AbstractCarotenoid pigments and in particular xanthophylls play several physiological functions in plant and animal membranes. Xanthophylls are present in biological membranes in the form of pigment-protein complexes but also as direct components of lipid phase. The biological activity of carotenoids in membranes depends on a molecular organisation of pigments in lipid bilayers, in particular the localisation, orientation and aggregational state. In the present work the organisation of lutein- and zeaxanthin-containing lipid membranes was analysed with the application of electronic absorption spectroscopy. Both xanthophyll pigments incorporated to the dipalmitoylphosphatidylcholine (DPPC) unilamellar liposomes form H-type molecular aggregat...
AbstractThe electronic transitions of lutein and neoxanthin in the major light-harvesting complex, L...
Carotenoid esters are investigated for their interaction with liposomal membranes and compared with ...
AbstractMonomolecular layers of the largest light-harvesting pigment-protein complex of Photosystem ...
AbstractCarotenoid pigments and in particular xanthophylls play several physiological functions in p...
The incorporation yields of four structurally different carotenoids : b-carotene, canthaxanthin, lut...
The incorporation yields of four structurally different carotenoids : b-carotene, canthaxanthin, lut...
AbstractPolar carotenoid pigment – canthaxanthin – has been found to interfere with the organization...
The xanthophyll cycle is a regulatory mechanism operating in the photosynthetic apparatus of plants....
AbstractOrganization of bilayer lipid membrane formed with dipalmitoylphosphatidylcholine and contai...
Lutein and zeaxanthin are two similar carotenoids of the xanthophyll subgroup. Carotenoids are synth...
AbstractLaurdan (6-lauroyl-2-dimethylaminonaphthalene) fluorescence spectroscopy has been applied to...
Extraction of plant light-harvesting complex II (LHCII) from the native thylakoid membrane or from a...
Carotenoids are one of the most widespread and important group of pigments in Nature and they can ac...
AbstractTo get an insight to the mechanism of the zeaxanthin-dependent non-photochemical quenching i...
Here, we address the problem of the antioxidant activity of carotenoids in biomembranes. The activit...
AbstractThe electronic transitions of lutein and neoxanthin in the major light-harvesting complex, L...
Carotenoid esters are investigated for their interaction with liposomal membranes and compared with ...
AbstractMonomolecular layers of the largest light-harvesting pigment-protein complex of Photosystem ...
AbstractCarotenoid pigments and in particular xanthophylls play several physiological functions in p...
The incorporation yields of four structurally different carotenoids : b-carotene, canthaxanthin, lut...
The incorporation yields of four structurally different carotenoids : b-carotene, canthaxanthin, lut...
AbstractPolar carotenoid pigment – canthaxanthin – has been found to interfere with the organization...
The xanthophyll cycle is a regulatory mechanism operating in the photosynthetic apparatus of plants....
AbstractOrganization of bilayer lipid membrane formed with dipalmitoylphosphatidylcholine and contai...
Lutein and zeaxanthin are two similar carotenoids of the xanthophyll subgroup. Carotenoids are synth...
AbstractLaurdan (6-lauroyl-2-dimethylaminonaphthalene) fluorescence spectroscopy has been applied to...
Extraction of plant light-harvesting complex II (LHCII) from the native thylakoid membrane or from a...
Carotenoids are one of the most widespread and important group of pigments in Nature and they can ac...
AbstractTo get an insight to the mechanism of the zeaxanthin-dependent non-photochemical quenching i...
Here, we address the problem of the antioxidant activity of carotenoids in biomembranes. The activit...
AbstractThe electronic transitions of lutein and neoxanthin in the major light-harvesting complex, L...
Carotenoid esters are investigated for their interaction with liposomal membranes and compared with ...
AbstractMonomolecular layers of the largest light-harvesting pigment-protein complex of Photosystem ...