Biophysical parameters of erythrocyte membranes and mechanisms of interaction with non-opioid analgesics under acute pain syndrome

Methods of fluorescent probing, spectrophotometry and microcalorimetry were applied to investigate the alterations in biophysical parameters of erythrocytes membranes, and specifically microviscosity, surface charge, molecular organization of lipid bilayer and lipid-protein interactions under condit...

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Main Authors: Yu. I. Gubskyi, T. A. Buhtiarova, H. G. Goriushko, N. V. Litvinova, G. I. Paramonova, T. N. Kurapova, O. N. Velychko, L. P. Babenko
Format: Article
Language:English
Published: National Academy of Sciences of Ukraine, Palladin Institute of Biochemistry 2014-06-01
Series:The Ukrainian Biochemical Journal
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Online Access:http://ukrbiochemjournal.org/wp-content/uploads/2015/06/Gubskyi_3_14.pdf
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author Yu. I. Gubskyi
T. A. Buhtiarova
H. G. Goriushko
N. V. Litvinova
G. I. Paramonova
T. N. Kurapova
O. N. Velychko
L. P. Babenko
author_facet Yu. I. Gubskyi
T. A. Buhtiarova
H. G. Goriushko
N. V. Litvinova
G. I. Paramonova
T. N. Kurapova
O. N. Velychko
L. P. Babenko
author_sort Yu. I. Gubskyi
collection DOAJ
description Methods of fluorescent probing, spectrophotometry and microcalorimetry were applied to investigate the alterations in biophysical parameters of erythrocytes membranes, and specifically microviscosity, surface charge, molecular organization of lipid bilayer and lipid-protein interactions under conditions of acute pain syndrome produced by experimental chemical lesion. The distinctive features of non-opiod analgesics interactions and binding to the erythrocytes membranes of rats subjected to acute nociceptive pain accompanied with oxidative stress development were investigated. The abilities of analgesics under research, and namely paracetamol, aspirin, phenazone, ketorolac, pyrodazole, ketoprofenum, natrium mefenaminate, indometacin, nimesulide to make up physico-chemical complexes with lipoperoxidation modified erythrocytes surface and protein-lipid bilayer showed marked changes. The significance of oxidative damage of biophase under conditions of acute pain syndrome for analgesics effective pharmacodynamics and pharmacokinetics realization is under consideration.
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spelling doaj.art-0eae0cb94cfc467a99381613c4d3db852023-12-02T14:35:55ZengNational Academy of Sciences of Ukraine, Palladin Institute of BiochemistryThe Ukrainian Biochemical Journal2409-49432413-50032014-06-018639810610.15407/ubj86.03.098Biophysical parameters of erythrocyte membranes and mechanisms of interaction with non-opioid analgesics under acute pain syndromeYu. I. Gubskyi0T. A. Buhtiarova1H. G. Goriushko2N. V. Litvinova3G. I. Paramonova4T. N. Kurapova5O. N. Velychko6L. P. Babenko7SI Institute of Pharmacology and Toxicology, National Academy of Medical Sciences of Ukraine, KyivSI Institute of Pharmacology and Toxicology, National Academy of Medical Sciences of Ukraine, KyivSI Institute of Pharmacology and Toxicology, National Academy of Medical Sciences of Ukraine, KyivSI Institute of Pharmacology and Toxicology, National Academy of Medical Sciences of Ukraine, KyivSI D.F. Chebotarev Institute of Gerontology, National Academy of Medical Sciences of Ukraine, KyivSI Institute of Pharmacology and Toxicology, National Academy of Medical Sciences of Ukraine, KyivSI Institute of Pharmacology and Toxicology, National Academy of Medical Sciences of Ukraine, KyivSI Institute of Pharmacology and Toxicology, National Academy of Medical Sciences of Ukraine, KyivMethods of fluorescent probing, spectrophotometry and microcalorimetry were applied to investigate the alterations in biophysical parameters of erythrocytes membranes, and specifically microviscosity, surface charge, molecular organization of lipid bilayer and lipid-protein interactions under conditions of acute pain syndrome produced by experimental chemical lesion. The distinctive features of non-opiod analgesics interactions and binding to the erythrocytes membranes of rats subjected to acute nociceptive pain accompanied with oxidative stress development were investigated. The abilities of analgesics under research, and namely paracetamol, aspirin, phenazone, ketorolac, pyrodazole, ketoprofenum, natrium mefenaminate, indometacin, nimesulide to make up physico-chemical complexes with lipoperoxidation modified erythrocytes surface and protein-lipid bilayer showed marked changes. The significance of oxidative damage of biophase under conditions of acute pain syndrome for analgesics effective pharmacodynamics and pharmacokinetics realization is under consideration.http://ukrbiochemjournal.org/wp-content/uploads/2015/06/Gubskyi_3_14.pdfacute nociceptive painerythrocytes membranesfluorescent probingmicrocalorimetrynon-opioid analgesicsoxidative stress
spellingShingle Yu. I. Gubskyi
T. A. Buhtiarova
H. G. Goriushko
N. V. Litvinova
G. I. Paramonova
T. N. Kurapova
O. N. Velychko
L. P. Babenko
Biophysical parameters of erythrocyte membranes and mechanisms of interaction with non-opioid analgesics under acute pain syndrome
The Ukrainian Biochemical Journal
acute nociceptive pain
erythrocytes membranes
fluorescent probing
microcalorimetry
non-opioid analgesics
oxidative stress
title Biophysical parameters of erythrocyte membranes and mechanisms of interaction with non-opioid analgesics under acute pain syndrome
title_full Biophysical parameters of erythrocyte membranes and mechanisms of interaction with non-opioid analgesics under acute pain syndrome
title_fullStr Biophysical parameters of erythrocyte membranes and mechanisms of interaction with non-opioid analgesics under acute pain syndrome
title_full_unstemmed Biophysical parameters of erythrocyte membranes and mechanisms of interaction with non-opioid analgesics under acute pain syndrome
title_short Biophysical parameters of erythrocyte membranes and mechanisms of interaction with non-opioid analgesics under acute pain syndrome
title_sort biophysical parameters of erythrocyte membranes and mechanisms of interaction with non opioid analgesics under acute pain syndrome
topic acute nociceptive pain
erythrocytes membranes
fluorescent probing
microcalorimetry
non-opioid analgesics
oxidative stress
url http://ukrbiochemjournal.org/wp-content/uploads/2015/06/Gubskyi_3_14.pdf
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