Influence of phospholipid head and tail molecular structures on cell membrane mechanical response under tension
Document Type
Article
Publication Date
8-28-2024
Abstract
Biological cell membranes are primarily comprised of a diverse lipid bilayer with multiple phospholipid (lipid) types, each of which is comprised of a hydrophilic headgroup and two hydrophobic hydrocarbon tails. The lipid type determines the molecular structure of head and tail groups, which can affect membrane mechanics at nanoscale and subsequently cell viability under mechanical loading. Hence, using molecular dynamics simulations, the current study investigated seven membrane phospholipids and the effect of their structural differences on physical deformation, mechanoporation damage, and mechanical failure of the membranes under tension. The inspected phospholipids showed similar yield stresses and strains, as well as pore evolution and damage, but significantly different failure strains. In general, failure occurred at a lower strain for lipids with a larger equilibrium area per lipid. The obtained results suggest that larger headgroup structure, greater degree of unsaturation, and tail-length asymmetry influenced the phospholipids’ ability to pack against each other, increased the fluidity and equilibrium area per lipid of the membrane, and resulted in lower failure strain. Overall, this study provides insights on how different phospholipid structures affect membrane physical responses at the molecular level and serves as a reference for future studies of more complex membrane systems with intricate biophysical properties.
Identifier
85202004529 (Scopus)
Publication Title
Journal of Chemical Physics
External Full Text Location
https://doi.org/10.1063/5.0214893
e-ISSN
10897690
ISSN
00219606
PubMed ID
39177086
Issue
8
Volume
161
Fund Ref
Center for Advanced Vehicular Systems, Mississippi State University
Recommended Citation
Vo, Anh T.N.; Murphy, Michael A.; Prabhu, Raj K.; and Stone, Tonya W., "Influence of phospholipid head and tail molecular structures on cell membrane mechanical response under tension" (2024). Faculty Publications. 228.
https://digitalcommons.njit.edu/fac_pubs/228