子可被预先固定在检测线(T1线和T2线)上的链霉亲和素(SA)捕获。核壳空间结构以及聚集的Pd - AuNRs在T线上产生了丰富的活性“热点”,显著放大了SERS信号。使用该策略,检测限低至aM水平,所提出的SERS - LFA生物传感器的选择性、重现性和均匀性令人满意。最后,这种快速分析策略成功应用于定量检测从健康受试者和不同阶段LSCC患者获得的临床血清中的靶标miRNA。结果与定量实时PCR(qRT - PCR)一致。因此,CHA辅助的SERS - LFA生物传感器将成为一种有前景的miRNA检测替代工具,在诊断LSCC方面显示出巨大的临床应用前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/72a2/8878268/11fccf859159/fmolb-08-813007-g001.jpg

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