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基于酶促级联反应的表面增强拉曼散射对唾液中与胃癌相关的 d-氨基酸的对映选择性检测。

Surface-Enhanced Raman Scattering Enantioselective Detection of Gastric Cancer-Related d-Amino Acids in Saliva Based on Enzyme-Mediated Cascade Reaction.

机构信息

The Education Ministry Key Lab of Resource Chemistry, College of Chemistry and Materials Science, Shanghai Normal University, Shanghai 200234, China.

Department of Gastric Surgery, Precision Cancer Medicine Center, Fudan University Shanghai Cancer Center, Shanghai 200032, China.

出版信息

Anal Chem. 2023 Sep 5;95(35):13029-13035. doi: 10.1021/acs.analchem.3c01030. Epub 2023 Aug 23.

Abstract

The unusual d-amino acids (d-AAs), as the counter enantiomer of usual l-amino acids (l-AAs), have evoked increasing attention because of their potential relevance with diseases. Accordingly, it is essential to establish sensitive and selective detection methods for d-AAs without the interferences from l-AAs. The surface-enhanced Raman scattering (SERS) technique is efficacious for the detection of molecules but routinely ineffective in enantiomeric differentiation. d-Proline (d-Pro) and d-alanine (d-Ala) are regarded as biomarkers of gastric cancer. Herein, Raman-active boronate modified SERS chips are constructed to develop a d-amino acid oxidase (DAAO)-mediated cascade reaction-based SERS enantioselective assay for d-Pro and d-Ala. The principle is that DAAO selectively catalyzes the deamination of d-Pro and d-Ala, and the produced HO oxidizes boronate to present a new SERS peak at 883 cm for quantitative analysis in a ratiometric way. A linear range from 20 to 400 μmol/L and a limit of detection down to 14.8 μmol/L are reached. In addition, interferences from l-AAs and many other possible species coexisting in biofluids with the detection of d-Pro and d-Ala are ignorable. Enzyme-mediated cascade reaction-based SERS chips are further utilized for saliva sample analysis, and the total levels of d-Pro and d-Ala in salivary samples from gastric cancer patients are much higher than those of healthy persons. This work provides a solution for SERS enantioselective analysis and noninvasive screening chiral biomolecules for disease diagnosis.

摘要

非天然 d-氨基酸(d-AAs)作为常见 l-氨基酸(l-AAs)的对映异构体,由于其与疾病的潜在相关性而引起了越来越多的关注。因此,建立灵敏、选择性检测 d-AAs 的方法是非常重要的,同时需要避免与 l-AAs 的干扰。表面增强拉曼散射(SERS)技术在检测分子方面非常有效,但在对映体分辨方面通常效果不佳。d-脯氨酸(d-Pro)和 d-丙氨酸(d-Ala)被认为是胃癌的生物标志物。本文构建了拉曼活性硼酸酯修饰的 SERS 芯片,开发了一种基于 d-氨基酸氧化酶(DAAO)介导的级联反应的 SERS 对映选择性测定法,用于检测 d-Pro 和 d-Ala。其原理是 DAAO 选择性地催化 d-Pro 和 d-Ala 的脱氨作用,产生的 HO 氧化硼酸酯,以 883cm-1 处的新 SERS 峰进行定量分析,呈相对比率方式。实现了 20 至 400μmol/L 的线性范围和低至 14.8μmol/L 的检测限。此外,l-AAs 以及生物流体中可能共存的其他多种物质的干扰与 d-Pro 和 d-Ala 的检测可以忽略不计。基于酶介导的级联反应的 SERS 芯片进一步用于唾液样本分析,胃癌患者唾液样本中的 d-Pro 和 d-Ala 总水平明显高于健康人。这项工作为 SERS 对映体选择性分析以及用于疾病诊断的非侵入性筛选手性生物分子提供了一种解决方案。

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