The temperature dependence of lipid membrane permeability, its quantized nature, and the influence of anesthetics.

Abstract:

:We investigate the permeability of lipid membranes for fluorescence dyes and ions. We find that permeability reaches a maximum close to the chain melting transition of the membranes. Close to transitions, fluctuations in area and compressibility are high, leading to an increased likelihood of spontaneous lipid pore formation. Fluorescence correlation spectroscopy reveals the permeability for rhodamine dyes across 100-nm vesicles. Using fluorescence correlation spectroscopy, we find that the permeability of vesicle membranes for fluorescence dyes is within error proportional to the excess heat capacity. To estimate defect size we measure the conductance of solvent-free planar lipid bilayer. Microscopically, we show that permeation events appear as quantized current events very similar to those reported for channel proteins. Further, we demonstrate that anesthetics lead to a change in membrane permeability that can be predicted from their effect on heat capacity profiles. Depending on temperature, the permeability can be enhanced or reduced. We demonstrate that anesthetics decrease channel conductance and ultimately lead to blocking of the lipid pores in experiments performed at or above the chain melting transition. Our data suggest that the macroscopic increase in permeability close to transitions and microscopic lipid ion channel formation are the same physical process.

journal_name

Biophys J

journal_title

Biophysical journal

authors

Blicher A,Wodzinska K,Fidorra M,Winterhalter M,Heimburg T

doi

10.1016/j.bpj.2009.01.062

subject

Has Abstract

pub_date

2009-06-03 00:00:00

pages

4581-91

issue

11

eissn

0006-3495

issn

1542-0086

pii

S0006-3495(09)00664-X

journal_volume

96

pub_type

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