University of Lincoln
Browse

Nanomechanical investigation of soft biological cell adhesion using atomic force microscopy

Version 2 2024-03-12, 12:53
Version 1 2024-03-01, 08:53
journal contribution
posted on 2024-03-12, 12:53 authored by Eleftherios Siamantouras, Claire HillsClaire Hills, Paul SquiresPaul Squires, Kuo-Kang Liu
<p>Mechanical coupling between living cells is a complex process that is important for a variety of biological processes. In this study the effects of specific biochemical treatment on cell-to-cell adhesion and single cell mechanics were systematically investigated using atomic force microscopy (AFM) single cell force spectroscopy. Functionalised AFM tipless cantilevers were used for attaching single suspended cells that were brought in contact with substrate cells. Cell-to-cell adhesion parameters, such as maximum unbinding force (F max) and work or energy of detachment (W D), were extracted from the retraction force–displacement (F–d) curves. AFM indentation experiments were performed by indenting single cells with a spherical microbead attached to the cantilever. Hertzian contact model was applied to determine the elastic modulus (E) of single cells. Following treatment of the cells with neutralising antibody for epithelial (E)-cadherin, F max was increased by 25%, whereas W D decreased by 11% in response to a 43% increase in E. The results suggest that although the adhesion force between cells was increased after treatment, the energy of adhesion was decreased due to the reduced displacement separation as manifested by the loss of elastic deformation. Conclusively, changes in single cell mechanics are important underlying factors contributing to cell-to-cell adhesion and hence cytomechanical characterization is critical for cell adhesion measurements.</p>

History

School affiliated with

  • Department of Life Sciences (Research Outputs)

Publication Title

Cellular and Molecular Bioengineering

Volume

8

Issue

1

Pages/Article Number

22-31

Publisher

Biomedical Engineering Society

ISSN

1865-5025

eISSN

1865-5033

Date Submitted

2014-09-23

Date Accepted

2014-09-04

Date of First Publication

2014-09-12

Date of Final Publication

2015-03-01

Date Document First Uploaded

2014-09-23

ePrints ID

15025

Usage metrics

    University of Lincoln (Research Outputs)

    Licence

    Exports

    RefWorks
    BibTeX
    Ref. manager
    Endnote
    DataCite
    NLM
    DC