To evaluate toxicity of silver nanoparticles synthesized by using the reverse micelle formation method, the effects of nanoparticles on lipid peroxidation and morphological changes of cell membranes in human lymphocytes were studied. It was found that under the influence of nanoparticles a reduction in cell viability and formation of excessive levels of reactive oxygen species were observed. Silver nanoparticles at different concentrations activate the processes of lipid peroxidation and, as a consequence, led to morphological changes in human lymphocytes.
View Article and Find Full Text PDFIn the work the arguments are presented in favor of the idea on the role of conformationally stable oligo-peptides in specific long-distance interactions in phenomena of molecular recognition during various biological processes. Original authors' and literature data are taken into account. The examples of conformationally stable short oligopeptides participation in alpha-helix and collagen type structures formation are given simultaneously with theoretical approaches.
View Article and Find Full Text PDFUnder hypoxic conditions, aminolevulinic acid-induced accumulation of porphyrin pigments and increase in heme content was observed in bone marrow mesenchymal stem cells. The expression of transferrin receptor CD71 responsible for Fe(2+) transport into the cell was also enhanced. Blockade of porphyrin-transporting protein ABCG2 with fumitremorgin C under conditions of normoxia and hypoxia induced accumulation of porphyrin pigments; in hypoxia, these changes were more pronounced.
View Article and Find Full Text PDFIt was shown that selective interactions between helical segments of macromolecules can realize in globular proteins in the segments characterized by the same periodicities of charge distribution i.e. between conformationally conservative oligopeptides.
View Article and Find Full Text PDFTo assess the potential risks of using the artificial nanostructures the structural state of the human lymphocyte membrane and lipid peroxidation under the influence of multi-walled carbon nanotubes with metal impurities was studied. The ability of carbon nanotubes to induce the formation of reactive oxygen species in cells was examined. A dose-dependent increase in reactive oxygen species formation in lymphocytes, which was not registered in cells pre-incubated with N-acetylcystein, after exposure to carbon nanotubes was shown.
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