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Updated: Jul 16, 2026

A Model Membrane Platform for Reconstituting Mitochondrial Membrane Dynamics
Published on: September 2, 2020
Imaging functional membrane composition and organisation
Chandrima Patra1, Satyajit Mayor2
1Centre for Mechanochemical Cell Biology, Warwick Medical School, University of Warwick, Bangalore, India.
Abstract:
The plasma membrane is a ∼5nm lipid bilayer that ensheathes all living cells. Lateral heterogeneity and transbilayer asymmetry in lipid and protein distributions generate local variations in lipid packing, polarity, viscosity, lateral tension and curvature that regulate membrane protein conformation, nanoscale organisation and signalling. The composition and organisation are therefore tightly controlled and intimately coupled to cellular function. Thus, in parallel, a diverse toolkit comprising environment-sensitive small molecules, lipid-binding protein probes, hybrid chemical-genetic reporters and label-free imaging modalities has emerged to visualise membrane composition and its biophysical properties in living cells and tissues. Here, we highlight recent advances in (i) fluorescence-based readout of composition and membrane properties and (ii) mass spectrometry and vibrational imaging strategies for label-free spatial mapping of membrane composition and structure. We focus on sensing mechanisms, design principles and exemplar applications.
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