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基于银-金纳米花的新型比率型表面增强拉曼散射(SERS)生物传感器用于肝细胞癌细胞中人羧酸酯酶-1 的超灵敏定量监测

Novel Ratiometric Surface-Enhanced Raman Scattering (SERS) Biosensor for Ultrasensitive Quantitative Monitoring of Human Carboxylesterase-1 in Hepatocellular Carcinoma Cells Using Ag-Au Nanoflowers as SERS Substrate.

机构信息

Guangxi Key Laboratory of Green Processing of Sugar Resources, Department of Medicine, College of Biological and Chemical Engineering, Guangxi University of Science and Technology, Liuzhou 545006, Guangxi, P. R. China.

Provine and Ministry Co-Sponsored Collaborative Innovation Center of Sugarcane and Sugar Industry, Nanning 530004, Guangxi, P. R. China.

出版信息

Anal Chem. 2024 Nov 19;96(46):18555-18563. doi: 10.1021/acs.analchem.4c04763. Epub 2024 Nov 5.

DOI:10.1021/acs.analchem.4c04763
PMID:39498661
Abstract

In this study, we developed ratiometric surface-enhanced Raman scattering (SERS) biosensors using Ag-Au alloy nanoflowers as SERS substrates, molecules having amide bonds and alkyne groups (Tag A) as Raman reporters, and sodium thiocyanate as an internal standard molecule (Tag B) for the sensitive detection of human carboxylesterase-1 (hCE1) in HepG-2 cells. The correlation between HepG-2 cell damage and hCE1 activity levels was investigated. Both Tag A's alkyne group and Tag B's cyanide group produced characteristic SERS signals in the Raman-silent region ( and , respectively). The hydrolysis of the amide bond in Tag A via hCE1 and the shedding of the alkyne group led to a reduction in the SERS signal intensity observed at . Conversely, the SERS signal intensity of Tag B at exhibited a consistent pattern. As the activity level of hCE1 and the ratiometric peak intensity (/) correlated negatively, hCE1 could be quantitatively detected within the range of 10 to 2 × 10 ng·mL, with a detection limit of 7.3 pg·mL. The ratiometric SERS probe strategy, in which a ratio response is employed, permits sensitive and reproducible SERS detection by facilitating intrinsic calibration to rectify signal fluctuations resulting from temporal and spatial variations in the detection conditions. Concurrently, the implementation of Raman-silent region reporter molecules mitigates the interference from endogenous biomolecules in SERS measurements and offers a novel approach for achieving highly sensitive and interference-free detection of intracellular hCE1.

摘要

在这项研究中,我们开发了比率型表面增强拉曼散射(SERS)生物传感器,使用 Ag-Au 合金纳米花作为 SERS 基底,具有酰胺键和炔基的分子(Tag A)作为拉曼报告分子,以及硫氰酸钠作为内部标准分子(Tag B),用于敏感检测 HepG-2 细胞中的人羧酸酯酶-1(hCE1)。研究了 HepG-2 细胞损伤与 hCE1 活性水平之间的相关性。Tag A 的炔基和 Tag B 的氰基在拉曼静默区(分别为和)产生了特征 SERS 信号。通过 hCE1 水解 Tag A 的酰胺键并脱落炔基,导致在观察到的强度降低。相反,Tag B 在处的 SERS 信号强度呈现一致的模式。由于 hCE1 的活性水平与比率峰强度(/)呈负相关,因此可以在 10 到 2×10ng·mL 的范围内定量检测 hCE1,检测限为 7.3pg·mL。比率型 SERS 探针策略采用比率响应,通过促进固有校准来纠正检测条件的时间和空间变化引起的信号波动,从而实现灵敏且可重复的 SERS 检测。同时,使用拉曼静默区报告分子实施可以减轻 SERS 测量中内源性生物分子的干扰,并为实现细胞内 hCE1 的高灵敏度和无干扰检测提供了一种新方法。

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