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银涂层移液器的单细胞分析:结合 SERS 和 SICM 技术。

Single-Cell Analysis with Silver-Coated Pipette by Combined SERS and SICM.

机构信息

Institute of Advanced Materials and Technologies, National Research University of Electronic Technology, 124498 Moscow, Russia.

Research Laboratory of Biophysics, National University of Science and Technology "MISIS" (MISIS), 119049 Moscow, Russia.

出版信息

Cells. 2023 Oct 25;12(21):2521. doi: 10.3390/cells12212521.

Abstract

The study of individual cell processes that occur both on their surface and inside is highly interesting for the development of new medical drugs, cytology and cell technologies. This work presents an original technique for fabricating the silver-coated pipette and its use for the cell analysis by combination with surface-enhanced Raman spectroscopy (SERS) and scanning ion-conducting microscopy (SICM). Unlike the majority of other designs, the pipette opening in our case remains uncovered, which is important for SICM. SERS-active Ag nanoparticles on the pipette surface are formed by vacuum-thermal evaporation followed by annealing. An array of nanoparticles had a diameter on the order of 36 nm and spacing of 12 nm. A two-particle model based on Laplace equations is used to calculate a theoretical enhancement factor (EF). The surface morphology of the samples is investigated by scanning electron microscopy while SICM is used to reveal the surface topography, to evaluate Young's modulus of living cells and to control an injection of the SERS-active pipettes into them. A Raman microscope-spectrometer was used to collect characteristic SERS spectra of cells and cell components. Local Raman spectra were obtained from the cytoplasm and nucleus of the same HEK-293 cancer cell. The EF of the SERS-active pipette was 7 × 10. As a result, we demonstrate utilizing the silver-coated pipette for both the SICM study and the molecular composition analysis of cytoplasm and the nucleus of living cells by SERS. The probe localization in cells is successfully achieved.

摘要

研究单个细胞在其表面和内部发生的过程对于开发新的医学药物、细胞学和细胞技术非常有意义。这项工作提出了一种制造镀银微吸管的原创技术,并将其与表面增强拉曼光谱(SERS)和扫描离子导电流体显微镜(SICM)结合用于细胞分析。与大多数其他设计不同,我们的微吸管开口在这种情况下仍然没有被覆盖,这对于 SICM 很重要。微吸管表面上的 SERS 活性 Ag 纳米粒子是通过真空热蒸发 followed by annealing 形成的。纳米粒子阵列的直径约为 36nm,间距为 12nm。基于拉普拉斯方程的双粒子模型用于计算理论增强因子(EF)。通过扫描电子显微镜研究样品的表面形态,同时使用 SICM 揭示表面形貌,评估活细胞的杨氏模量并控制 SERS 活性微吸管注入其中。拉曼显微镜-光谱仪用于收集细胞和细胞成分的特征 SERS 光谱。从相同的 HEK-293 癌细胞的细胞质和细胞核中获得了局部拉曼光谱。SERS 活性微吸管的 EF 为 7×10。因此,我们展示了利用镀银微吸管进行 SICM 研究以及通过 SERS 对细胞质和活细胞细胞核的分子组成分析。成功实现了探针在细胞中的定位。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dc6d/10650894/93c82f81311d/cells-12-02521-g001.jpg

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