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New Pyrrole Derivatives as Promising Biological Agents: Design, Synthesis, Characterization, In Silico, and Cytotoxicity Evaluation

The current study describes the synthesis, physicochemical characterization and cytotoxicity evaluation of a new series of pyrrole derivatives in order to identify new bioactive molecules. The new pyrroles were obtained by reaction of benzimidazolium bromide derivatives with asymmetrical acetylenes...

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Autores principales: Ivan, Beatrice-Cristina, Barbuceanu, Stefania-Felicia, Hotnog, Camelia Mia, Anghel, Adriana Iuliana, Ancuceanu, Robert Viorel, Mihaila, Mirela Antonela, Brasoveanu, Lorelei Irina, Shova, Sergiu, Draghici, Constantin, Olaru, Octavian Tudorel, Nitulescu, George Mihai, Dinu, Mihaela, Dumitrascu, Florea
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9408590/
https://www.ncbi.nlm.nih.gov/pubmed/36012121
http://dx.doi.org/10.3390/ijms23168854
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author Ivan, Beatrice-Cristina
Barbuceanu, Stefania-Felicia
Hotnog, Camelia Mia
Anghel, Adriana Iuliana
Ancuceanu, Robert Viorel
Mihaila, Mirela Antonela
Brasoveanu, Lorelei Irina
Shova, Sergiu
Draghici, Constantin
Olaru, Octavian Tudorel
Nitulescu, George Mihai
Dinu, Mihaela
Dumitrascu, Florea
author_facet Ivan, Beatrice-Cristina
Barbuceanu, Stefania-Felicia
Hotnog, Camelia Mia
Anghel, Adriana Iuliana
Ancuceanu, Robert Viorel
Mihaila, Mirela Antonela
Brasoveanu, Lorelei Irina
Shova, Sergiu
Draghici, Constantin
Olaru, Octavian Tudorel
Nitulescu, George Mihai
Dinu, Mihaela
Dumitrascu, Florea
author_sort Ivan, Beatrice-Cristina
collection PubMed
description The current study describes the synthesis, physicochemical characterization and cytotoxicity evaluation of a new series of pyrrole derivatives in order to identify new bioactive molecules. The new pyrroles were obtained by reaction of benzimidazolium bromide derivatives with asymmetrical acetylenes in 1,2-epoxybutane under reflux through the Huisgen [3 + 2] cycloaddition of several ylide intermediates to the corresponding dipolarophiles. The intermediates salts were obtained from corresponding benzimidazole with bromoacetonitrile. The structures of the newly synthesized compounds were confirmed by elemental analysis, spectral techniques (i.e., IR, (1)H-NMR and (13)C-NMR) and single-crystal X-ray analysis. The cytotoxicity of the synthesized compounds was evaluated on plant cells (i.e., Triticum aestivum L.) and animal cells using aquatic crustaceans (i.e., Artemia franciscana Kellogg and Daphnia magna Straus). The potential antitumor activity of several of the pyrrole derivatives was studied by performing in vitro cytotoxicity assays on human adenocarcinoma-derived cell lines (i.e., LoVo (colon), MCF-7 (breast), and SK-OV-3 (ovary)) and normal human umbilical vein endothelial cells (HUVECs). The obtained results of the cytotoxicity assessment indicated that the tested compounds had nontoxic activity on Triticum aestivum L., while on Artemia franciscana Kellogg nauplii, only compounds 2c and 4c had moderate toxicity. On Daphnia magna, 4b and 4c showed high toxicity; 2a, 2b, and 2c moderate to high toxicity; only 4a and 4d were nontoxic. The compound-mediated cytotoxicity assays showed that several pyrrole compounds demonstrated dose- and time-dependent cytotoxic activity against all tested tumor cell lines, the highest antitumor properties being achieved by 4a and its homologue 4d, especially against LoVo colon cells.
