Cargando…

New Organotin (IV) Compounds Derived from Dehydroacetic Acid and Thiosemicarbazides: Synthesis, Rational Design, Cytotoxic Evaluation, and Molecular Docking Simulation

Organotin complexes were prepared through a one-pot reaction with three components by reacting thiosemicarbazide or 4-methyl-3-thiosemicarbazide or 4-phenylthiosemicarbazide, dehydroacetic acid (DHA) and dibutyl, diphenyl, dicyclohexyl, and bis[(trimethylsilyl)methyl]tin(IV) oxides; all complexes we...

Descripción completa

Detalles Bibliográficos
Autores principales: Gómez, Elizabeth, Galván-Hidalgo, José Miguel, Pérez-Cuéllar, Guillermo, Huerta-Landa, Karoline Alondra, González-Hernández, Arturo, Gómez-García, Omar, Andrade-Pavón, Dulce, Ramírez-Apan, Teresa, Rodríguez Hernández, Karla Daniela, Hernández, Simón, Cano-Sánchez, Patricia, Gómez-Velasco, Homero
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10620030/
https://www.ncbi.nlm.nih.gov/pubmed/37920233
http://dx.doi.org/10.1155/2023/7901843
_version_ 1785130119987200000
author Gómez, Elizabeth
Galván-Hidalgo, José Miguel
Pérez-Cuéllar, Guillermo
Huerta-Landa, Karoline Alondra
González-Hernández, Arturo
Gómez-García, Omar
Andrade-Pavón, Dulce
Ramírez-Apan, Teresa
Rodríguez Hernández, Karla Daniela
Hernández, Simón
Cano-Sánchez, Patricia
Gómez-Velasco, Homero
author_facet Gómez, Elizabeth
Galván-Hidalgo, José Miguel
Pérez-Cuéllar, Guillermo
Huerta-Landa, Karoline Alondra
González-Hernández, Arturo
Gómez-García, Omar
Andrade-Pavón, Dulce
Ramírez-Apan, Teresa
Rodríguez Hernández, Karla Daniela
Hernández, Simón
Cano-Sánchez, Patricia
Gómez-Velasco, Homero
author_sort Gómez, Elizabeth
collection PubMed
description Organotin complexes were prepared through a one-pot reaction with three components by reacting thiosemicarbazide or 4-methyl-3-thiosemicarbazide or 4-phenylthiosemicarbazide, dehydroacetic acid (DHA) and dibutyl, diphenyl, dicyclohexyl, and bis[(trimethylsilyl)methyl]tin(IV) oxides; all complexes were characterized by infrared (IR), ultraviolet-visible (UV-vis), mass spectrometry (MS), and nuclear magnetic resonance (NMR) spectroscopy. The (119)Sn NMR revealed chemical shifts corresponding to a pentacoordinated environment in solution. The X-ray crystallography of the two complexes evidenced the formation of monomeric complexes with a pentacoordinated geometry around tin via three donor atoms from the ligand, the sulfur of the thiol, the nitrogen of the imine group, and the oxygen of the pyran ring. The geometries of the five-coordinated complexes 3a (Bu(2)SnL3), 3c (Ph(2)SnL3), and 3d (Cy(2)SnL3) acid were intermediate between square pyramidal and trigonal bipyramidal, and complex 1a (Bu(2)SnL1) adopted a bipyramidal trigonal geometry (BPT). The sulforhodamine B assay assessed the cytotoxicity of organotin(IV) complexes against the MDA-MB-231 and MCF-7 (human mammary adenocarcinoma) cell lines and one normal COS-7 (African green monkey kidney fibroblast). The IC(50) values evidenced a significant antiproliferative effect on cancer cells; the complexes were more potent than the positive cisplatin control and the corresponding ligands, dehydroacetic acid thiosemicarbazone (L1), dehydroacetic acid-N(4)-methylthiosemicarbazone (L2), and dehydroacetic acid-N(4)-phenylthiosemicarbazone (L3). The IC(50) values also indicated that the organotin(IV) complexes were more cytotoxic against the triple-negative breast cell line MDA-MB-231 than MCF-7, inducing significant morphological alterations. The interactions of organotin(IV) 1c (Ph(2)SnL1), 1d (Cy(2)SnL1), and 1e (((CH(3))(3)SiCH(2))(2)SnL1) were evaluated with ss-DNA by fluorescence; intensity changes of the fluorescence were indicative of the displacement of ethidium bromide (EB), confirming the interaction of the organotin(IV) complexes with ss-DNA; the results showed a DNA binding affinity. The thermodynamic parameters obtained through isothermal titration calorimetry showed that the interaction of 1c (Ph(2)SnL1), with ss-ADN, was exothermic. Molecular docking studies also demonstrated that the organotin(IV) complexes were intercalated in DNA by conventional hydrogen bonds, carbon-hydrogen bonds, and π-alkyl interactions. These complexes furthermore showed a greater affinity towards DNA than cisplatin.
