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首页> 外文期刊>Analytica chimica acta >Ratiometric fluorescence transduction by hybridization after isothermal amplification for determination of zeptomole quantities of oligonucleotide biomarkers with a paper-based platform and camera-based detection
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Ratiometric fluorescence transduction by hybridization after isothermal amplification for determination of zeptomole quantities of oligonucleotide biomarkers with a paper-based platform and camera-based detection

机译:等温扩增后通过杂交进行比例荧光转导,以基于纸的平台和基于相机的检测方法确定寡核苷酸生物标志物的分子量

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Paper is a promising platform for the development of decentralized diagnostic assays owing to the low cost and ease of use of paper-based analytical devices (PADs). It can be challenging to detect on PADs very low concentrations of nucleic acid biomarkers of lengths as used in clinical assays. Herein we report the use of thermophilic helicase-dependent amplification (tHDA) in combination with a paper-based platform for fluorescence detection of probe-target hybridization. Paper substrates were patterned using wax printing. The cellulosic fibers were chemically derivatized with imidazole groups for the assembly of the transduction interface that consisted of immobilized quantum dot (QD)-probe oligonucleotide conjugates. Green-emitting QDs (gQDs) served as donors with Cy3 as the acceptor dye in a fluorescence resonance energy transfer (FRET)-based transduction method. After probe-target hybridization, a further hybridization event with a reporter sequence brought the Cy3 acceptor dye in close proximity to the surface of immobilized gQDs, triggering a FRET sensitized emission that served as an analytical signal. Ratiometric detection was evaluated using both an epifluorescence microscope and a low-cost iPad camera as detectors. Addition of the tHDA method for target amplification to produce sequences of similar to 100 base length allowed for the detection of zmol quantities of nucleic acid targets using the two detection platforms. The ratiometric QD-FRET transduction method not only offered improved assay precision, but also lowered the limit of detection of the assay when compared with the non-ratiometric QD-FRET transduction method. The selectivity of the hybridization assays was demonstrated by the detection of single nucleotide polymorphism. (C)2015 Elsevier B.V. All rights reserved.
机译:由于成本低廉且易于使用纸质分析设备(PAD),因此Paper是用于开发分散式诊断分析的有前途的平台。在PAD上检测临床试验中使用的长度很低浓度的核酸生物标志物可能具有挑战性。在本文中,我们报告使用嗜热解旋酶依赖性扩增(tHDA)与基于纸张的平台相结合,用于探针-靶标杂交的荧光检测。使用蜡印刷将纸基材图案化。纤维素纤维用咪唑基化学衍生化,用于组装由固定量子点(QD)-探针寡核苷酸缀合物组成的转导界面。在基于荧光共振能量转移(FRET)的转导方法中,发射绿色光的量子点(gQDs)以Cy3为受体染料充当供体。探针-靶标杂交后,与报告序列的进一步杂交事件使Cy3受体染料与固定化gQD的表面非常接近,从而触发了FRET敏化发射,该发射用作分析信号。使用落射荧光显微镜和低成本iPad相机作为检测器评估比率检测。添加tHDA方法用于靶标扩增以产生类似于100个碱基长度的序列,从而允许使用两个检测平台检测zmol量的核酸靶标。与非比例QD-FRET转导方法相比,比例QD-FRET转导方法不仅提供了更高的测定精度,而且降低了检测的检测限。通过检测单核苷酸多态性证明了杂交测定的选择性。 (C)2015 Elsevier B.V.保留所有权利。

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