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spelling pubmed-94085902022-08-26 New Pyrrole Derivatives as Promising Biological Agents: Design, Synthesis, Characterization, In Silico, and Cytotoxicity Evaluation Ivan, Beatrice-Cristina Barbuceanu, Stefania-Felicia Hotnog, Camelia Mia Anghel, Adriana Iuliana Ancuceanu, Robert Viorel Mihaila, Mirela Antonela Brasoveanu, Lorelei Irina Shova, Sergiu Draghici, Constantin Olaru, Octavian Tudorel Nitulescu, George Mihai Dinu, Mihaela Dumitrascu, Florea Int J Mol Sci Article The current study describes the synthesis, physicochemical characterization and cytotoxicity evaluation of a new series of pyrrole derivatives in order to identify new bioactive molecules. The new pyrroles were obtained by reaction of benzimidazolium bromide derivatives with asymmetrical acetylenes in 1,2-epoxybutane under reflux through the Huisgen [3 + 2] cycloaddition of several ylide intermediates to the corresponding dipolarophiles. The intermediates salts were obtained from corresponding benzimidazole with bromoacetonitrile. The structures of the newly synthesized compounds were confirmed by elemental analysis, spectral techniques (i.e., IR, (1)H-NMR and (13)C-NMR) and single-crystal X-ray analysis. The cytotoxicity of the synthesized compounds was evaluated on plant cells (i.e., Triticum aestivum L.) and animal cells using aquatic crustaceans (i.e., Artemia franciscana Kellogg and Daphnia magna Straus). The potential antitumor activity of several of the pyrrole derivatives was studied by performing in vitro cytotoxicity assays on human adenocarcinoma-derived cell lines (i.e., LoVo (colon), MCF-7 (breast), and SK-OV-3 (ovary)) and normal human umbilical vein endothelial cells (HUVECs). The obtained results of the cytotoxicity assessment indicated that the tested compounds had nontoxic activity on Triticum aestivum L., while on Artemia franciscana Kellogg nauplii, only compounds 2c and 4c had moderate toxicity. On Daphnia magna, 4b and 4c showed high toxicity; 2a, 2b, and 2c moderate to high toxicity; only 4a and 4d were nontoxic. The compound-mediated cytotoxicity assays showed that several pyrrole compounds demonstrated dose- and time-dependent cytotoxic activity against all tested tumor cell lines, the highest antitumor properties being achieved by 4a and its homologue 4d, especially against LoVo colon cells. MDPI 2022-08-09 /pmc/articles/PMC9408590/ /pubmed/36012121 http://dx.doi.org/10.3390/ijms23168854 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ivan, Beatrice-Cristina
Barbuceanu, Stefania-Felicia
Hotnog, Camelia Mia
Anghel, Adriana Iuliana
Ancuceanu, Robert Viorel
Mihaila, Mirela Antonela
Brasoveanu, Lorelei Irina
Shova, Sergiu
Draghici, Constantin
Olaru, Octavian Tudorel
Nitulescu, George Mihai
Dinu, Mihaela
Dumitrascu, Florea
New Pyrrole Derivatives as Promising Biological Agents: Design, Synthesis, Characterization, In Silico, and Cytotoxicity Evaluation
title New Pyrrole Derivatives as Promising Biological Agents: Design, Synthesis, Characterization, In Silico, and Cytotoxicity Evaluation
title_full New Pyrrole Derivatives as Promising Biological Agents: Design, Synthesis, Characterization, In Silico, and Cytotoxicity Evaluation
title_fullStr New Pyrrole Derivatives as Promising Biological Agents: Design, Synthesis, Characterization, In Silico, and Cytotoxicity Evaluation
title_full_unstemmed New Pyrrole Derivatives as Promising Biological Agents: Design, Synthesis, Characterization, In Silico, and Cytotoxicity Evaluation
title_short New Pyrrole Derivatives as Promising Biological Agents: Design, Synthesis, Characterization, In Silico, and Cytotoxicity Evaluation
title_sort new pyrrole derivatives as promising biological agents: design, synthesis, characterization, in silico, and cytotoxicity evaluation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9408590/
https://www.ncbi.nlm.nih.gov/pubmed/36012121
http://dx.doi.org/10.3390/ijms23168854
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