Development of highly sensitive dual-enhanced fluorescence quenching immunochromatographic test strips based on Pt nanoprobes

IF 10.7 1区 生物学 Q1 BIOPHYSICS Biosensors and Bioelectronics Pub Date : 2024-03-06 DOI:10.1016/j.bios.2024.116195
Jiashuo Xu , Shuang Zhao , Qiuting Zhang , Xu Huang , Kang Du , Jinzhi Wang , Jiaxun Wang , Cheng Chen , Bingbo Zhang , Jin Chang , Xiaoqun Gong
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Abstract

The fluorescence-quenching method is crucial in vitro analysis, particularly for immunochromatographic test strips (ICTs) using noble metal nanoparticles as probes. However, ICTs still fall short in meeting the requirements for the detection of traces biomarkers due to the noble metal nanoparticles can only quench fluorescence of the dyes within a confined distance. Interestingly, noble metal nanoparticles, such as Pt NPs cannot only perform fluorescence-quenching ability based on the Förster resonance energy transfer (FRET), but also show perfect oxidase-like catalytic performance on many kinds of substrates, such as 3,3’,5,5’ -tetramethylbenzidine (TMB). We observed that the oxTMB (the oxidation products of TMB) exhibited notable effectiveness in quenching Cy5 fluorescence by the strong inner filter effect (IFE), which obviously improved the fluorescence-quenching efficiency with extremely low background signal. Through the dual-enhanced fluorescence quenching mechanism, the fluorescence quenching constant (Kn) was 661.24-fold that of only Pt NPs on the NC membrane. To validate the feasibility of this technique, we employed two types of biomarkers, namely microRNA (miR-15a-5p) and the signature protein (PSA). The sensitivity of miR-15a-5p was 9.286 × 10−18 mol/L and 17.5-fold more than that based on Pt NPs. As for the PSA, the LOD (0.6265 pg/mL) was 15.5-fold enhancement more sensitive after catalysis. Overall, the dual-enhanced fluorescence quenching rFICTs could act as a practical detection for biomarker in real samples.

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基于铂纳米探针的高灵敏度双增强荧光淬灭免疫层析试纸条的开发
荧光淬灭法在体外分析中至关重要,特别是对于使用贵金属纳米颗粒作为探针的免疫层析试纸(ICTs)而言。然而,由于贵金属纳米颗粒只能在限定距离内淬灭染料的荧光,因此免疫层析试纸仍无法满足痕量生物标记物的检测要求。有趣的是,贵金属纳米粒子(如铂纳米粒子)不仅具有基于佛斯特共振能量转移(FRET)的荧光淬灭能力,而且对多种底物(如 3,3',5,5'-四甲基联苯胺(TMB))具有类似氧化酶的完美催化性能。我们观察到,oxTMB(TMB 的氧化产物)在强烈的内滤波效应(IFE)作用下淬灭 Cy5 荧光的效果显著,明显提高了荧光淬灭效率,背景信号极低。通过双重增强的荧光淬灭机制,NC 膜上的荧光淬灭常数(Kn)是仅铂氮粒子的 661.24 倍。为了验证该技术的可行性,我们采用了两种生物标记物,即微小RNA(miR-15a-5p)和标志蛋白(PSA)。miR-15a-5p 的灵敏度为 9.286 × 10 mol/L,是基于铂氮氧化物的灵敏度的 17.5 倍。至于 PSA,催化后的 LOD(0.6265 pg/mL)灵敏度提高了 15.5 倍。总之,双增强荧光淬灭 rFICTs 可作为实际样品中生物标记物的实用检测方法。
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来源期刊
Biosensors and Bioelectronics
Biosensors and Bioelectronics 工程技术-电化学
CiteScore
20.80
自引率
7.10%
发文量
1006
审稿时长
29 days
期刊介绍: Biosensors & Bioelectronics, along with its open access companion journal Biosensors & Bioelectronics: X, is the leading international publication in the field of biosensors and bioelectronics. It covers research, design, development, and application of biosensors, which are analytical devices incorporating biological materials with physicochemical transducers. These devices, including sensors, DNA chips, electronic noses, and lab-on-a-chip, produce digital signals proportional to specific analytes. Examples include immunosensors and enzyme-based biosensors, applied in various fields such as medicine, environmental monitoring, and food industry. The journal also focuses on molecular and supramolecular structures for enhancing device performance.
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