activity
20162023
most citedPlanar Optical Nanoantennas Resolve Cholesterol-Dependent Nanoscale Heterogeneities in the Plasma Membrane of Living Cells

55 citations · 178 across the 8 of their papers we have counts for

collaborators

8 papers

physics.bio-ph2023★ 1 cited

High-density single-molecule maps reveal transient membrane receptor interactions within a dynamically varying environment

Nicolas Mateos, Parijat Sil, Sankarshan Talluri +3

Over recent years, super-resolution and single-molecule imaging methods have delivered unprecedented details on the nanoscale organization and dynamics of individual molecules in d…

physics.optics2023

Broadband plasmonic nanoantennas for multi-color nanoscale dynamics in living cells

Maria Sanz-Paz, Thomas S. van Zanten, Carlo Manzo +2

Recently, the implementation of plasmonic nanoantennas has opened new possibilities to investigate the nanoscale dynamics of individual biomolecules in living cell. However, studie…

physics.bio-ph2022★ 4 cited

Multiplexed plasmonic nanoantennas for high throughput single molecule nanoscale dynamics in living cells

Pamina M. Winkler, Thomas S. van Zanten, Satyajit Mayor +1

Single molecule detection has revolutionised the fields of chemistry and biology by offering powerful ways to study individual molecules under different scenarios. Nanophotonic str…

physics.bio-ph2017★ 53 cited

Optical Antenna-based Fluorescence Correlation Spectroscopy to Probe the Nanoscale Dynamics of Biological Membranes

Pamina M. Winkler, Raju Regmi, Valentin Flauraud +4

The plasma membrane of living cells is compartmentalized at multiple spatial scales ranging from the nano- to the meso-scale. This non-random organization is crucial for a large nu…

physics.bio-ph2017★ 43 cited

Transient Nanoscopic Phase Separation in Biological Lipid Membranes Resolved by Planar Plasmonic Antennas

Pamina M. Winkler, Raju Regmi, Valentin Flauraud +4

Nanoscale membrane assemblies of sphingolipids, cholesterol, and certain proteins, also known as lipid rafts, play a crucial role in facilitating a broad range of important cell fu…

physics.bio-ph2017★ 55 cited

Planar Optical Nanoantennas Resolve Cholesterol-Dependent Nanoscale Heterogeneities in the Plasma Membrane of Living Cells

Raju Regmi, Pamina M. Winkler, Valentin Flauraud +6

Optical nanoantennas can efficiently confine light into nanoscopic hotspots, enabling single-molecule detection sensitivity at biological relevant conditions. This innovative appro…