Effect of C60 fullerene on viscoelastic properties of human erythrocytes membrane
Shpakova NM1, Nipot OS1, Ishchenko IO1, Pryluts'ka SV2, Bohuts'ka KI2, Cherepanov VV3, Sandomyrs'kyĭ BP1, Pryluts'kyĭ IuI2
- Institute for Problems of Cryobiology and Cryomedicine ofNAS of Ukraine, Kharkiv, Ukraine
- Taras Shevchenko National University of Kyiv, Ukraine
- Institute of Physics of NAS of Ukraine, Kyiv, Ukraine
DOI: https://doi.org/10.15407/fz60.05.082
Abstract
The effect of С60 fullerene aqueous colloid solution (C60FAS)
on viscoelastic properties of human erythrocytes membrane
has been studied. It was established that the effect of C60FAS on
erythrocytes depends on the medium osmolality and concentration
of С60 fullerene in it. In particular, in isotonic solution
(0,15 mole/L NaCl) adding С60 fullerene in concentrations
from 0,7 до 28 mmole/L did not cause the hemolytic damage
of cells. In hypotonic medium when introducing С60 fullerene
(7 mmole/L concentration) at the beginning of erythrocyte hemolysis
its stimulating effect was maximal and when adding
C60FAS in 20 s after hemolysis start no this process stimulation
is observed. This points to the changes in viscoelastic properties
of erythrocyte membranes even during the first seconds
of its interaction with C60 fullerene.
Keywords:
С60 fullerene aqueous colloid solution, humanerythrocytes, viscoelastic properties of membrane, atomicforcemicroscopy.
References
- Prylutska S.V., Kichmarenko Yu.M., Bogutska K.I., Prylutskyy Yu.I. C60 fullerene and its derivatives as anticancer agents: problems and prospects. Biotechnol Acta. 2012; 5 (3): 9-17 [Ukrainian].
- Prylutska S.V., Rotko D.M., Prylutskyy Yu.I., Rybalchenko V.K. Toxicity of carbon nanostructures in vitro and in vivo systems. Modern Problems Toxicol. 2012; 4: 49-57 [Ukrainian].
- Su Y., Xu J.Y., Shen P., Li J., Wang L., Li Q., Li W., Xu G.T., Fan C., Huang Q. Cellular uptake and cytotoxic evaluation of fullerenol in different cell lines. Toxicol. 2010; 269 (2-3): 155-9.
CrossRef
PubMed
- Rouse J.G., Yang J., Barron A.R., Monteiro-Reviere N.A. Fullerene-based amino acid nanoparticle interactions with human epidermal keratinocytes. Toxicol in Vitro. 2006; 20 (8): 1313-20.
CrossRef
PubMed
- Grebinyk S.M., Grynyuk I.I., Prylutska S.V., Matyshevska O.P. Generation of active oxygen forms in rat tymocytes under action of hydrogen peroxide and C60 fullerene. Ukr Biochem J. 2012; 84 (2): 48-52 [Ukrainian].
- Andreichenko K.S., Prylutska S.V., Medynska K.O., Bogutska K.I., Nurishchenko N.E., Prylutskyy Yu.I., Ritter U., Scharff P. Effect of C60 fullerene on ATPase activity and superprecipitation of skeletal muscle actomyosin. Ukr Biochem J. 2013; 85 (2): 20-6.
CrossRef
- Schuetze C., Ritter U., Scharff P., Fernkorn U., Prylutska S., Bychko A., Rybalchenko V., Prylutskyy Yu. Interaction of N-fluorescein-5-isothiocyanate pyrrolidine-C60 with a bimolecular lipid model membrane. Mater Sci Engineer. C. 2011; 31 (5): 1148-50.
CrossRef
- Prylutska S., Bilyy R., Overchuk M., Bychko A., Andreichenko K., Stoika R., Rybalchenko V., Prylutskyy Y., Tsierkezos N.G., Ritter U. Water-soluble pristine C60 fullerenes increase the specific conductivity and capacity of lipid model membrane and form the channels in cellular plasma membrane. J Biomed Nanotechnol. 2012; 8(3): 522-7.
