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Z Pavlícek

Publications and source records attributed to Z Pavlícek.

6 recordsLinked to original sources

Effect of aminophospholipid glycation on order parameter and hydration of phospholipid bilayer.

The effect of aminophospholipid glycation on lipid order and lipid bilayer hydration was investigated using time-resolved fluorescence spectroscopy. The changes of lipid bilayer hydration were estimated both from its effect on the fluorescence lifetime of The 1-[4-(trimethylammonium)-phenyl]-6-phenylhexa-1,3,5-triene (TMA-DPH) and 1,6-diphenylhexa-1,3,5-triene (DPH) and using solvatochromic shift studies with 1-anilinonaphthalene-8-sulfonic acid. The head-group and acyl chain order were determined from time-resolved fluorescence anisotropy measurements of the TMA-DPH and DPH. The suspensions of small unilamellar vesicles (with phosphatidylethanolamine/phosphatidylcholine molar ratio 1:2.33) were incubated with glyceraldehyde and it was found that aminophospholipids react with glyceraldehyde to form products with the absorbance and the fluorescence properties typical for protein advanced glycation end products. The lipid glycation was accompanied by the progressive oxidative modification of unsaturated fatty acid residues. It was found that aminophospholipid glycation increased the head-group hydration and lipid order in both regions of the membrane. The lipid oxidation accompanying the lipid glycation affected mainly the lipid order, while the effect on the lipid hydration was small. The increase in the lipid order was presumably the result of two effects: (1) the modification of head-groups of phosphatidylethanolamine by glycation; and (2) the degradation of unsaturated fatty acid residues by oxidation.

Journal Article↗

Enzymically generated electron-excited species increase the membrane order parameter without changing the rotational relaxation time of TMA-DPH.

The effect of enzymically generated triplet acetone produced from 60 mmol/1 2-methylpropanal (MPAL) in the presence of 2 mumol/l horseradish peroxidase on the properties of artificial unilamellar liposomes was studied. The concentration of malondialdehyde, membrane lateral pressure (membrane order parameter), lifetime distribution of the excited state of TMA-DPH incorporated into liposomes, and rotational relaxation time of TMA-DPH were determined. The concentration of MDA increased with the MPAL concentration, and the membrane lateral pressure increased linearly with the concentration of MDA. The mean lifetime values changed (p < 0.01) as did the limiting anisotropy (p < 0.005), the widths of the main peak of the lifetime distribution and the rotational relaxation time remaining unchanged. This indicates that there is no significant difference between the widths and rotational relaxation times in the control and triplet-acetone-treated sample; i.e. peroxidation by MPAL increased the lipid order of the bilayer but the effect of neighboring lipid molecules on the dynamics of the probe was negligible.

Acetone↗