Kascakova Slavka, Refregiers Matthieu, Jancura Daniel, Sureau Franck, Maurizot Jean-Claude, Miskovsky Pavol
Department of Biophysics, University of P. J. Safarik, Kosice, Slovak Republic.
Photochem Photobiol. 2005 Nov-Dec;81(6):1395-403. doi: 10.1562/2005-04-28-RA-503.
By means of UV-VIS absorption and fluorescence spectroscopy, we demonstrate that the photosensitizer hypericin (Hyp) interacts nonspecifically with low-density lipoproteins (LDL), most probably with the lipid fraction of LDL. The molar ratio of monomeric Hyp binding to nonoxidized LDL and mildly oxidized LDL is 30:1. Increasing the Hyp concentration further leads to the formation of Hyp aggregates inside the LDL molecule. We also demonstrate that photoactivated Hyp oxidizes LDL in a light dose and excitation wavelength dependent manner. The level of oxidation of LDL depends on the amount of Hyp inside the LDL molecule. The maximum of the photosensitized oxidation of the LDL by Hyp is achieved for a 30:1 molar ratio, which corresponds to the maximum concentration of monomeric form of Hyp in LDL.
通过紫外可见吸收光谱和荧光光谱法,我们证明了光敏剂金丝桃素(Hyp)与低密度脂蛋白(LDL)发生非特异性相互作用,很可能是与LDL的脂质部分相互作用。单体Hyp与未氧化LDL和轻度氧化LDL结合的摩尔比为30:1。进一步增加Hyp浓度会导致LDL分子内部形成Hyp聚集体。我们还证明,光活化的Hyp以光剂量和激发波长依赖的方式氧化LDL。LDL的氧化水平取决于LDL分子内Hyp的量。对于30:1的摩尔比,Hyp对LDL的光敏氧化达到最大值,这对应于LDL中Hyp单体形式的最大浓度。