Literature DB >> 26871001

Surface Charge Visualization at Viable Living Cells.

David Perry1, Binoy Paulose Nadappuram1, Dmitry Momotenko1, Philip D Voyias1, Ashley Page1, Gyanendra Tripathi1, Bruno G Frenguelli1, Patrick R Unwin1.   

Abstract

Scanning ion conductance microscopy (SICM) is demonstrated to be a powerful technique for quantitative nanoscale surface charge mapping of living cells. Utilizing a bias modulated (BM) scheme, in which the potential between a quasi-reference counter electrode (QRCE) in an electrolyte-filled nanopipette and a QRCE in bulk solution is modulated, it is shown that both the cell topography and the surface charge present at cellular interfaces can be measured simultaneously at high spatial resolution with dynamic potential measurements. Surface charge is elucidated by probing the properties of the diffuse double layer (DDL) at the cellular interface, and the technique is sensitive at both low-ionic strength and under typical physiological (high-ionic strength) conditions. The combination of experiments that incorporate pixel-level self-referencing (calibration) with a robust theoretical model allows for the analysis of local surface charge variations across cellular interfaces, as demonstrated on two important living systems. First, charge mapping at Zea mays root hairs shows that there is a high negative surface charge at the tip of the cell. Second, it is shown that there are distinct surface charge distributions across the surface of human adipocyte cells, whose role is the storage and regulation of lipids in mammalian systems. These are new features, not previously recognized, and their implications for the functioning of these cells are highlighted.

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Year:  2016        PMID: 26871001     DOI: 10.1021/jacs.5b13153

Source DB:  PubMed          Journal:  J Am Chem Soc        ISSN: 0002-7863            Impact factor:   15.419


  10 in total

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Review 7.  Surface charge, glycocalyx, and blood-brain barrier function.

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Review 8.  Scanning Ion Conductance Microscopy.

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Journal:  Chem Rev       Date:  2020-12-09       Impact factor: 72.087

Review 9.  Local probe investigation of electrocatalytic activity.

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Review 10.  Electrochemical imaging of cells and tissues.

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Journal:  Chem Sci       Date:  2018-04-09       Impact factor: 9.825

  10 in total

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