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用于生物传感的动力学捕获表面增强拉曼散射活性聚集体

Kinetically Arrested SERS-Active Aggregates for Biosensing.

作者信息

Potter Natalie S, Sokołowski Kamil, Sala Renata Lang, McCune Jade A, Scherman Oren A

机构信息

Melville Laboratory for Polymer Synthesis, Yusuf Hamied Department of Chemistry, University of Cambridge, Lensfield Road, Cambridge, CB2 1EW, UK.

出版信息

Chemistry. 2025 Jul 8;31(38):e202500915. doi: 10.1002/chem.202500915. Epub 2025 Jun 17.

Abstract

There is great demand for biosensors capable of long-term, non-invasive monitoring of low analyte concentrations in various biofluids for diagnostics, personalized healthcare, and disease monitoring. However, biofluids present several challenges to biosensor sensing and stability on account of their complex composition and dynamic nature. Surface-enhanced Raman spectroscopy (SERS) offers ultra-high sensitivity, non-destructive, real-time monitoring, and non-invasive detection, ideal for sensing in complex media. Plasmonic gold nanoparticle (AuNP) SERS-active assemblies have been widely explored owning to their biocompatibility and tunable sensitivity based on AuNP morphology. Here, we employ thiolated poly(ethylene glycol) (PEG-SH) to produce kinetically trapped metastable AuNP:cucurbit[7]uril (CB[7]) aggregates containing robust nanogaps (ca. 1 nm), which have previously displayed strong, reproducible SERS signals at low concentrations. The AuNP:CB[7]:PEG aggregates maintain strong SERS-activity, demonstrating low concentration detection of a model Raman reporter and a bioanalyte in a range of biofluids. Moreover, the aggregates are highly tunable through facile modification of the PEG-SH chain length and grafting density and possess an encoded disassembly mechanism within their design highlighting the potential application of these aggregates for non-invasive in vivo long-term monitoring alongside future customized SERS biosensing applications.

摘要

对于能够对各种生物流体中的低分析物浓度进行长期、非侵入性监测以用于诊断、个性化医疗保健和疾病监测的生物传感器,存在着巨大的需求。然而,由于生物流体的复杂组成和动态性质,它们给生物传感器的传感和稳定性带来了若干挑战。表面增强拉曼光谱(SERS)提供了超高灵敏度、无损、实时监测和非侵入性检测,非常适合在复杂介质中进行传感。基于等离子体金纳米颗粒(AuNP)的形态,具有生物相容性和可调灵敏度的等离子体金纳米颗粒SERS活性组装体已得到广泛研究。在这里,我们使用硫醇化聚乙二醇(PEG-SH)来制备动力学捕获的亚稳AuNP:葫芦[7]脲(CB[7])聚集体,其中包含坚固的纳米间隙(约1纳米),这些聚集体先前在低浓度下已显示出强的、可重现的SERS信号。AuNP:CB[7]:PEG聚集体保持了很强的SERS活性,证明了在一系列生物流体中对模型拉曼报告分子和生物分析物的低浓度检测。此外,通过轻松修改PEG-SH链长度和接枝密度,这些聚集体具有高度可调性,并且在其设计中具有编码的拆解机制,突出了这些聚集体在非侵入性体内长期监测以及未来定制SERS生物传感应用中的潜在应用。

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