Single Cell Electrochemiluminescence Imaging: From the Proof-of-Concept to Disposable Device-Based Analysis

被引:236
作者
Valenti, Giovanni [1 ]
Scarabino, Sabina [2 ]
Goudeau, Bertrand [2 ]
Lesch, Andreas [3 ]
Jovic, Milica [3 ]
Villani, Elena [1 ]
Sentic, Milica [2 ]
Rapino, Stefania [1 ]
Arbault, Stephane [2 ]
Paolucci, Francesco [1 ,4 ]
Sojic, Neso [2 ]
机构
[1] Univ Bologna, Dept Chem G Ciamician, Via Selmi 2, I-40126 Bologna, Italy
[2] Univ Bordeaux, CNRS, ISM, Bordeaux INP,UMR 5255, F-33607 Pessac, France
[3] EPFL Valais Wallis, Lab Phys & Analyt Electrochem, Rue Ind 17,CP 440, CH-1951 Sion, Switzerland
[4] Univ Bologna, ICMATE, CNR, Bologna Associate Unit, Via Selmi 2, I-40126 Bologna, Italy
关键词
SCANNING ELECTROCHEMICAL MICROSCOPY; CANCER BIOMARKER PROTEINS; ELECTROGENERATED CHEMILUMINESCENCE; LIVING CELLS; CARBON NANOTUBES; MAMMALIAN-CELLS; BIOLUMINESCENCE; SURFACE; ELECTRODE; GRAPHENE;
D O I
10.1021/jacs.7b09260
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
We report here the development of coreactant-based electrogenerated chemiluminescence (ECL) as a surface-confined microscopy to image single cells and their membrane proteins. Labeling the entire cell membrane allows one to demonstrate that, by contrast with fluorescence, ECL emission is only detected from fluorophores located in the immediate vicinity of the electrode surface (i.e., 1-2 mu m). Then, to present the potential diagnostic applications of. our approach, we selected carbon nanotubes (CNT)-based inkjet-printed disposable electrodes for the direct ECL imaging of a labeled plasma receptor overexpressed on tumor cells. The ECL fluorophore was linked to an antibody and enabled to localize the ECL generation on the cancer cell membrane in close proximity to the electrode surface. Such a result is intrinsically associated with the unique ECL mechanism and is rationalized by considering the limited lifetimes of the electrogenerated coreactant radicals. The electrochemical stimulus used for luminescence generation does not suffer from background signals, such as the typical autofluorescence of biological samples. The presented surface-confined ECL microscopy should find promising applications in ultrasensitive single cell imaging assays.
引用
收藏
页码:16830 / 16837
页数:8
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