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Updated: May 5, 2026

Nanotopology of Cell Adhesion upon Variable-Angle Total Internal Reflection Fluorescence Microscopy VA-TIRFM
Published on: October 2, 2012
Quantifying nanoscale biochemical heterogeneity in human epithelial cancer cells using combined AFM and PTIR
Eamonn Kennedy1, Rasoul Al-Majmaie, Mohamed Al-Rubeai
1School of Physics, University College Dublin, Belfield, Dublin, Ireland. Eamonn.kennedy@ucdconnect.ie.
Abstract:
Subcellular chemical heterogeneity plays a key role in cell organization and function. However the biomechanics underlying the structure-function relationship is governed by cell substructures which are poorly resolved using conventional chemical imaging methods. To date, advances in sub-diffraction limited infrared (IR) nanoscopy have permitted intracellular chemical mapping. In this work we report how image analysis applied to a combination of IR absorption nanoimaging and topographic data permits quantification of chemical complexity at the nanoscale, enabling the analysis of biochemical heterogeneity in mammalian cancer cells on the scale of subcellular features.

