Lysosomes Initiating and DNAzyme-Assisted Intracellular Signal Amplification Strategy for Quantification of Alpha-Fetoprotein in a Single Cell.
Shengyu ChenJingjin ZhaoChunhuan XuBingfang ShiJiayao XuShengqiang HuShu-Lin ZhaoPublished in: Analytical chemistry (2023)
Cellular trace proteins are critical for maintaining normal cell functions, with their quantitative analysis in individual cells aiding our understanding of the role of cell proteins in biological processes. This study proposes a strategy for the quantitative analysis of alpha-fetoprotein in single cells, utilizing a lysosome microenvironment initiation and a DNAzyme-assisted intracellular signal amplification technique based on electrophoretic separation. A nanoprobe targeting lysosomes was prepared, facilitating the intracellular signal amplification of alpha-fetoprotein. Following intracellular signal amplification, the levels of alpha-fetoprotein (AFP) in 20 HepG2 hepatoma cells and 20 normal HL-7702 hepatocytes were individually evaluated using microchip electrophoresis with laser-induced fluorescence detection (MCE-LIF). Results demonstrated overexpression of alpha-fetoprotein in hepatocellular carcinoma cells. This strategy represents a novel technique for single-cell protein analysis and holds significant potential as a powerful tool for such analyses.
Keyphrases
- single cell
- induced apoptosis
- cell cycle arrest
- label free
- nucleic acid
- rna seq
- living cells
- reactive oxygen species
- high throughput
- cell death
- endoplasmic reticulum stress
- cell therapy
- cell proliferation
- bone marrow
- high resolution
- signaling pathway
- mesenchymal stem cells
- heavy metals
- mass spectrometry
- climate change
- protein protein
- sensitive detection
- binding protein