Near-infrared DNA biosensors based on polysulfonate coatings for the sensitive detection of microRNAs

IF 4.6 3区 材料科学 Q2 CHEMISTRY, MULTIDISCIPLINARY Nanoscale Advances Pub Date : 2024-11-26 DOI:10.1039/D4NA00712C
Xianghang Lin, Yang Yang, Wenzhang Zhu, Xiaorong He and Yunliang Liu
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Abstract

MicroRNAs (miRNAs) play crucial roles in the regulation of immune cell differentiation and the immune response during allergic rhinitis (AR). Studies have shown that miRNA-155 is significantly upregulated in AR pathogenesis. Therefore, miRNA-155 can be used as a biomarker for AR diagnosis. Although fluorescent biosensors based on upconversion nanoparticles (UCNPs) have made significant advances in the detection of miRNAs, developing UCNPs with polymer coatings, efficient surface passivation, and DNA functionalization for hybrid sensing in biological media remains challenging. Herein, hairpin DNA1 (H1) is modified into a thin polysulfonic acid layer on UCNPs by sulfonamide bonds, and the fluorescence of the UCNPs is quenched by the fluorescence resonance energy transfer (FRET) process of BHQ3 carried by H1. When the target miRNA-155 is present, the hairpin structure of H1 is opened, allowing BHQ3 to move away from the UCNP surface, and the fluorescence of UCNP is restored. At the same time, hairpin DNA1 (H2) can combine with H1 to replace the miRNA-155 that is bound to H1 with the help of the opening stem ring structure of H1, and the replaced miRNA-155 can continue to react with H1 to amplify the fluorescence signal. Under the optimal experimental conditions, the linear range of miRNA-155 is 0.01–3 nM, with a detection limit of 1.14 pM. Furthermore, the constructed biosensor has been applied to determine miRNA-155 in serum samples, and the spiked recoveries range from 99.8% to 104.8%, which indicates that the developed assay has potential applications in monitoring allergic rhinitis or other miRNA related diseases.

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基于聚磺酸盐涂层的近红外DNA生物传感器用于微rna的灵敏检测。
MicroRNAs (miRNAs)在变应性鼻炎(AR)过程中调控免疫细胞分化和免疫应答中起着至关重要的作用。研究表明,miRNA-155在AR发病过程中显著上调。因此,miRNA-155可作为AR诊断的生物标志物。尽管基于上转换纳米粒子(UCNPs)的荧光生物传感器在检测mirna方面取得了重大进展,但开发具有聚合物涂层、高效表面钝化和DNA功能化的UCNPs用于生物介质中的混合传感仍然具有挑战性。本文通过磺胺键修饰发夹DNA1 (H1)在UCNPs上形成薄聚磺酸层,并通过H1携带BHQ3的荧光共振能量转移(FRET)过程淬灭UCNPs的荧光。当目标miRNA-155存在时,H1的发夹结构被打开,使BHQ3离开UCNP表面,UCNP的荧光恢复。同时,发夹DNA1 (H2)可以借助H1的开茎环结构与H1结合,取代与H1结合的miRNA-155,被取代的miRNA-155可以继续与H1反应,放大荧光信号。在最佳实验条件下,miRNA-155的线性范围为0.01 ~ 3 nM,检出限为1.14 pM。此外,构建的生物传感器已应用于血清样品中miRNA-155的检测,加标回收率为99.8% ~ 104.8%,表明该方法在变应性鼻炎或其他miRNA相关疾病的监测中具有潜在的应用前景。
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来源期刊
Nanoscale Advances
Nanoscale Advances Multiple-
CiteScore
8.00
自引率
2.10%
发文量
461
审稿时长
9 weeks
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