format Online
Article
Text
id pubmed-10620030
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher Hindawi
record_format MEDLINE/PubMed
spelling pubmed-106200302023-11-02 New Organotin (IV) Compounds Derived from Dehydroacetic Acid and Thiosemicarbazides: Synthesis, Rational Design, Cytotoxic Evaluation, and Molecular Docking Simulation Gómez, Elizabeth Galván-Hidalgo, José Miguel Pérez-Cuéllar, Guillermo Huerta-Landa, Karoline Alondra González-Hernández, Arturo Gómez-García, Omar Andrade-Pavón, Dulce Ramírez-Apan, Teresa Rodríguez Hernández, Karla Daniela Hernández, Simón Cano-Sánchez, Patricia Gómez-Velasco, Homero Bioinorg Chem Appl Research Article Organotin complexes were prepared through a one-pot reaction with three components by reacting thiosemicarbazide or 4-methyl-3-thiosemicarbazide or 4-phenylthiosemicarbazide, dehydroacetic acid (DHA) and dibutyl, diphenyl, dicyclohexyl, and bis[(trimethylsilyl)methyl]tin(IV) oxides; all complexes were characterized by infrared (IR), ultraviolet-visible (UV-vis), mass spectrometry (MS), and nuclear magnetic resonance (NMR) spectroscopy. The (119)Sn NMR revealed chemical shifts corresponding to a pentacoordinated environment in solution. The X-ray crystallography of the two complexes evidenced the formation of monomeric complexes with a pentacoordinated geometry around tin via three donor atoms from the ligand, the sulfur of the thiol, the nitrogen of the imine group, and the oxygen of the pyran ring. The geometries of the five-coordinated complexes 3a (Bu(2)SnL3), 3c (Ph(2)SnL3), and 3d (Cy(2)SnL3) acid were intermediate between square pyramidal and trigonal bipyramidal, and complex 1a (Bu(2)SnL1) adopted a bipyramidal trigonal geometry (BPT). The sulforhodamine B assay assessed the cytotoxicity of organotin(IV) complexes against the MDA-MB-231 and MCF-7 (human mammary adenocarcinoma) cell lines and one normal COS-7 (African green monkey kidney fibroblast). The IC(50) values evidenced a significant antiproliferative effect on cancer cells; the complexes were more potent than the positive cisplatin control and the corresponding ligands, dehydroacetic acid thiosemicarbazone (L1), dehydroacetic acid-N(4)-methylthiosemicarbazone (L2), and dehydroacetic acid-N(4)-phenylthiosemicarbazone (L3). The IC(50) values also indicated that the organotin(IV) complexes were more cytotoxic against the triple-negative breast cell line MDA-MB-231 than MCF-7, inducing significant morphological alterations. The interactions of organotin(IV) 1c (Ph(2)SnL1), 1d (Cy(2)SnL1), and 1e (((CH(3))(3)SiCH(2))(2)SnL1) were evaluated with ss-DNA by fluorescence; intensity changes of the fluorescence were indicative of the displacement of ethidium bromide (EB), confirming the interaction of the organotin(IV) complexes with ss-DNA; the results showed a DNA binding affinity. The thermodynamic parameters obtained through isothermal titration calorimetry showed that the interaction of 1c (Ph(2)SnL1), with ss-ADN, was exothermic. Molecular docking studies also demonstrated that the organotin(IV) complexes were intercalated in DNA by conventional hydrogen bonds, carbon-hydrogen bonds, and π-alkyl interactions. These complexes furthermore showed a greater affinity towards DNA than cisplatin. Hindawi 2023-10-25 /pmc/articles/PMC10620030/ /pubmed/37920233 http://dx.doi.org/10.1155/2023/7901843 Text en Copyright © 2023 Elizabeth Gómez et al. https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Gómez, Elizabeth
Galván-Hidalgo, José Miguel
Pérez-Cuéllar, Guillermo
Huerta-Landa, Karoline Alondra
González-Hernández, Arturo