CrossRef
PubMed
- Prylutska S.V., Burlaka A.P., Prylutskyy Yu.I., Ritter U., Scharff P. Pristine C60 fullerenes inhibit the rate of tumor growth and metastasis. Exp Oncol. 2011; 33 (3): 162-4.
PubMed
- Grynyuk I.I., Perepelytsina O.M., Prylutska S.V., Garmanchuk L.V., Khranovska N.N., Matyshevska O.P., Sydorenko M.V. Influence of C60 fullerenes on the survivability of breast cancer cell line MCFb7 long-term incubation. Biotechnol. Acta. 2010; 3 (4): 75-9 [Ukrainian].
- Prylutska S.V., Matyshevska O.P., Grynyuk I.I., Prylutskyy Y.I., Ritter U., Scharff P. Biological effects of C60 fullerenes in vitro and in a model system. Mol Cryst Liq Cryst. 2007; 468: 265-74.
CrossRef
- Prylutskyy Yu.I., Petrenko V.I., Ivankov O.I., Kyzyma O.A., Bulavin L.A., Litsis O.O., Evstigneev M.P., Cherepanov V.V., Naumovets A.G., Ritter U. On the origin of C60 fullerene solubility in aqueous solution. Langmuir. 2014; 30 (14): 3967-70.
CrossRef
PubMed
- Bulavin L., Adamenko I., Prylutskyy Yu., Durov S., Graja A., Bogucki A., Scharff P. Structure of fullerene C60 in aqueous solution. Phys Chem Chem Phys. 2000; 2 (8): 1627-9.
CrossRef
- Prylutskyy Yu.I., Buchelnikov A.S., Voronin D.P., Kostjukov V.V., Ritter U., Parkinson J.A., Evstigneev M.P. C60 fullerene aggregation in aqueous solution. Phys Chem Chem Phys. 2013; 15 (23): 9351-60.
CrossRef
PubMed
- Prylutskyy Yu.I., Durov S.S., Bulavin L.A., Adamenko I., Moroz K.O., Geru I., Dihor I.N., Scharff P., Eklund P.C., Grigorian L. Structure and thermophysical properties of C60 fullerene aqueous solution. Int. J. Thermophys. 2001; 22 (3): 943-56.
CrossRef
- Ghashghaeinia M., Cluitmans J.C., Akel A., Dreischer P., Toulany M., Koberle M., Skabytska Y., Saki M., Biedermann T., Duszenko M., Lang F., Wieder T., Bosman G.J. The impact of erythrocyte age on eryptosis. Br J Haematol. 2012; 157 (5): 606-14.
CrossRef
PubMed
- Wong-Ekkabut J., Baoukina S., Triampo W., Tang I.M., Tieleman D.P., Monticelli L. Computer simulation study of fullerene translocation through lipid membranes. Nat Nanotechnol. 2008; 3 (6): 363-8.
CrossRef
PubMed
- Shpakova N.M. Temperature and osmotic sensitivity of red blood cells of different mammalian species. Biol "@nimals. 2010; 12 (1): 382-91 [Ukrainian].
- Solomadin I.N., Marov N.V., Venediktova N.I., Kosenko E.A., Kaminskii Yu.G. Toxic effect of AѓA25.35 and C60 fullerene on erythrocytes. Biology "Bulletin. 2008; 35 (4): 436-40.
- Trpkovic A., Todorovic-Markovic B., Kleut D., Misirkic M., Janjetovic K., Vucicevic L., Pantovic A., Jovanovic S., Dramicanin M., Markovic Z., Trajkovic V. Oxidative stress-mediated hemolytic activity of solvent exchangeprepared C60 fullerene nanoparticles. Nanotechnol. 2010; 21 (37): 375102.
CrossRef
PubMed
|