Title of article
Phospholipid mesophases at solid interfaces: in-situ X-ray diffraction and spin-label studies
Author/Authors
Rappolt، نويسنده , , Michael and Amenitsch، نويسنده , , Heinz and Strancar، نويسنده , , Janez and Teixeira، نويسنده , , Cilaine V. and Kriechbaum، نويسنده , , Manfred and Pabst، نويسنده , , Georg and Majerowicz، نويسنده , , Monika and Laggner، نويسنده , , Peter، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2004
Pages
15
From page
63
To page
77
Abstract
In this work, we report on recent investigations, both on the global and on the local molecular architecture of supported phospholipid model membranes. A brief theoretical introduction explains how global structural information on supramolecular lipid ensembles can be retrieved from surface X-ray diffraction measurements as well as how spin-label electron paramagnetic resonance spectroscopy (EPR) provides complementary information on the local environment of probe molecules.
mbination of especially designed X-ray cells with the technique of small- and wide-angle X-ray surface scattering makes it possible to explore various fields of lipid research and its applications. Examples for different physico-chemical conditions are presented: (i) in situ chemistry under excess of water conditions demonstrating how solid-supported lipid films sense salinity, (ii) the 3D electron density reconstruction of a vesicle-fusion intermediate under controlled humidity, and (iii) complementary temperature and pressure effects on oriented phospholipid samples.
r, special attention has been given to the influence of different film preparation techniques with respect to quality and the defect structure manifestation. To resolve the proportions and local properties of defects in a hydrated lipid-deposited surface, spin-label EPR was applied. The results from 9.6 GHz EPR as well as from 1.2 GHz EPR suggest the alignment to be in the range between 30% and 80%. In addition, slow time-dependent EPR measurements point to nano-structural rearrangements due to water flow and reduction of alignment quality.
Keywords
phospholipid , topography , X-ray diffraction , Surface film , Spin label , Mesophase , EPR spectroscopy
Journal title
Advances in Colloid and Interface Science
Serial Year
2004
Journal title
Advances in Colloid and Interface Science
Record number
1432580
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