Gómez-García, Omar
Andrade-Pavón, Dulce
Ramírez-Apan, Teresa
Rodríguez Hernández, Karla Daniela
Hernández, Simón
Cano-Sánchez, Patricia
Gómez-Velasco, Homero
New Organotin (IV) Compounds Derived from Dehydroacetic Acid and Thiosemicarbazides: Synthesis, Rational Design, Cytotoxic Evaluation, and Molecular Docking Simulation
title New Organotin (IV) Compounds Derived from Dehydroacetic Acid and Thiosemicarbazides: Synthesis, Rational Design, Cytotoxic Evaluation, and Molecular Docking Simulation
title_full New Organotin (IV) Compounds Derived from Dehydroacetic Acid and Thiosemicarbazides: Synthesis, Rational Design, Cytotoxic Evaluation, and Molecular Docking Simulation
title_fullStr New Organotin (IV) Compounds Derived from Dehydroacetic Acid and Thiosemicarbazides: Synthesis, Rational Design, Cytotoxic Evaluation, and Molecular Docking Simulation
title_full_unstemmed New Organotin (IV) Compounds Derived from Dehydroacetic Acid and Thiosemicarbazides: Synthesis, Rational Design, Cytotoxic Evaluation, and Molecular Docking Simulation
title_short New Organotin (IV) Compounds Derived from Dehydroacetic Acid and Thiosemicarbazides: Synthesis, Rational Design, Cytotoxic Evaluation, and Molecular Docking Simulation
title_sort new organotin (iv) compounds derived from dehydroacetic acid and thiosemicarbazides: synthesis, rational design, cytotoxic evaluation, and molecular docking simulation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10620030/
https://www.ncbi.nlm.nih.gov/pubmed/37920233
http://dx.doi.org/10.1155/2023/7901843
work_keys_str_mv AT gomezelizabeth neworganotinivcompoundsderivedfromdehydroaceticacidandthiosemicarbazidessynthesisrationaldesigncytotoxicevaluationandmoleculardockingsimulation
AT galvanhidalgojosemiguel neworganotinivcompoundsderivedfromdehydroaceticacidandthiosemicarbazidessynthesisrationaldesigncytotoxicevaluationandmoleculardockingsimulation
AT perezcuellarguillermo neworganotinivcompoundsderivedfromdehydroaceticacidandthiosemicarbazidessynthesisrationaldesigncytotoxicevaluationandmoleculardockingsimulation
AT huertalandakarolinealondra neworganotinivcompoundsderivedfromdehydroaceticacidandthiosemicarbazidessynthesisrationaldesigncytotoxicevaluationandmoleculardockingsimulation
AT gonzalezhernandezarturo neworganotinivcompoundsderivedfromdehydroaceticacidandthiosemicarbazidessynthesisrationaldesigncytotoxicevaluationandmoleculardockingsimulation
AT gomezgarciaomar neworganotinivcompoundsderivedfromdehydroaceticacidandthiosemicarbazidessynthesisrationaldesigncytotoxicevaluationandmoleculardockingsimulation
AT andradepavondulce neworganotinivcompoundsderivedfromdehydroaceticacidandthiosemicarbazidessynthesisrationaldesigncytotoxicevaluationandmoleculardockingsimulation
AT ramirezapanteresa neworganotinivcompoundsderivedfromdehydroaceticacidandthiosemicarbazidessynthesisrationaldesigncytotoxicevaluationandmoleculardockingsimulation
AT rodriguezhernandezkarladaniela neworganotinivcompoundsderivedfromdehydroaceticacidandthiosemicarbazidessynthesisrationaldesigncytotoxicevaluationandmoleculardockingsimulation
AT hernandezsimon neworganotinivcompoundsderivedfromdehydroaceticacidandthiosemicarbazidessynthesisrationaldesigncytotoxicevaluationandmoleculardockingsimulation
AT canosanchezpatricia neworganotinivcompoundsderivedfromdehydroaceticacidandthiosemicarbazidessynthesisrationaldesigncytotoxicevaluationandmoleculardockingsimulation
AT gomezvelascohomero neworganotinivcompoundsderivedfromdehydroaceticacidandthiosemicarbazidessynthesisrationaldesigncytotoxicevaluationandmoleculardockingsimulation