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应用光谱串扰校正提高单激发波长下的多重 microRNA 检测

Application of Spectral Crosstalk Correction for Improving Multiplexed MicroRNA Detection Using a Single Excitation Wavelength.

机构信息

Jiangsu Engineering Laboratory of Smart Carbon-Rich Materials and Device, Laboratory of Environmental Medicine Engineering, Ministry of Education, School of Chemistry and Chemical Engineering, Southeast University , Nanjing, 211189, China.

College of Food Science and Technology, Henan University of Technology , Zhengzhou, 450001, China.

出版信息

Anal Chem. 2017 Mar 21;89(6):3430-3436. doi: 10.1021/acs.analchem.6b04176. Epub 2017 Mar 10.

Abstract

MicroRNAs (miRNAs) play crucial roles in the regulation of cellular activities and are next-generation biomarkers for early cancer detection. Simultaneous monitoring of multiplexed miRNA is very important for enhancing the accuracy of cancer diagnostics. Traditional fluorescence methods for multicomponent analysis were usually operated under multiple excitation wavelengths, because spectral crosstalk is very detrimental to detecting accuracy for multicomponent analysis. Herein, we present a fluorescence strategy for multi-miRNAs detection in plasma under a single excitation wavelength. Nucleic acid stain TOTO-1 and three labeled fluorescence dyes Cy3, Cy3.5, and Cy5 emit no fluorescence in their free state. Target miRNA hybridized the auxiliary and probe oligonucleotides into duplex nucleic acid. Intercalation interaction localized TOTO-1 and labeled dyes into the duplex nucleic acid. As a result, TOTO-1 emitted strong fluorescence and efficient Förster resonance energy transfer (FRET) happened. MicroRNAs miRNA-155, miRNA-182, and miRNA-197, which are significant for the early diagnosis of lung cancer, were simultaneously detected as models. Deviations from spectral crosstalk in the presence of other miRNAs were corrected by mathematical methods. Results demonstrated that, after spectra crosstalk corrections, every miRNA at high or low concentration in plasma was determined accurately in the presence of either high or low concentrations of the other two miRNAs. This new multiplexed assay for miRNAs is promising for clinical diagnosis, prognosis, and therapeutic monitoring of early-stage lung cancer.

摘要

微小 RNA(miRNAs)在细胞活动的调节中发挥着关键作用,是癌症早期检测的下一代生物标志物。同时监测多重 miRNA 对于提高癌症诊断的准确性非常重要。传统的用于多组分分析的荧光方法通常在多个激发波长下操作,因为光谱串扰对多组分分析的检测精度非常不利。在此,我们提出了一种在单激发波长下对血浆中多 miRNA 进行检测的荧光策略。核酸染料 TOTO-1 和三种标记荧光染料 Cy3、Cy3.5 和 Cy5 在游离状态下不发出荧光。靶 miRNA 与辅助和探针寡核苷酸杂交形成双链核酸。嵌入相互作用将 TOTO-1 和标记染料定位到双链核酸中。结果,TOTO-1 发出强荧光,并且发生有效的Förster 共振能量转移(FRET)。miRNA-155、miRNA-182 和 miRNA-197 被同时检测为模型,这些 miRNA 对肺癌的早期诊断具有重要意义。通过数学方法纠正了存在其他 miRNA 时的光谱串扰偏差。结果表明,在存在其他两种 miRNA 的高或低浓度的情况下,经过光谱串扰校正后,血浆中高或低浓度的每种 miRNA 都能被准确地检测到。这种用于 miRNAs 的新型多重分析方法有望用于肺癌的临床诊断、预后和早期治疗监测。

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