Showing 41 - 60 results of 2,762 for search '"lipid bilayers"', query time: 0.86s Refine Results
  1. 41

    Site-specific peroxidation modulates lipid bilayer mechanics by Chng, Choon-Peng, Sadovsky, Yoel, Hsia, K. Jimmy, Huang, Changjin

    Published 2021
    “…Peroxidation of plasma membranes, characterized by oxidative attack of lipidic carbon–carbon double bonds in unsaturated fatty acids, has been identified as an important biochemical event in multiple pathological conditions, including neurodegenerative diseases, atherosclerosis, diabetes, preeclampsia, aging, cancer, etc. Changes to the lipid bilayer structure as a result of lipid peroxidation may lead to lipid membrane malfunction, and consequently initiate further downstream biochemical cascades. …”
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    Journal Article
  2. 42

    Supported lipid bilayer formation: beyond vesicle fusion by Jackman, Joshua A., Cho, Nam-Joon

    Published 2022
    “…Supported lipid bilayers (SLBs) are cell-membrane-mimicking platforms that can be formed on solid surfaces and integrated with a wide range of surface-sensitive measurement techniques. …”
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    Journal Article
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    Orientation of the OmpF porin in planar lipid bilayers by Ionescu, S, Lee, S, Housden, N, Kaminska, R, Kleanthous, C, Bayley, H

    Published 2017
    “…Individual OmpF trimers in planar lipid bilayers (PLBs) show one of two current–voltage asymmetries, thus implying that insertion occurs with either the periplasmic or the extracellular end first. …”
    Journal article
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    Raman spectroscopy of supported lipid bilayers and membrane proteins by Lee, C, Lee, Chongsoo

    Published 2005
    “…<p>Off-resonance unenhanced total internal reflection (<em>TIR</em>) Raman Spectroscopy was explored to investigate supported single lipid bilayers with incorporated membrane peptides/proteins at water/solid interface.…”
    Thesis
  8. 48

    The energetics of transmembrane helix insertion into a lipid bilayer. by Chetwynd, A, Wee, C, Hall, B, Sansom, MS

    Published 2010
    “…Free energy profiles for insertion of a hydrophobic transmembrane protein α-helix (M2 from CFTR) into a lipid bilayer have been calculated using coarse-grained molecular dynamics simulations and umbrella sampling to yield potentials of mean force along a reaction path corresponding to translation of a helix across a lipid bilayer. …”
    Journal article
  9. 49

    Simulation studies of the interaction of antimicrobial peptides and lipid bilayers. by La Rocca, P, Biggin, P, Tieleman, D, Sansom, MS

    Published 1999
    “…Simulations allow us to explore the interactions of such peptides with lipid bilayers, and to understand the effects of such interactions on the conformational dynamics of the peptides. …”
    Journal article
  10. 50

    The study of platelet receptors using artificial lipid bilayers by Dustin, ML, Pollitt, AY

    Published 2018
    “…Artificial lipid bilayers are powerful tools that can be used to model the interactions between platelets and membrane-bound ligands. …”
    Journal article
  11. 51

    Neutron scattering investigations of the lipid bilayer structure pressure dependence by D. V. Soloviov, L. A. Bulavin, V. I. Gordeliy, Yu. E. Gorshkova, O. I. Ivankov, Y. S. Kovalev, A. I. Kuklin, T. Yu. Nikolaienko

    Published 2012-03-01
    “…Lipid bilayer structure investigation results obtained with small angle neutron scattering method at the Joint Institute for Nuclear Research IBR-2M nuclear reactor (Dubna, Russia) are presented. …”
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    Article
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    Alteration of Average Thickness of Lipid Bilayer by Membrane-Deforming Inclusions by Oleg V. Kondrashov, Sergey A. Akimov

    Published 2023-11-01
    “…Thickness of lipid bilayer membranes is a key physical parameter determining membrane permeability and stability with respect to formation of through pores. …”
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    Article
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    Collective dynamics of domain structures in liquid crystalline lipid bilayers by V. N. Kadantsev, A. N. Goltsov

    Published 2022-07-01
    “…In this paper, we developed a model for the collective dynamics of quasi-one-dimensional domain structures in lipid bilayers interacting with the environment. The objective is to study the mechanisms of the directed energy transport in liquid crystalline lipid membranes.Methods. …”
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    Article
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