Department of Chemistry, University of Kurdistan, Sanandaj, 66177-15175, Iran.
Charmo Research Center, Charmo University, Peshawa Street, 46023 Chamchamal, Sulaimani, Kurdistan Region, Iraq.
Mikrochim Acta. 2019 Jun 25;186(7):469. doi: 10.1007/s00604-019-3446-1.
An ultrasensitive and highly reliable ratiometric assay is described for the determination of microRNA-155. It works at the attomolar concentration level and has high selectivity which warrants its potential application in cancer biomarker tracking. The excellent performance of this method results from (a) the use of a hybrid conjugate prepared from Rhodamine B (RhB), carbon dots (CDs) and probe-microRNA, and (b) from the measurement of fluorescence resonance energy transfer (FRET) that is observed in the AuNP/target-microRNA system as a result of RNA hybridization. The dye RhB (emission peak at 580 nm) serves as an internal reference. The sensitivity of this assay is increased by about 30% because of the broad emissions of CDs (489 nm and 665 nm) through a sequential FRET phenomenon. RhB-CDs were covalently bio-conjugated to probe microRNA. In the presence of AuNPs, the fluorescence of the CDs is quenched, while in the presence of microRNA-155, the ratio of fluorescences at 489 and 665 nm (I/I) is enhanced again. A linear relationship exists between the ratio of fluorescence and the concentration of microRNA-155 in the range from 1 aM to 0.1 μM, and the detection limit is 0.3 aM. The assay was applied to quantitative studies of target microRNA-155 in multiple pathways associated with cancer progression in biological fluids include human serum samples and cancer cells. The nanoprobe also deliver clear signal to microRNA target in fixed and lived MDA-MB-231 cells. Graphical abstract A ratiometric FRET sensing method used for microRNA-155 detection at aM concentration level using CDs and AuNPs as donor-acceptor respectively and Rhodamine B as amplification reagent. The application of assay for imaging of microRNA-155 in fixed and live MDA-MB-231 cells is demonstrated.
一种超灵敏且高度可靠的比率测定法,用于测定 microRNA-155。它在飞摩尔浓度水平下工作,具有高度选择性,保证了其在癌症生物标志物跟踪方面的潜在应用。该方法的优异性能源于(a)使用由罗丹明 B(RhB)、碳点(CDs)和探针 microRNA 制备的杂交缀合物,以及(b)由于在 AuNP/靶标 microRNA 系统中观察到荧光共振能量转移(FRET),这是由于 RNA 杂交。染料 RhB(发射峰在 580nm 处)用作内参。由于通过顺序 FRET 现象,CDs(489nm 和 665nm)的宽发射增加了约 30%,从而提高了该测定的灵敏度。RhB-CDs 通过共价生物缀合到探针 microRNA 上。在 AuNPs 的存在下,CDs 的荧光被猝灭,而在 microRNA-155 的存在下,489nm 和 665nm 处的荧光强度比(I/I)再次增强。荧光强度比与 microRNA-155 浓度之间存在线性关系,在 1 aM 至 0.1μM 的范围内,检测限为 0.3 aM。该测定法已应用于生物体液中与癌症进展相关的多个途径中靶标 microRNA-155 的定量研究,包括人血清样本和癌细胞。纳米探针还在固定和活 MDA-MB-231 细胞中为 microRNA 靶标提供清晰信号。
图表摘要 使用 CDs 和 AuNPs 分别作为供体-受体,以及 Rhodamine B 作为放大试剂,用于在飞摩尔浓度水平检测 microRNA-155 的比率 FRET 传感方法。该测定法在固定和活 MDA-MB-231 细胞中对 microRNA-155 成像的应用得到了证明。