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Published on: June 9, 2014
Single-Cell Analysis of Zinc Ions During Electrical Stimulation-Induced Pyroptosis by DNAzyme-Functionalized Glass
Xueqi Han1,2, Wenting Guo1,2, Yong Wang1,2
1State Key Laboratory of Electroanalytical Chemistry, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun 130022, China.
Abstract:
Zinc is a common redox element and plays a vital role in immune response, catalysis, structure, and signal regulation. Tracing intracellular Zn2+ dynamics is, therefore, crucial for understanding physiological processes. Since a glass nanopipette is a good sensing platform for single-cell detection with little damage to the cell membrane, in this study, we developed DNAzyme-functionalized glass nanopipettes (D-GNs) for single-cell Zn2+ detection based on the catalytic activity of Zn2+-dependent DNAzymes. In the presence of Zn2+, DNAzyme-modified gold nanoparticles (D-AuNPs) were released from the inner wall of the nanopipette, leading to a change in ionic current rectification. D-GNs exhibited good sensing performance in vitro and can be applied to effectively detect Zn2+ in HeLa cells under electrical stimulation. This functional nanopipette-based platform offers a new strategy for probing intracellular ion variations and evaluating the physiological state of individual cells.

