Li Fengyun, Li Gen, Cao Shijie, Liu Boshi, Ren Xiaoliang, Kang Ning, Qiu Feng
School of Chinese Materia Medica, State Key Laboratory of Component-based Chinese Medicine, Tianjin University of Traditional Chinese Medicine, 10 Poyanghu Road, Tianjin, 301617, PR China.
Tianjin Key Laboratory of TCM Chemistry and Analysis, Institute of Traditional Chinese Medicine, Tianjin University of Traditional Chinese Medicine, 10 Poyanghu Road, Tianjin, 301617, PR China.
Biosens Bioelectron. 2021 Jan 15;172:112757. doi: 10.1016/j.bios.2020.112757. Epub 2020 Oct 22.
MicroRNAs (miRNAs) are important biomarkers for the diagnosis, prognosis, and treatment of human diseases. Sensitive and selective detection of multiple miRNAs simultaneously will greatly facilitate the early and accurate diagnosis of cancers. Herein, a novel entropy-driven amplification system-templated silver nanoclusters sensing platform was developed for the multiplexed analysis of tumor-associated miRNAs. The sensing platform was constructed by coupling target-triggered entropy-driven catalysis with luminescence adjustable DNA-templated silver nanoclusters (Ag NCs). In the presence of target miRNA, the sensing platform initiates the branch migration and strand displacement of the complex, which has a six-base cytosine loop for stabilizing the luminous Ag NCs. The target is cyclically generated for new catalysis while turning off the fluorescence of Ag NCs; this is accompanied by a significantly amplified optical readout. In this study, two different complex-stabilized Ag NCs systems were proposed, the yellow-emitting Ag NCs and red-emitting Ag NCs biosensors enabled the analysis of miRNA-141 and miRNA-155 with detection limits of 6.1 pM and 8.7 pM, respectively. Impressively, owing to the excellent selectivity, flexibility, and narrow-band excitation of the platform, the multiplexed synchronous detection of miRNA-141 and miRNA-155 were achieved in buffer, biological cell lysates and human serum samples with satisfactory results. The simple, flexible, and convenient strategy provides a powerful tool for multiple biomarkers analysis and related clinical applications.
微小RNA(miRNA)是人类疾病诊断、预后和治疗的重要生物标志物。同时灵敏且选择性地检测多种miRNA将极大地促进癌症的早期准确诊断。在此,开发了一种新型的熵驱动扩增系统模板化银纳米簇传感平台,用于肿瘤相关miRNA的多重分析。该传感平台通过将靶标触发的熵驱动催化与发光可调的DNA模板化银纳米簇(Ag NCs)耦合构建而成。在存在靶标miRNA的情况下,传感平台启动复合物的分支迁移和链置换,该复合物具有一个六碱基胞嘧啶环用于稳定发光的Ag NCs。靶标循环产生以进行新的催化,同时关闭Ag NCs的荧光;这伴随着显著放大的光学读出信号。在本研究中,提出了两种不同的复合物稳定的Ag NCs系统,黄色发光的Ag NCs和红色发光的Ag NCs生物传感器分别能够分析miRNA - 141和miRNA - 155,检测限分别为6.1 pM和8.7 pM。令人印象深刻的是,由于该平台具有出色的选择性、灵活性和窄带激发特性,在缓冲液、生物细胞裂解物和人血清样本中实现了miRNA - 141和miRNA - 155的多重同步检测,结果令人满意。这种简单、灵活且便捷的策略为多种生物标志物分析及相关临床应用提供了强大工具。