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Updated: May 1, 2026

Live Cell Response to Mechanical Stimulation Studied by Integrated Optical and Atomic Force Microscopy
Published on: October 4, 2010
Nanobiomechanics of living cells: a review
1School of Mechanical and Systems Engineering , Newcastle University , Newcastle Upon Tyne NE1 7RU , UK ; Arthritis Research UK (ARUK) Tissue Engineering Centre , Institute of Cellular Medicine, Newcastle University , Newcastle Upon Tyne NE2 4HH , UK.
Abstract:
Nanobiomechanics of living cells is very important to understand cell-materials interactions. This would potentially help to optimize the surface design of the implanted materials and scaffold materials for tissue engineering. The nanoindentation techniques enable quantifying nanobiomechanics of living cells, with flexibility of using indenters of different geometries. However, the data interpretation for nanoindentation of living cells is often difficult. Despite abundant experimental data reported on nanobiomechanics of living cells, there is a lack of comprehensive discussion on testing with different tip geometries, and the associated mechanical models that enable extracting the mechanical properties of living cells. Therefore, this paper discusses the strategy of selecting the right type of indenter tips and the corresponding mechanical models at given test conditions.
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