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Triazene salts: Design, synthesis, ctDNA interaction, lipophilicity determination, DFT calculation, and antiproliferative activity against human cancer cell lines

Synthesis, characterization and investigation of antiproliferative activity of nine triazene salts against human cancer cells lines (MV-4-11, MCF-7, JURKAT, HT-29, Hep-G2, HeLa, Du-145 and DAUDI), and normal human mammary epithelial cell line (MCF7-10A) is presented. The structures of novel compound...

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Autores principales: Cytarska, Joanna, Anisiewicz, Artur, Baranowska-Łączkowska, Angelika, Sikora, Adam, Wietrzyk, Joanna, Misiura, Konrad, Łączkowski, Krzysztof Z.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6438848/
https://www.ncbi.nlm.nih.gov/pubmed/30976172
http://dx.doi.org/10.1016/j.jsps.2018.11.012
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author Cytarska, Joanna
Anisiewicz, Artur
Baranowska-Łączkowska, Angelika
Sikora, Adam
Wietrzyk, Joanna
Misiura, Konrad
Łączkowski, Krzysztof Z.
author_facet Cytarska, Joanna
Anisiewicz, Artur
Baranowska-Łączkowska, Angelika
Sikora, Adam
Wietrzyk, Joanna
Misiura, Konrad
Łączkowski, Krzysztof Z.
author_sort Cytarska, Joanna
collection PubMed
description Synthesis, characterization and investigation of antiproliferative activity of nine triazene salts against human cancer cells lines (MV-4-11, MCF-7, JURKAT, HT-29, Hep-G2, HeLa, Du-145 and DAUDI), and normal human mammary epithelial cell line (MCF7-10A) is presented. The structures of novel compounds were determined using (1)H and (13)C NMR, and GC-APCI-MS analyses. Among the derivatives, compound 2c, 2d, 2e and 2f has very strong activity against biphenotypic B myelomonocytic leukemia MV4-11, with IC(50) values from 5.42 to 7.69 µg/ml. The cytotoxic activity of compounds 2c-2f against normal human mammary gland epithelial cells MCF-10A is 6–11 times lower than against cancer cell lines. Our results also show that compounds 2c and 2f have very strong activity against DAUDI and HT-29 with IC(50) 4.91 µg/ml and 5.59 µg/ml, respectively. Their lipophilicity was determined using reversed-phase ultra-performance liquid chromatography and correlated with antiproliferative activity. Our UV–Vis spectroscopic results indicate also that triazene salts tends to interact with negatively charged DNA phosphate chain. To support the experiment, theoretical calculations of the (1)H NMR shifts were carried out within the Density Functional Theory.
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spelling pubmed-64388482019-04-11 Triazene salts: Design, synthesis, ctDNA interaction, lipophilicity determination, DFT calculation, and antiproliferative activity against human cancer cell lines Cytarska, Joanna Anisiewicz, Artur Baranowska-Łączkowska, Angelika Sikora, Adam Wietrzyk, Joanna Misiura, Konrad Łączkowski, Krzysztof Z. Saudi Pharm J Article Synthesis, characterization and investigation of antiproliferative activity of nine triazene salts against human cancer cells lines (MV-4-11, MCF-7, JURKAT, HT-29, Hep-G2, HeLa, Du-145 and DAUDI), and normal human mammary epithelial cell line (MCF7-10A) is presented. The structures of novel compounds were determined using (1)H and (13)C NMR, and GC-APCI-MS analyses. Among the derivatives, compound 2c, 2d, 2e and 2f has very strong activity against biphenotypic B myelomonocytic leukemia MV4-11, with IC(50) values from 5.42 to 7.69 µg/ml. The cytotoxic activity of compounds 2c-2f against normal human mammary gland epithelial cells MCF-10A is 6–11 times lower than against cancer cell lines. Our results also show that compounds 2c and 2f have very strong activity against DAUDI and HT-29 with IC(50) 4.91 µg/ml and 5.59 µg/ml, respectively. Their lipophilicity was determined using reversed-phase ultra-performance liquid chromatography and correlated with antiproliferative activity. Our UV–Vis spectroscopic results indicate also that triazene salts tends to interact with negatively charged DNA phosphate chain. To support the experiment, theoretical calculations of the (1)H NMR shifts were carried out within the Density Functional Theory. Elsevier 2019-03 2018-11-22 /pmc/articles/PMC6438848/ /pubmed/30976172 http://dx.doi.org/10.1016/j.jsps.2018.11.012 Text en © 2018 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Cytarska, Joanna
Anisiewicz, Artur
Baranowska-Łączkowska, Angelika
Sikora, Adam
Wietrzyk, Joanna
Misiura, Konrad
Łączkowski, Krzysztof Z.
Triazene salts: Design, synthesis, ctDNA interaction, lipophilicity determination, DFT calculation, and antiproliferative activity against human cancer cell lines
title Triazene salts: Design, synthesis, ctDNA interaction, lipophilicity determination, DFT calculation, and antiproliferative activity against human cancer cell lines
title_full Triazene salts: Design, synthesis, ctDNA interaction, lipophilicity determination, DFT calculation, and antiproliferative activity against human cancer cell lines
title_fullStr Triazene salts: Design, synthesis, ctDNA interaction, lipophilicity determination, DFT calculation, and antiproliferative activity against human cancer cell lines
title_full_unstemmed Triazene salts: Design, synthesis, ctDNA interaction, lipophilicity determination, DFT calculation, and antiproliferative activity against human cancer cell lines
title_short Triazene salts: Design, synthesis, ctDNA interaction, lipophilicity determination, DFT calculation, and antiproliferative activity against human cancer cell lines
title_sort triazene salts: design, synthesis, ctdna interaction, lipophilicity determination, dft calculation, and antiproliferative activity against human cancer cell lines
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6438848/
https://www.ncbi.nlm.nih.gov/pubmed/30976172
http://dx.doi.org/10.1016/j.jsps.2018.11.012
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