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A sensitive detection assay based on signal amplification technology for Alzheimer's disease's early biomarker in exosome

机译:基于Alzheimer疾病早期生物标志物的信号放大技术的敏感检测测定

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摘要

Alzheimer's disease (AD) considered as the third health "killer" has seriously threatened the health of the elderly. However, the modern diagnostic strategies of AD present several disadvantages: the low accuracy and specificity resulting in some false-negative diagnoses, and the poor sensitivity leading to a delayed treatment. In view of this situation, a enzyme-free and target-triggered signal amplification strategy, based on graphene oxide (GO) and entropy-driven strand displacement reaction (ESDR) principle, was proposed. In this strategy, when the hairpin structure probes (H)specially binds with betaamyloid-(1-42) oligomers (A beta 42 oligomers), it's structure will be opened, causing the bases complementary to FAM-labeled replacement probes R (R1 and R2) exposed. At this time, R1 and R2 will hybridize with H, resulting in the bound A beta 42 oligomers released. The released A beta 42 oligomers would participate in the next cycle reaction, making the signal amplified. As a quencher, GO could absorb the free single-stranded DNA R1 and R2 and quench their fluorescence; however, the DNA duplex still exists free and keeps its signal-on. Through the detection of A beta 42 oligomers in exosomes, this ultrasensitive detection method with the advantages of low limit of detection (LOD, 20 pM), great accuracy, excellent precision and convenience provides an excellent prospect for AD's early diagnosis. (C) 2018 Elsevier B.V. All rights reserved.
机译:阿尔茨海默氏病(广告)被认为是第三次健康“杀手”严重威胁着老年人的健康。然而,广告的现代诊断策略存在若干缺点:低精度和特异性导致一些假阴性诊断,敏感性差导致延迟治疗。鉴于这种情况,提出了一种基于石墨烯氧化物(GO)和熵驱动的链位移反应(ESDR)原理的酶和目标触发的信号放大策略。在该策略中,当发夹结构探针(H)与β-烷基化 - (1-42)的低聚物(β22低聚物)特别结合时,将打开结构,使碱互补的FAM标记的替代探针R(R1和R2)暴露。此时,R1和R 2将与H杂交,导致释放的β22220的结合。释放的β22寡聚体将参与下一个循环反应,使得信号放大。作为猝灭剂,GO可以吸收自由单链DNA R1和R2并淬灭它们的荧光;但是,DNA双工仍然存在自由并保持其信号。通过检测到外来体中的β22寡聚体,这种超敏检测方法具有低限制(LOD,20 PM),高精度,优异的精度和便利性的优点,为广告的早期诊断提供了出色的前景。 (c)2018 Elsevier B.v.保留所有权利。

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