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Guanidine platinum(II) complexes: synthesis, in vitro antitumor activity, and DNA interactions()

The novel guanidine compounds trans-[Pt(NH(2)Me)(2){NH=C(NHMe)NR}(2)](Cl)(2) (R = NEt(2) [7], NC(5)H(10) [8]) (trans-7,8) were synthesized by the nucleophilic addition of methylamine to dialkylcyanamide ligands of the push–pull nitrile complexes trans-[PtCl(2)(RCN)(2)] (R = NEt(2), NC(5)H(10)). In v...

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Autores principales: Legin, Anton A., Jakupec, Michael A., Bokach, Nadezhda A., Tyan, Marina R., Kukushkin, Vadim Yu., Keppler, Bernhard K.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3989059/
https://www.ncbi.nlm.nih.gov/pubmed/24444821
http://dx.doi.org/10.1016/j.jinorgbio.2013.12.007
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author Legin, Anton A.
Jakupec, Michael A.
Bokach, Nadezhda A.
Tyan, Marina R.
Kukushkin, Vadim Yu.
Keppler, Bernhard K.
author_facet Legin, Anton A.
Jakupec, Michael A.
Bokach, Nadezhda A.
Tyan, Marina R.
Kukushkin, Vadim Yu.
Keppler, Bernhard K.
author_sort Legin, Anton A.
collection PubMed
description The novel guanidine compounds trans-[Pt(NH(2)Me)(2){NH=C(NHMe)NR}(2)](Cl)(2) (R = NEt(2) [7], NC(5)H(10) [8]) (trans-7,8) were synthesized by the nucleophilic addition of methylamine to dialkylcyanamide ligands of the push–pull nitrile complexes trans-[PtCl(2)(RCN)(2)] (R = NEt(2), NC(5)H(10)). In vitro cytotoxicity tests conducted for the entire series of the guanidine complexes, i.e. trans-7,8, the neutral cis- or trans-[PtCl(2){NH=C(NH(2))R}(2)] (cis-1–3 and trans-1–3) and the cationic cis- or trans-[Pt(NH(3))(2){NH=C(NH(2))R}(2)](Cl)(2) (cis-4–6 and trans-4–6) (R = NMe(2) [1,4], NEt(2) [2,5], NC(5)H(10) [3,6]) in two human cancer cell lines, CH1 (ovarian carcinoma) and SW480 (colon cancer), confirmed that the cytotoxicity of several trans-configured (trans-3,6) complexes is higher than that of cis-congeners (cis-3,6). Cellular platinum levels were analyzed by inductively coupled plasma mass spectrometry upon treatment of SW480 cells, revealing a dependence of cellular accumulation on the geometrical isomerism and the steric hindrance of the variable substituent R on the guanidine ligand. DNA interactions of selected guanidine complexes were studied in order to find hints for the possible reasons for their different activities. Changes induced to the electrophoretic mobility of a dsDNA plasmid confirmed the potency of the guanidine complexes (e.g. trans-1,3,5,6 and cis-1,3,4) to significantly alter DNA secondary structure, indicating DNA as a possible critical target of these compounds.
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spelling pubmed-39890592014-04-17 Guanidine platinum(II) complexes: synthesis, in vitro antitumor activity, and DNA interactions() Legin, Anton A. Jakupec, Michael A. Bokach, Nadezhda A. Tyan, Marina R. Kukushkin, Vadim Yu. Keppler, Bernhard K. J Inorg Biochem Article The novel guanidine compounds trans-[Pt(NH(2)Me)(2){NH=C(NHMe)NR}(2)](Cl)(2) (R = NEt(2) [7], NC(5)H(10) [8]) (trans-7,8) were synthesized by the nucleophilic addition of methylamine to dialkylcyanamide ligands of the push–pull nitrile complexes trans-[PtCl(2)(RCN)(2)] (R = NEt(2), NC(5)H(10)). In vitro cytotoxicity tests conducted for the entire series of the guanidine complexes, i.e. trans-7,8, the neutral cis- or trans-[PtCl(2){NH=C(NH(2))R}(2)] (cis-1–3 and trans-1–3) and the cationic cis- or trans-[Pt(NH(3))(2){NH=C(NH(2))R}(2)](Cl)(2) (cis-4–6 and trans-4–6) (R = NMe(2) [1,4], NEt(2) [2,5], NC(5)H(10) [3,6]) in two human cancer cell lines, CH1 (ovarian carcinoma) and SW480 (colon cancer), confirmed that the cytotoxicity of several trans-configured (trans-3,6) complexes is higher than that of cis-congeners (cis-3,6). Cellular platinum levels were analyzed by inductively coupled plasma mass spectrometry upon treatment of SW480 cells, revealing a dependence of cellular accumulation on the geometrical isomerism and the steric hindrance of the variable substituent R on the guanidine ligand. DNA interactions of selected guanidine complexes were studied in order to find hints for the possible reasons for their different activities. Changes induced to the electrophoretic mobility of a dsDNA plasmid confirmed the potency of the guanidine complexes (e.g. trans-1,3,5,6 and cis-1,3,4) to significantly alter DNA secondary structure, indicating DNA as a possible critical target of these compounds. Elsevier 2014-04 /pmc/articles/PMC3989059/ /pubmed/24444821 http://dx.doi.org/10.1016/j.jinorgbio.2013.12.007 Text en © 2013 The Authors https://creativecommons.org/licenses/by-nc-nd/3.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/3.0/).
spellingShingle Article
Legin, Anton A.
Jakupec, Michael A.
Bokach, Nadezhda A.
Tyan, Marina R.
Kukushkin, Vadim Yu.
Keppler, Bernhard K.
Guanidine platinum(II) complexes: synthesis, in vitro antitumor activity, and DNA interactions()
title Guanidine platinum(II) complexes: synthesis, in vitro antitumor activity, and DNA interactions()
title_full Guanidine platinum(II) complexes: synthesis, in vitro antitumor activity, and DNA interactions()
title_fullStr Guanidine platinum(II) complexes: synthesis, in vitro antitumor activity, and DNA interactions()
title_full_unstemmed Guanidine platinum(II) complexes: synthesis, in vitro antitumor activity, and DNA interactions()
title_short Guanidine platinum(II) complexes: synthesis, in vitro antitumor activity, and DNA interactions()
title_sort guanidine platinum(ii) complexes: synthesis, in vitro antitumor activity, and dna interactions()
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3989059/
https://www.ncbi.nlm.nih.gov/pubmed/24444821
http://dx.doi.org/10.1016/j.jinorgbio.2013.12.007
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