Synthesis and physical-chemical properties of 3-aryl-(aralkyl)-8-hydrazinemethylxanthines and their N-substituted derivatives

Introduction. Analysis of last years’ literature shows, that the most wide spread drugs are those, which contain in their structures heterocyclic fragment. Such trend could be explained by the fact that, heterocycle containing compounds are the part of the number of substances, which play an importa...

Full description

Saved in:
Bibliographic Details
Main Authors: K. V. Аleksandrova, S. V. Levich, Ye. K. Mikhalchenko, D. M. Sinchenko
Format: Article
Language:English
Published: Zaporizhzhia State Medical and Pharmaceutical University 2016-08-01
Series:Aktualʹnì Pitannâ Farmacevtičnoï ì Medičnoï Nauki ta Praktiki
Subjects:
Online Access:http://pharmed.zsmu.edu.ua/article/view/70906/67973
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1849251167158140928
author K. V. Аleksandrova
S. V. Levich
Ye. K. Mikhalchenko
D. M. Sinchenko
author_facet K. V. Аleksandrova
S. V. Levich
Ye. K. Mikhalchenko
D. M. Sinchenko
author_sort K. V. Аleksandrova
collection DOAJ
description Introduction. Analysis of last years’ literature shows, that the most wide spread drugs are those, which contain in their structures heterocyclic fragment. Such trend could be explained by the fact that, heterocycle containing compounds are the part of the number of substances, which play an important role in the metabolic processes. It should be noted, that most of these drugs have unpleasant side effects and some of them are rather toxic. Xanthine derivatives are low toxic natural compounds with wide spectrum of pronounced pharmacological properties (antioxidant, diuretic, antibacterial, anti-inflammatory etc.) and high variability of chemical modification, that make these compounds handy objects for pharmaceutical research. Thus, synthesis of novel less toxic biologically active compounds – potential medicines – by chemical modification of well-known natural substances, is one of the most important tasks of modern pharmaceutical science. Aim of our research was the development of method of 3-aryl(aralkyl)-8-hydrazinemethylxanthines and their N-substituted derivatives synthesis and studying their physical-chemical properties. Materials and methods. Melting points were determined using capillary method on DMP (M). 1Н NMR-spectra were recorded by Varian Mercury VX-200 device (company «Varian» – USA) solvent – (DMSO-d6), internal standard – ТМS. Elemental analysis of obtained compounds was produced on device Elementar Vario L cube. Results and discussion. We selected 3-aryl(aralkyl)-8-chloromethylxanthines as initial compounds for our study. By their interaction with hydrazine hydrate we obtained respective 8-hydrazinemethylxanthines. The next stage of our research was further chemical modification of obtained 8-hydrazinemethylxanthines using the high ability of hydrazine residue for nucleophilic addition reactions. So, we studied the interaction of 3-aryl(aralkyl)-8-hydrazinemethylxanthines with phenylisothiocyanate and carbonyl compounds and synthesized number of N-substituted 8-hydrazinemethylxanthines. The structures of all obtained compounds were proved by the elemental analysis and 1H NMR-spectroscopy. Conclusions. Obtained results of our work can be used for further search of biological active compounds among xanthine derivatives with hydrazine residue.
format Article
id doaj-art-82f5e552197a49889ace47e6b155a8a0
institution Kabale University
issn 2306-8094
2409-2932
language English
publishDate 2016-08-01
publisher Zaporizhzhia State Medical and Pharmaceutical University
record_format Article
series Aktualʹnì Pitannâ Farmacevtičnoï ì Medičnoï Nauki ta Praktiki
