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The effect of highly hydroxylated fullerenol C60(OH)36 on human erythrocyte membrane organization
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نویسنده
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grebowski j. ,krokosz a.
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منبع
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journal of spectroscopy - 2015 - دوره : 2015 - شماره : 0
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چکیده
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The mechanism of the interaction of highly hydroxylated fullerenol c60(oh)36 with erythrocyte membranes was studied by electron spin resonance spectroscopy (esr) of stearic acid derivatives labeled with a nitroxyl radical at c-12 or c-16 and with a nitroxyl derivative of maleimide covalently attached to sulfhydryl groups of membrane proteins. a significant increase in membrane fluidity in the hydrophobic region of the lipid bilayer was observed for 12-doxylstearic acid at fullerenol concentrations of 100 mg/l or 150 mg/l,while for 16-doxylstearic acid significant increase in fluidity was only observed at 150 mg/l. fullerenol at 100 mg/l or 150 mg/l caused conformational changes in membrane proteins,expressed as an increase in the hw/hs parameter,when fullerenol was added before the maleimide spin label (msl) to the membrane suspension. the increase of the hw/hs parameter may be caused by changes in lipid-protein or protein-protein interactions which increase the mobility of the msl label and as a result increase the membrane fluidity. incubation of the membranes with the msl before the addition of fullerenol blocked the available membrane protein -sh groups and minimized the interaction of fullerenol with them. this confirms that fullerenol interacts with erythrocyte membrane proteins via available protein -sh groups. © 2015 jacek grebowski and anita krokosz.
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آدرس
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department of molecular biophysics,faculty of biology and environmental protection,university of lodz,141/143 pomorska street, Poland, department of molecular biophysics,faculty of biology and environmental protection,university of lodz,141/143 pomorska street, Poland
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Authors
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