Super‐Resolution Axial Imaging for Quantifying Piconewton Traction Forces in Live Cells

D Dong‐Xia Wang (Third Institute of Physics – Biophysics Georg August University Friedrich‐Hund‐Platz 1 37077 Göttingen Germany) J José Ignacio Gallea (Third Institute of Physics – Biophysics Georg August University Friedrich‐Hund‐Platz 1 37077 Göttingen Germany) D De‐Ming Kong (State Key Laboratory of Medicinal Chemical Biology Tianjin Key Laboratory of Biosensing and Molecular Recognition Research Centre for Analytical Sciences College of Chemistry Nankai University Tianjin 300071 P.R. China) J Jörg Enderlein (Institute of Physics, Georg August University) T Tao Chen

Abstract

AbstractCell mechanics play a pivotal role in regulating numerous biological processes. Although super‐resolution microscopy enables the imaging of cellular forces in the lateral dimension with sub‐10‐nm resolution, achieving comparable resolution along the axial dimension remains a significant challenge. Here, we introduce metal‐induced energy transfer (MIET)‐based tension probe microscopy (MIET‐TPM), a technique for mapping cellular mechanical forces with nanometer precision in the axial direction. This approach combines the nanometer spatial resolution of MIET imaging with the piconewton sensitivity of DNA‐hairpin‐based molecular tension probes (MTPs), enabling the simultaneous observation of both the plasma membrane and force‐exerting molecules in the axial dimension. Using MIET‐TPM, we mapped axial integrin tension within focal adhesions and podosomes, alongside their corresponding plasma membrane height profiles, offering detailed insights into the nanoscale structures and mechanisms involved in force transmission. Notably, MIET‐TPM can be implemented on any fluorescence microscopy setup without hardware modifications, making it a versatile and accessible tool that promises to become an integral part of future cellular mechanobiology analysis.

Article Details

Volume / Issue Vol. 64, Issue 41
Published October 06, 2025
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (5)

D

Dong‐Xia Wang

Third Institute of Physics – Biophysics Georg August University Friedrich‐Hund‐Platz 1 37077 Göttingen Germany

J

José Ignacio Gallea

Third Institute of Physics – Biophysics Georg August University Friedrich‐Hund‐Platz 1 37077 Göttingen Germany

D

De‐Ming Kong

State Key Laboratory of Medicinal Chemical Biology Tianjin Key Laboratory of Biosensing and Molecular Recognition Research Centre for Analytical Sciences College of Chemistry Nankai University Tianjin 300071 P.R. China

J

Jörg Enderlein

Institute of Physics, Georg August University

T

Tao Chen