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◆ Biochimica et biophysica acta. Biomembranes2026-09-18

Breakdown of classical paradigms in lipid membranes. Part II: The permeability paradox.

Lina G Mohtar, Florencia San Román Nápoli, María Belén Sierra, Ana E Ledesma, María de Los Ángeles Frías, Aníbal Disalvo

原始摘要(英文原文)· Original abstract
Water soluble non electrolytes alter the density and the compressibility of the lipid membrane according to its ability to permeate. Glucose, a non-permeant, accumulates at the interphase binding to the PO2- groups promoting water extrusion and decreasing the specific volume and the compressibility without altering the vesicle size. Permeant as glycerol produces a lower change in agreement with its partial permeation. This behavior suggests a reduction in interfacial free volume and a restriction of area fluctuations while the membrane remains in the liquid-crystalline phase correlated with the shift of the distribution of water populations in PC membranes towards connected H bond populations. The polarization of the interphase increases from water to glucose congruent with an increase with the number of H-bonding groups reflected in changes in the water bands. Isotonic glycerol uptake presents a near-ideal Fickian diffusion mechanism, when vesicle swells due to displacement of glucose at the interface and expansion of the hydrated carbonyl population. In contrast, hypertonic permeation shows a non-Fickian transport regime (n = 1.16) due to the initial osmotic shrinkage. In this condition, the activation energy of permeation is lower than the isotonic one correlated to a ten-fold increase in unrelaxed water microstates, related to the exposure of hydrophobic regions and the creation of packing defects along the C=O plane. The results validate a model of membrane interphase of hydrated headgroups dissolved in loose, labile water providing a powerful framework for the intelligent design of smart liposomal controlled delivery systems triggered by solute-induced release.
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Breakdown of classical paradigms in lipid membranes. Part II: The permeability paradox. — 科研速览 Science Skim