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Synthesis of Bis(Isoxazol-4-Ylmethylsulfanyl)Alkanes and Some Metal Complexes as a Hepatoprotective Agents

Purpose: This research is devoted to designing the synthesis of sulfanyl-substituted 3,5-dimethylisoxazoles, which contain structural analogues of the SAM drug in the molecule. SAM (S-adenosyl-L-methionine), formed in the biosynthetic process, is used as an effective hepatoprotective drug. Complexat...

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Autores principales: Akhmetova, Vnira Rakhimovna, Galimova, Rozalia Akramovna, Akhmadiev, Nail Salavatovich, Galimova, Albina Midkhatovna, Khisamutdinov, Ravil Akhmetzyanovich, Nurtdinova, Galiya Maratovna, Agletdinov, Eduard Feliksovich, Kataev, Valery Alekseevich
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Tabriz University of Medical Sciences 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6046414/
https://www.ncbi.nlm.nih.gov/pubmed/30023328
http://dx.doi.org/10.15171/apb.2018.031
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author Akhmetova, Vnira Rakhimovna
Galimova, Rozalia Akramovna
Akhmadiev, Nail Salavatovich
Galimova, Albina Midkhatovna
Khisamutdinov, Ravil Akhmetzyanovich
Nurtdinova, Galiya Maratovna
Agletdinov, Eduard Feliksovich
Kataev, Valery Alekseevich
author_facet Akhmetova, Vnira Rakhimovna
Galimova, Rozalia Akramovna
Akhmadiev, Nail Salavatovich
Galimova, Albina Midkhatovna
Khisamutdinov, Ravil Akhmetzyanovich
Nurtdinova, Galiya Maratovna
Agletdinov, Eduard Feliksovich
Kataev, Valery Alekseevich
author_sort Akhmetova, Vnira Rakhimovna
collection PubMed
description Purpose: This research is devoted to designing the synthesis of sulfanyl-substituted 3,5-dimethylisoxazoles, which contain structural analogues of the SAM drug in the molecule. SAM (S-adenosyl-L-methionine), formed in the biosynthetic process, is used as an effective hepatoprotective drug. Complexation and hepatoprotective properties of the combinatorial series of bis(isoxazolylsulfanyl)ethane have been studied. Methods: Bis(isoxazol-4-ylmethylsulfanyl)alkanes were synthesized using the one-pot method. The structures of compounds were established by one-dimensional ((1)H,(13)C) and two-dimensional (COSY, HCQS, HMBC) NMR spectroscopy, mass-spectrometry and X-ray diffraction. The biological activity of the combinatorial series of sulfanyl derivatives of diketones, azoles and their metal complexes has been studied by in vivo method. Simulation of the animal associated processes was carried out in accordance with the principles of bioethics. Screening studies of hepatoprotective activity were carried out in a model of acute CC1(4) intoxication after a single injection intraperitoneally as a 50% solution in olive oil. The pharmacologically known hepatoprotective drug SAM served as a control. Results: Two-step synthesis of novel α,ω-bis(isoxazol-4-ylmethylsulfanyl)alkanes was carried out via the multicomponent reaction between 2,4-pentandione, CH(2)O and α,ω-dithiols, then the resulting α,ω-bis(1,3-diketone-2-ylmethylsulfanyl)alkanes were transformed by hydroxyl amine to obtain bis-isoxasole derivatives. Promising precursor 1,2-bis(isoxazol-4-ylmethylsulfanyl)ethane was converted to metal complexes by interaction with PdCl(2) or CuCl. The obtained compounds were found to be practically non-toxic compounds (1001 – 3000 mg/kg) according to the classification of K.K. Sidorov, but copper complex refers to low-toxic compounds substances (165 mg/kg). Compounds of sulfanyl ethane series demonstrate hepatoprotective activity. Conclusion: Palladium(II) complex being almost non-toxic possesses hepatoprotective activity comparable to the drug like SAM.
