| Literature DB >> 33188721 |
Cheng Ma1, Shaojun Wu1, Yang Zhou2, Hui-Fang Wei1, Jianrong Zhang1, Zixuan Chen3, Jun-Jie Zhu1, Yuehe Lin4, Wenlei Zhu2.
Abstract
A bio-coreactant-enhanced electrochemiluminescence (ECL) microscopy realizes the ECL imaging of intracellular structure and dynamic transport. This microscopy uses Ru(bpy)32+ as the electrochemical molecular antenna connecting extracellular and intracellular environments, and uses intracellular biomolecules as the coreactants of ECL reactions via "catalytic route". Accordingly, intracellular structures are identified without using multiple labels, and the autophagy involving DNA oxidative damage is determined by nuclear ECL signals. Time-resolved image sequence discloses the universal edge effect of cellular electroporation due to the influence of geometric properties of cell membranes on the induced transmembrane voltage. The dynamic transport of Ru(bpy)33+ in the different cellular compartments unveils the heterogeneous intracellular diffusivity correlating with the actin cytoskeleton. In addition to single-cell studies, the bio-coreactant-enhanced ECL microscopy is expanded to image other organisms.Entities:
Keywords: biofuel-driven; dynamic transport; electrochemiluminescence; microscopy; single-cell studies
Year: 2020 PMID: 33188721 DOI: 10.1002/anie.202012171
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336