Pore formation phase diagrams for lipid membranes

被引:0
作者
S. I. Mukhin
B. B. Kheyfets
机构
[1] National University of Science and Technology “MISiS,Department of Theoretical Physics and Quantum Technologies
[2] ”,undefined
来源
JETP Letters | 2014年 / 99卷
关键词
JETP Letter; Pore Formation; Lateral Pressure; Helmholtz Free Energy; Lipid Chain;
D O I
暂无
中图分类号
学科分类号
摘要
Critical lateral pressure for a pore formation and phase diagram of porous membrane are derived analytically as functions of the microscopic parameters of the lipid chains. The derivation exploits path-integral calculation of the free energy of the ensembles of semi-flexible strings and rigid rods that mimic the hydrophobic tails of lipids in the lipid bilayers and bolalipid membranes respectively. Analytical expressions for the area stretch/compressibility moduli of the membranes are derived in both models.
引用
收藏
页码:358 / 362
页数:4
相关论文
共 50 条
[31]   Effects of a Polarizable Force Field on Membrane Dynamics: Surface Viscosity, Lipid Diffusion, and Peptide Induced Pore Formation [J].
Venable, Richard M. ;
Pane, Anthony J. ;
Rice, Amy ;
Pastor, Richard W. .
JOURNAL OF COMPUTATIONAL CHEMISTRY, 2025, 46 (05)
[32]   Membrane Activity and Channel Formation of the Adenylate Cyclase Toxin (CyaA) of Bordetella pertussis in Lipid Bilayer Membranes [J].
Knapp, Oliver ;
Benz, Roland .
TOXINS, 2020, 12 (03)
[33]   PORE FORMATION BY TETANUS TOXIN, ITS CHAIN AND FRAGMENTS IN NEURONAL MEMBRANES AND EVALUATION OF THE UNDERLYING MOTIFS IN THE STRUCTURE OF THE TOXIN MOLECULE [J].
BEISE, J ;
HAHNEN, J ;
ANDERSENBECKH, B ;
DREYER, F .
NAUNYN-SCHMIEDEBERGS ARCHIVES OF PHARMACOLOGY, 1994, 349 (01) :66-73
[34]   Translocation of the nonlabeled antimicrobial peptide PGLa across lipid bilayers and its entry into vesicle lumens without pore formation [J].
Ali, Md Hazrat ;
Shuma, Madhabi Lata ;
Dohra, Hideo ;
Yamazaki, Masahito .
BIOCHIMICA ET BIOPHYSICA ACTA-BIOMEMBRANES, 2021, 1863 (10)
[35]   Pore formation and the key factors in antibacterial activity of aurein 1.2 and LLAA inside lipid bilayers, a molecular dynamics study [J].
Cheraghi, Nasim ;
Hosseini, Mandieh ;
Mohammadinejad, Sarah .
BIOCHIMICA ET BIOPHYSICA ACTA-BIOMEMBRANES, 2018, 1860 (02) :347-356
[36]   Increase in the current variance in bilayer lipid membranes near phase transition as a result of the occurrence of hydrophobic defects [J].
Anosov, A. A. ;
Smirnova, E. Yu. ;
Sharakshane, A. A. ;
Nikolayeva, E. A. ;
Zhdankina, Yu. S. .
BIOCHIMICA ET BIOPHYSICA ACTA-BIOMEMBRANES, 2020, 1862 (02)
[37]   PORE FORMATION IN THE PYROLYSIS OF POLYMERS TO CERAMICS [J].
YAO, H ;
KOVENKLIOGLU, S ;
KALYON, DM .
CHEMICAL ENGINEERING COMMUNICATIONS, 1990, 96 :155-175
[38]   Mechanics of membrane fusion/pore formation [J].
Fuhrmans, Marc ;
Marelli, Giovanni ;
Smirnova, Yuliya G. ;
Mueller, Marcus .
CHEMISTRY AND PHYSICS OF LIPIDS, 2015, 185 :109-128
[39]   Effect of temperature on the formation and inactivation of syringomycin E pores in human red blood cells and bimolecular lipid membranes [J].
Agner, G ;
Kaulin, YA ;
Schagina, LV ;
Takemoto, JY ;
Blasko, K .
BIOCHIMICA ET BIOPHYSICA ACTA-BIOMEMBRANES, 2000, 1466 (1-2) :79-86
[40]   Transbilayer (flip-flop) lipid motion and lipid scrambling in membranes [J].
Contreras, F. -Xabier ;
Sanchez-Magraner, Lissete ;
Alonso, Alicia ;
Goni, Felix M. .
FEBS LETTERS, 2010, 584 (09) :1779-1786