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具有表面等离子体共振和电荷转移协同效应的高亲和力 FeO/Au 探针,可提高生物流体中多巴胺的 SERS 传感性能。

High-affinity FeO/Au probe with synergetic effect of surface plasmon resonance and charge transfer enabling improved SERS sensing of dopamine in biofluids.

机构信息

Center of medical physics and technology, Hefei institutes of physical science, CAS, Hefei 230021, China.

出版信息

Analyst. 2019 Aug 7;144(15):4526-4533. doi: 10.1039/c9an00665f. Epub 2019 Jun 27.

DOI:10.1039/c9an00665f
PMID:31243397
Abstract

Development of analytical methods allowing sensitive detection of neurotransmitters in various biofluids is vital. However, limitations of these methods include interference of impurities and stringent requirements concerning sample purity. In the current work, we developed a strategy for the rapid and sensitive analysis of dopamine (DA) in various biofluids with a smart surface-enhanced Raman spectroscopy (SERS) probe composed of magnetite FeO and Au nanoparticles (FeO/Au NPs). Besides the simple and quick separation of DA from the specimen, FeO not only enabled a specific chemical interaction with DA molecules, but also acted as a SERS substrate capable of electromagnetically enhancing the Raman signal of DA. Therefore, the FeO/Au NP composite with its coexisting electric-field effect and charger transfer (CT) enhancement was found to be beneficial for capturing the target molecules in biological environments and then enhancing the DA sensitivity. To understand the strong binding interaction between FeO/Au and DA, X-ray photoelectron spectroscopy (XPS) was carried out, specifically to illuminate the chemical adsorption or possible CT complex. Moreover, a rapid purification strategy for further separating DA from serum was developed, and thus a high nanometer-level sensitivity was achieved. In addition, the feasibility of using FeO/Au combined with the developed purification method was also verified using various tissue homogenates spiked with DA molecules. Such a nanocomposite can offer the possibility of efficiently separating DA from the complex specimen and then providing the sensitive detection of DA for various tissues. Accordingly, the smart SERS FeO/Au nanocomposite probe, with its advantages of simple pre-treatment and synergetic enhanced mechanisms, shows great promise for the rapid and sensitive detection of DA in complicated specimens.

摘要

开发能够在各种生物流体中灵敏检测神经递质的分析方法至关重要。然而,这些方法存在局限性,包括杂质干扰和对样品纯度的严格要求。在当前的工作中,我们开发了一种利用由磁铁矿 FeO 和金纳米粒子(FeO/Au NPs)组成的智能表面增强拉曼光谱(SERS)探针快速灵敏地分析各种生物流体中多巴胺(DA)的策略。除了从标本中快速简便地分离 DA 外,FeO 不仅能够与 DA 分子发生特定的化学相互作用,而且还可以作为 SERS 基底,能够对 DA 的拉曼信号进行电磁增强。因此,FeO/Au NP 复合材料及其共存的电场效应和电荷转移(CT)增强被发现有利于在生物环境中捕获目标分子,从而提高 DA 的灵敏度。为了理解 FeO/Au 与 DA 之间的强结合相互作用,进行了 X 射线光电子能谱(XPS)测试,特别是为了阐明化学吸附或可能的 CT 络合。此外,还开发了一种从血清中进一步分离 DA 的快速纯化策略,从而实现了高纳米级的灵敏度。此外,还验证了使用 FeO/Au 结合所开发的纯化方法结合使用各种组织匀浆物中加入 DA 分子的可行性。这种纳米复合材料可以有效地从复杂的标本中分离 DA,并为各种组织提供对 DA 的灵敏检测,从而提供了可能。因此,智能 SERS FeO/Au 纳米复合材料探针具有简单的预处理和协同增强机制的优势,有望实现对复杂样本中 DA 的快速灵敏检测。

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