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Biguanide–transition metals complexes as potential drug for hyperglycemia treatment

Coordination compounds of Cu(ii), Ni(ii), Co(ii), and Zn(ii) with a type of biguanide (known commercially as metformin) have been synthesized and characterized using spectroscopic techniques (FT-IR, UV/VIS), X-ray diffraction techniques and thermal analysis. For all compounds, single crystals were o...

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Autores principales: Villamizar-Delgado, Stephanny, Porras-Osorio, Laura M., Piñeros, Octavio, Ellena, Javier, Balcazar, Norman, Varela-Miranda, Ruben E., D'Vries, Richard F.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9054726/
https://www.ncbi.nlm.nih.gov/pubmed/35514600
http://dx.doi.org/10.1039/d0ra04059b
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author Villamizar-Delgado, Stephanny
Porras-Osorio, Laura M.
Piñeros, Octavio
Ellena, Javier
Balcazar, Norman
Varela-Miranda, Ruben E.
D'Vries, Richard F.
author_facet Villamizar-Delgado, Stephanny
Porras-Osorio, Laura M.
Piñeros, Octavio
Ellena, Javier
Balcazar, Norman
Varela-Miranda, Ruben E.
D'Vries, Richard F.
author_sort Villamizar-Delgado, Stephanny
collection PubMed
description Coordination compounds of Cu(ii), Ni(ii), Co(ii), and Zn(ii) with a type of biguanide (known commercially as metformin) have been synthesized and characterized using spectroscopic techniques (FT-IR, UV/VIS), X-ray diffraction techniques and thermal analysis. For all compounds, single crystals were obtained for single-crystal X-ray diffraction. For the first time, an octahedral cobalt compound with the formula [Co(C(4)H(11)N(5))(3)]Cl(2)·2H(2)O that crystallizes in the monoclinic space group C2/c with one molecule in the asymmetric unit has been obtained. Also, a novel nickel compound with the formula [Ni(C(4)H(11)N(5)) (C(4)H(10)N(5))]Cl·H(2)O that crystallizes in the monoclinic space group P2(1)/c with two molecules in the asymmetric unit was obtained. Finally, we obtained copper and zinc compounds that crystallize in the monoclinic space groups P2(1)/n and P2(1)/c with the general formula [Cu(C(4)H(11)N(5))(2)]Cl(2)·H(2)O and [Zn(C(4)H(12)N(5))Cl(3)], respectively. A structural and supramolecular analysis was developed for all compounds using Hirshfeld surface analysis and electrostatic potential maps. The cell viability of the obtained compounds was evaluated in C2C12 (ATCCCRL-1772™) mouse muscle cells and HepG2 (ATCC HB-8065™) human liver carcinoma cells by the MTT assay to determine the potential of the compounds as new safe drugs. The results demonstrate that the compounds exhibit low cytotoxicity at doses less than 250 μg mL(−1) with a cell viability greater than 80%.
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spelling pubmed-90547262022-05-04 Biguanide–transition metals complexes as potential drug for hyperglycemia treatment Villamizar-Delgado, Stephanny Porras-Osorio, Laura M. Piñeros, Octavio Ellena, Javier Balcazar, Norman Varela-Miranda, Ruben E. D'Vries, Richard F. RSC Adv Chemistry Coordination compounds of Cu(ii), Ni(ii), Co(ii), and Zn(ii) with a type of biguanide (known commercially as metformin) have been synthesized and characterized using spectroscopic techniques (FT-IR, UV/VIS), X-ray diffraction techniques and thermal analysis. For all compounds, single crystals were obtained for single-crystal X-ray diffraction. For the first time, an octahedral cobalt compound with the formula [Co(C(4)H(11)N(5))(3)]Cl(2)·2H(2)O that crystallizes in the monoclinic space group C2/c with one molecule in the asymmetric unit has been obtained. Also, a novel nickel compound with the formula [Ni(C(4)H(11)N(5)) (C(4)H(10)N(5))]Cl·H(2)O that crystallizes in the monoclinic space group P2(1)/c with two molecules in the asymmetric unit was obtained. Finally, we obtained copper and zinc compounds that crystallize in the monoclinic space groups P2(1)/n and P2(1)/c with the general formula [Cu(C(4)H(11)N(5))(2)]Cl(2)·H(2)O and [Zn(C(4)H(12)N(5))Cl(3)], respectively. A structural and supramolecular analysis was developed for all compounds using Hirshfeld surface analysis and electrostatic potential maps. The cell viability of the obtained compounds was evaluated in C2C12 (ATCCCRL-1772™) mouse muscle cells and HepG2 (ATCC HB-8065™) human liver carcinoma cells by the MTT assay to determine the potential of the compounds as new safe drugs. The results demonstrate that the compounds exhibit low cytotoxicity at doses less than 250 μg mL(−1) with a cell viability greater than 80%. The Royal Society of Chemistry 2020-06-16 /pmc/articles/PMC9054726/ /pubmed/35514600 http://dx.doi.org/10.1039/d0ra04059b Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Villamizar-Delgado, Stephanny
Porras-Osorio, Laura M.
Piñeros, Octavio
Ellena, Javier
Balcazar, Norman
Varela-Miranda, Ruben E.
D'Vries, Richard F.
Biguanide–transition metals complexes as potential drug for hyperglycemia treatment
title Biguanide–transition metals complexes as potential drug for hyperglycemia treatment
title_full Biguanide–transition metals complexes as potential drug for hyperglycemia treatment
title_fullStr Biguanide–transition metals complexes as potential drug for hyperglycemia treatment
title_full_unstemmed Biguanide–transition metals complexes as potential drug for hyperglycemia treatment
title_short Biguanide–transition metals complexes as potential drug for hyperglycemia treatment
title_sort biguanide–transition metals complexes as potential drug for hyperglycemia treatment
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9054726/
https://www.ncbi.nlm.nih.gov/pubmed/35514600
http://dx.doi.org/10.1039/d0ra04059b
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