spelling doaj-art-82f5e552197a49889ace47e6b155a8a02025-08-20T03:57:03ZengZaporizhzhia State Medical and Pharmaceutical UniversityAktualʹnì Pitannâ Farmacevtičnoï ì Medičnoï Nauki ta Praktiki2306-80942409-29322016-08-012263110.14739/2409-2932.2016.2.70906Synthesis and physical-chemical properties of 3-aryl-(aralkyl)-8-hydrazinemethylxanthines and their N-substituted derivativesK. V. АleksandrovaS. V. LevichYe. K. MikhalchenkoD. M. SinchenkoIntroduction. Analysis of last years’ literature shows, that the most wide spread drugs are those, which contain in their structures heterocyclic fragment. Such trend could be explained by the fact that, heterocycle containing compounds are the part of the number of substances, which play an important role in the metabolic processes. It should be noted, that most of these drugs have unpleasant side effects and some of them are rather toxic. Xanthine derivatives are low toxic natural compounds with wide spectrum of pronounced pharmacological properties (antioxidant, diuretic, antibacterial, anti-inflammatory etc.) and high variability of chemical modification, that make these compounds handy objects for pharmaceutical research. Thus, synthesis of novel less toxic biologically active compounds – potential medicines – by chemical modification of well-known natural substances, is one of the most important tasks of modern pharmaceutical science. Aim of our research was the development of method of 3-aryl(aralkyl)-8-hydrazinemethylxanthines and their N-substituted derivatives synthesis and studying their physical-chemical properties. Materials and methods. Melting points were determined using capillary method on DMP (M). 1Н NMR-spectra were recorded by Varian Mercury VX-200 device (company «Varian» – USA) solvent – (DMSO-d6), internal standard – ТМS. Elemental analysis of obtained compounds was produced on device Elementar Vario L cube. Results and discussion. We selected 3-aryl(aralkyl)-8-chloromethylxanthines as initial compounds for our study. By their interaction with hydrazine hydrate we obtained respective 8-hydrazinemethylxanthines. The next stage of our research was further chemical modification of obtained 8-hydrazinemethylxanthines using the high ability of hydrazine residue for nucleophilic addition reactions. So, we studied the interaction of 3-aryl(aralkyl)-8-hydrazinemethylxanthines with phenylisothiocyanate and carbonyl compounds and synthesized number of N-substituted 8-hydrazinemethylxanthines. The structures of all obtained compounds were proved by the elemental analysis and 1H NMR-spectroscopy. Conclusions. Obtained results of our work can be used for further search of biological active compounds among xanthine derivatives with hydrazine residue.http://pharmed.zsmu.edu.ua/article/view/70906/67973xanthinesorganic synthesisNMR-spectroscopy
spellingShingle K. V. Аleksandrova
S. V. Levich
Ye. K. Mikhalchenko
D. M. Sinchenko
Synthesis and physical-chemical properties of 3-aryl-(aralkyl)-8-hydrazinemethylxanthines and their N-substituted derivatives
Aktualʹnì Pitannâ Farmacevtičnoï ì Medičnoï Nauki ta Praktiki
xanthines
organic synthesis
NMR-spectroscopy
title Synthesis and physical-chemical properties of 3-aryl-(aralkyl)-8-hydrazinemethylxanthines and their N-substituted derivatives
title_full Synthesis and physical-chemical properties of 3-aryl-(aralkyl)-8-hydrazinemethylxanthines and their N-substituted derivatives
title_fullStr Synthesis and physical-chemical properties of 3-aryl-(aralkyl)-8-hydrazinemethylxanthines and their N-substituted derivatives
title_full_unstemmed Synthesis and physical-chemical properties of 3-aryl-(aralkyl)-8-hydrazinemethylxanthines and their N-substituted derivatives
title_short Synthesis and physical-chemical properties of 3-aryl-(aralkyl)-8-hydrazinemethylxanthines and their N-substituted derivatives
title_sort synthesis and physical chemical properties of 3 aryl aralkyl 8 hydrazinemethylxanthines and their n substituted derivatives
topic xanthines
organic synthesis
NMR-spectroscopy
url http://pharmed.zsmu.edu.ua/article/view/70906/67973
work_keys_str_mv AT kvaleksandrova synthesisandphysicalchemicalpropertiesof3arylaralkyl8hydrazinemethylxanthinesandtheirnsubstitutedderivatives
AT svlevich synthesisandphysicalchemicalpropertiesof3arylaralkyl8hydrazinemethylxanthinesandtheirnsubstitutedderivatives
AT yekmikhalchenko synthesisandphysicalchemicalpropertiesof3arylaralkyl8hydrazinemethylxanthinesandtheirnsubstitutedderivatives
AT dmsinchenko synthesisandphysicalchemicalpropertiesof3arylaralkyl8hydrazinemethylxanthinesandtheirnsubstitutedderivatives