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基于光谱图像对比的流数字纳米等离子体计量术用于超灵敏抗体检测。

Spectral image contrast-based flow digital nanoplasmon-metry for ultrasensitive antibody detection.

机构信息

Research Center for Applied Sciences, Academia Sinica, Taipei, 11529, Taiwan.

Institute of Applied Mechanics, National Taiwan University, Taipei, 11221, Taiwan.

出版信息

J Nanobiotechnology. 2022 Jan 4;20(1):6. doi: 10.1186/s12951-021-01188-6.

Abstract

BACKGROUND

Gold nanoparticles (AuNPs) have been widely used in local surface plasmon resonance (LSPR) immunoassays for biomolecule sensing, which is primarily based on two conventional methods: absorption spectra analysis and colorimetry. The low figure of merit (FoM) of the LSPR and high-concentration AuNP requirement restrict their limit of detection (LOD), which is approximately ng to μg mL in antibody detection if there is no other signal or analyte amplification. Improvements in sensitivity have been slow in recent for a long time, and pushing the boundary of the current LOD is a great challenge of current LSPR immunoassays in biosensing.

RESULTS

In this work, we developed spectral image contrast-based flow digital nanoplasmon-metry (Flow DiNM) to push the LOD boundary. Comparing the scattering image brightness of AuNPs in two neighboring wavelength bands near the LSPR peak, the peak shift signal is strongly amplified and quickly detected. Introducing digital analysis, the Flow DiNM provides an ultrahigh signal-to-noise ratio and has a lower sample volume requirement. Compared to the conventional analog LSPR immunoassay, Flow DiNM for anti-BSA detection in pure samples has an LOD as low as 1 pg mL within only a 15-min detection time and 500 μL sample volume. Antibody assays against spike proteins of SARS-CoV-2 in artificial saliva that contained various proteins were also conducted to validate the detection of Flow DiNM in complicated samples. Flow DiNM shows significant discrimination in detection with an LOD of 10 pg mL and a broad dynamic detection range of five orders of magnitude.

CONCLUSION

Together with the quick readout time and simple operation, this work clearly demonstrated the high sensitivity and selectivity of the developed Flow DiNM in rapid antibody detection. Spectral image contrast and digital analysis further provide a new generation of LSPR immunoassay with AuNPs.

摘要

背景

金纳米粒子(AuNPs)已广泛应用于局部表面等离子体共振(LSPR)免疫分析中的生物分子传感,主要基于两种常规方法:吸收光谱分析和比色法。由于 LSPR 的低品质因数(FoM)和高浓度 AuNP 的要求,限制了其检测限(LOD),如果没有其他信号或分析物放大,在抗体检测中,其 LOD 约为 ng 到 μg·mL。在很长一段时间内,灵敏度的提高一直很缓慢,推动当前 LSPR 免疫分析在生物传感中的 LOD 边界是一个巨大的挑战。

结果

在这项工作中,我们开发了基于光谱图像对比的流动数字纳米等离子体测量法(Flow DiNM)以推动 LOD 边界。通过比较 LSPR 峰附近两个相邻波长带中 AuNPs 的散射图像亮度,强烈放大了峰位移信号,并快速检测到该信号。引入数字分析后,Flow DiNM 提供了超高的信噪比,并且对样品体积的要求较低。与传统的模拟 LSPR 免疫分析相比,Flow DiNM 仅在 15 分钟的检测时间和 500 μL 样品体积内,用于检测纯样品中的抗 BSA,其检测限(LOD)低至 1 pg·mL。我们还在含有各种蛋白质的人工唾液中针对 SARS-CoV-2 的刺突蛋白进行了抗体检测,以验证 Flow DiNM 在复杂样品中的检测能力。Flow DiNM 在检测中具有明显的区分能力,其检测限(LOD)为 10 pg·mL,动态检测范围宽达五个数量级。

结论

结合快速读取时间和简单的操作,这项工作清楚地证明了所开发的 Flow DiNM 在快速抗体检测中的高灵敏度和选择性。光谱图像对比和数字分析进一步为基于 AuNPs 的新一代 LSPR 免疫分析提供了新方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0203/8725392/8f3eaee20398/12951_2021_1188_Fig1_HTML.jpg

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