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spelling pubmed-60464142018-07-18 Synthesis of Bis(Isoxazol-4-Ylmethylsulfanyl)Alkanes and Some Metal Complexes as a Hepatoprotective Agents Akhmetova, Vnira Rakhimovna Galimova, Rozalia Akramovna Akhmadiev, Nail Salavatovich Galimova, Albina Midkhatovna Khisamutdinov, Ravil Akhmetzyanovich Nurtdinova, Galiya Maratovna Agletdinov, Eduard Feliksovich Kataev, Valery Alekseevich Adv Pharm Bull Research Article Purpose: This research is devoted to designing the synthesis of sulfanyl-substituted 3,5-dimethylisoxazoles, which contain structural analogues of the SAM drug in the molecule. SAM (S-adenosyl-L-methionine), formed in the biosynthetic process, is used as an effective hepatoprotective drug. Complexation and hepatoprotective properties of the combinatorial series of bis(isoxazolylsulfanyl)ethane have been studied. Methods: Bis(isoxazol-4-ylmethylsulfanyl)alkanes were synthesized using the one-pot method. The structures of compounds were established by one-dimensional ((1)H,(13)C) and two-dimensional (COSY, HCQS, HMBC) NMR spectroscopy, mass-spectrometry and X-ray diffraction. The biological activity of the combinatorial series of sulfanyl derivatives of diketones, azoles and their metal complexes has been studied by in vivo method. Simulation of the animal associated processes was carried out in accordance with the principles of bioethics. Screening studies of hepatoprotective activity were carried out in a model of acute CC1(4) intoxication after a single injection intraperitoneally as a 50% solution in olive oil. The pharmacologically known hepatoprotective drug SAM served as a control. Results: Two-step synthesis of novel α,ω-bis(isoxazol-4-ylmethylsulfanyl)alkanes was carried out via the multicomponent reaction between 2,4-pentandione, CH(2)O and α,ω-dithiols, then the resulting α,ω-bis(1,3-diketone-2-ylmethylsulfanyl)alkanes were transformed by hydroxyl amine to obtain bis-isoxasole derivatives. Promising precursor 1,2-bis(isoxazol-4-ylmethylsulfanyl)ethane was converted to metal complexes by interaction with PdCl(2) or CuCl. The obtained compounds were found to be practically non-toxic compounds (1001 – 3000 mg/kg) according to the classification of K.K. Sidorov, but copper complex refers to low-toxic compounds substances (165 mg/kg). Compounds of sulfanyl ethane series demonstrate hepatoprotective activity. Conclusion: Palladium(II) complex being almost non-toxic possesses hepatoprotective activity comparable to the drug like SAM. Tabriz University of Medical Sciences 2018-06 2018-06-19 /pmc/articles/PMC6046414/ /pubmed/30023328 http://dx.doi.org/10.15171/apb.2018.031 Text en ©2018 The Authors. http://creativecommons.org/licenses/by/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution (CC BY), which permits unrestricted use, distribution, and reproduction in any medium, as long as the original authors and source are cited. No permission is required from the authors or the publishers.
spellingShingle Research Article
Akhmetova, Vnira Rakhimovna
Galimova, Rozalia Akramovna
Akhmadiev, Nail Salavatovich
Galimova, Albina Midkhatovna
Khisamutdinov, Ravil Akhmetzyanovich
Nurtdinova, Galiya Maratovna
Agletdinov, Eduard Feliksovich
Kataev, Valery Alekseevich
Synthesis of Bis(Isoxazol-4-Ylmethylsulfanyl)Alkanes and Some Metal Complexes as a Hepatoprotective Agents
title Synthesis of Bis(Isoxazol-4-Ylmethylsulfanyl)Alkanes and Some Metal Complexes as a Hepatoprotective Agents
title_full Synthesis of Bis(Isoxazol-4-Ylmethylsulfanyl)Alkanes and Some Metal Complexes as a Hepatoprotective Agents
title_fullStr Synthesis of Bis(Isoxazol-4-Ylmethylsulfanyl)Alkanes and Some Metal Complexes as a Hepatoprotective Agents
title_full_unstemmed Synthesis of Bis(Isoxazol-4-Ylmethylsulfanyl)Alkanes and Some Metal Complexes as a Hepatoprotective Agents
title_short Synthesis of Bis(Isoxazol-4-Ylmethylsulfanyl)Alkanes and Some Metal Complexes as a Hepatoprotective Agents
title_sort synthesis of bis(isoxazol-4-ylmethylsulfanyl)alkanes and some metal complexes as a hepatoprotective agents
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6046414/
https://www.ncbi.nlm.nih.gov/pubmed/30023328
http://dx.doi.org/10.15171/apb.2018.031
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