Effect of sodium salts of 3α,12α-dihydroxy-7-oxo-5β-cholanoic and 3,7,12-trioxo-5β-cholanoic acids on verapamil hydrochloride in biophysical–chemical model experiments

It is known that certain bile acids have a promotive effect on the action of some drugs. Special attention is paid to bile acids having oxo groups instead of OH groups in the steroid skeleton of their molecule, since these derivatives have a lower hemolytic potential (membrane toxicity). This study...

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Main Authors: MIHALJ M. POŠA, VALÉRIA J. GUZSVÁNY, MOMIR M. MIKOV, JANOŠ J. ČANADI
Format: Article
Language:English
Published: Serbian Chemical Society 2011-02-01
Series:Journal of the Serbian Chemical Society
Subjects:
Online Access:http://www.shd.org.rs/JSCS/Vol76/No2/04_4111_4807.pdf
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spelling doaj-ab03e821d039443d8eb46afaa93b24672020-11-25T00:18:40ZengSerbian Chemical Society Journal of the Serbian Chemical Society0352-51392011-02-01762189199Effect of sodium salts of 3α,12α-dihydroxy-7-oxo-5β-cholanoic and 3,7,12-trioxo-5β-cholanoic acids on verapamil hydrochloride in biophysical–chemical model experimentsMIHALJ M. POŠAVALÉRIA J. GUZSVÁNYMOMIR M. MIKOVJANOŠ J. ČANADIIt is known that certain bile acids have a promotive effect on the action of some drugs. Special attention is paid to bile acids having oxo groups instead of OH groups in the steroid skeleton of their molecule, since these derivatives have a lower hemolytic potential (membrane toxicity). This study examined the effects of sodium salts of 3α,12α-dihydroxy-7-oxo-5β-cholanoic acid (7-oC) and 3,7,12-trioxo-5β-cholanoic acid (3,7,12-toC) on the adsorption of verapamil hydrochloride on activated carbon (model of the cell membrane). The interaction was followed by measuring the effect of verapamil on the functional dependence between the spin-lattice relaxation time T1 (protons of the C18 angular group of the bile acid molecule) and the bile acid concentration in deuterated chloroform (model of the cell membrane lipid phase). Whether a depot effect of verapamil exists when 7-oC and 3,7,12-toC (in the form of methyl esters) are present in chloroform was also investigated. It was found that 7-oC exhibited a significant effect in the experiments with verapamil, whereas 3,7,12-toC showed no difference of the measured parameters with respect to the control. This indicates that bile acid molecules should have OH groups bound to the steroid nucleus, in order to exhibit an effect on the monitored physico–chemical parameters of verapamil.http://www.shd.org.rs/JSCS/Vol76/No2/04_4111_4807.pdfBile acid oxo derivativesverapamilspin-lattice relaxation time
collection DOAJ
language English
format Article
sources DOAJ
author MIHALJ M. POŠA
VALÉRIA J. GUZSVÁNY
MOMIR M. MIKOV
JANOŠ J. ČANADI
spellingShingle MIHALJ M. POŠA
VALÉRIA J. GUZSVÁNY
MOMIR M. MIKOV
JANOŠ J. ČANADI
Effect of sodium salts of 3α,12α-dihydroxy-7-oxo-5β-cholanoic and 3,7,12-trioxo-5β-cholanoic acids on verapamil hydrochloride in biophysical–chemical model experiments
Journal of the Serbian Chemical Society
Bile acid oxo derivatives
verapamil
spin-lattice relaxation time
author_facet MIHALJ M. POŠA
VALÉRIA J. GUZSVÁNY
MOMIR M. MIKOV
JANOŠ J. ČANADI
author_sort MIHALJ M. POŠA
title Effect of sodium salts of 3α,12α-dihydroxy-7-oxo-5β-cholanoic and 3,7,12-trioxo-5β-cholanoic acids on verapamil hydrochloride in biophysical–chemical model experiments
title_short Effect of sodium salts of 3α,12α-dihydroxy-7-oxo-5β-cholanoic and 3,7,12-trioxo-5β-cholanoic acids on verapamil hydrochloride in biophysical–chemical model experiments
title_full Effect of sodium salts of 3α,12α-dihydroxy-7-oxo-5β-cholanoic and 3,7,12-trioxo-5β-cholanoic acids on verapamil hydrochloride in biophysical–chemical model experiments
title_fullStr Effect of sodium salts of 3α,12α-dihydroxy-7-oxo-5β-cholanoic and 3,7,12-trioxo-5β-cholanoic acids on verapamil hydrochloride in biophysical–chemical model experiments
title_full_unstemmed Effect of sodium salts of 3α,12α-dihydroxy-7-oxo-5β-cholanoic and 3,7,12-trioxo-5β-cholanoic acids on verapamil hydrochloride in biophysical–chemical model experiments
title_sort effect of sodium salts of 3α,12α-dihydroxy-7-oxo-5β-cholanoic and 3,7,12-trioxo-5β-cholanoic acids on verapamil hydrochloride in biophysical–chemical model experiments
publisher Serbian Chemical Society
series Journal of the Serbian Chemical Society
issn 0352-5139
publishDate 2011-02-01
description It is known that certain bile acids have a promotive effect on the action of some drugs. Special attention is paid to bile acids having oxo groups instead of OH groups in the steroid skeleton of their molecule, since these derivatives have a lower hemolytic potential (membrane toxicity). This study examined the effects of sodium salts of 3α,12α-dihydroxy-7-oxo-5β-cholanoic acid (7-oC) and 3,7,12-trioxo-5β-cholanoic acid (3,7,12-toC) on the adsorption of verapamil hydrochloride on activated carbon (model of the cell membrane). The interaction was followed by measuring the effect of verapamil on the functional dependence between the spin-lattice relaxation time T1 (protons of the C18 angular group of the bile acid molecule) and the bile acid concentration in deuterated chloroform (model of the cell membrane lipid phase). Whether a depot effect of verapamil exists when 7-oC and 3,7,12-toC (in the form of methyl esters) are present in chloroform was also investigated. It was found that 7-oC exhibited a significant effect in the experiments with verapamil, whereas 3,7,12-toC showed no difference of the measured parameters with respect to the control. This indicates that bile acid molecules should have OH groups bound to the steroid nucleus, in order to exhibit an effect on the monitored physico–chemical parameters of verapamil.
topic Bile acid oxo derivatives
verapamil
spin-lattice relaxation time
url http://www.shd.org.rs/JSCS/Vol76/No2/04_4111_4807.pdf
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