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具有优异表面增强拉曼散射灵敏度和稳定性的非晶态氮掺杂碳纳米笼用于肿瘤细胞的准确识别

Amorphous Nitrogen-Doped Carbon Nanocages with Excellent SERS Sensitivity and Stability for Accurate Identification of Tumor Cells.

作者信息

Lin Jie, Zhang Dinghu, Yu Jian, Pan Ting, Wu Xiaoxia, Chen Tianxiang, Gao Changyong, Chen Chao, Wang Xiaotian, Wu Aiguo

机构信息

Cixi Institute of Biomedical Engineering, International Cooperation Base of Biomedical Materials Technology and Application, Chinese Academy of Science (CAS) Key Laboratory of Magnetic Materials and Devices and Zhejiang Engineering Research Center for Biomedical Materials, Ningbo Institute of Materials Technology and Engineering, CAS, Ningbo315201, People's Republic of China.

Advanced Energy Science and Technology Guangdong Laboratory, Huizhou516000, People's Republic of China.

出版信息

Anal Chem. 2023 Mar 14;95(10):4671-4681. doi: 10.1021/acs.analchem.2c05272. Epub 2023 Feb 3.

Abstract

The surface-enhanced Raman scattering (SERS) bioprobe's strategy for identifying tumor cells always depended on the intensity difference of the Raman signal compared with that of normal cells. Hence, exploring novel SERS nanostructure with excellent spectra stability, a high enhancement factor (EF), and good biocompatibility is a primary premise for boosting SERS signal reliability and accuracy of tumor cells. Here, high SERS EF (5.52 × 10) is acquired by developing novel amorphous nitrogen-doped carbon (NDC) nanocages (NCs), whose EF value was in a leading position among carbon-based SERS substrates. In addition, a uniform SERS signal was obtained on NDC NCs due to homogeneous morphology and size. The delocalized carbon-conjugated systems of graphitic-N, pyrrole-N, and pyridine-N with lone pair electrons increase the electronic density of states and reduce the electron localization function of NDC NCs, thereby promoting the charge transfer process. The electron-donor platform of the NDC NCs facilitates the thermodynamic process of charge transfer, resulting in multimode vibrational coupling in the surface complexes, which greatly amplifies the molecular polarizability. Importantly, the good biocompatibility and signal stability endow these NDC NC SERS bioprobes unique superiority in distinguishing tumor cells, and quantitative recognition of two triple-negative breast cancer cells based on SERS detection mode has been successfully realized.

摘要

表面增强拉曼散射(SERS)生物探针识别肿瘤细胞的策略一直依赖于与正常细胞相比拉曼信号的强度差异。因此,探索具有优异光谱稳定性、高增强因子(EF)和良好生物相容性的新型SERS纳米结构是提高肿瘤细胞SERS信号可靠性和准确性的首要前提。在此,通过开发新型非晶态氮掺杂碳(NDC)纳米笼(NCs)获得了高SERS增强因子(5.52×10),其增强因子值在碳基SERS基底中处于领先地位。此外,由于形态和尺寸均匀,在NDC NCs上获得了均匀的SERS信号。具有孤对电子的石墨氮、吡咯氮和吡啶氮的离域碳共轭体系增加了态密度电子,并降低了NDC NCs的电子定位函数,从而促进了电荷转移过程。NDC NCs的电子供体平台促进了电荷转移的热力学过程,导致表面络合物中的多模振动耦合,极大地放大了分子极化率。重要的是,良好的生物相容性和信号稳定性赋予这些NDC NC SERS生物探针在区分肿瘤细胞方面独特的优势,并且基于SERS检测模式成功实现了对两种三阴性乳腺癌细胞的定量识别。

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