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Synthesis and Evaluation of Antiproliferative Activity, Topoisomerase IIα Inhibition, DNA Binding and Non-Clinical Toxicity of New Acridine–Thiosemicarbazone Derivatives

In this study, we report the synthesis of twenty new acridine–thiosemicarbazone derivatives and their antiproliferative activities. Mechanisms of action such as the inhibition of topoisomerase IIα and the interaction with DNA have been studied for some of the most active derivatives by means of both...

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Autores principales: Sousa, Gleyton, de Almeida, Maria C. F., Lócio, Lucas L., dos Santos, Vanda L., Bezerra, Daniel P., Silva, Valdenizia R., de Almeida, Sinara M. V., Simon, Alice, Honório, Thiago da S., Cabral, Lucio M., Castro, Rosane N., de Moura, Ricardo O., Kümmerle, Arthur E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9506480/
https://www.ncbi.nlm.nih.gov/pubmed/36145320
http://dx.doi.org/10.3390/ph15091098
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author Sousa, Gleyton
de Almeida, Maria C. F.
Lócio, Lucas L.
dos Santos, Vanda L.
Bezerra, Daniel P.
Silva, Valdenizia R.
de Almeida, Sinara M. V.
Simon, Alice
Honório, Thiago da S.
Cabral, Lucio M.
Castro, Rosane N.
de Moura, Ricardo O.
Kümmerle, Arthur E.
author_facet Sousa, Gleyton
de Almeida, Maria C. F.
Lócio, Lucas L.
dos Santos, Vanda L.
Bezerra, Daniel P.
Silva, Valdenizia R.
de Almeida, Sinara M. V.
Simon, Alice
Honório, Thiago da S.
Cabral, Lucio M.
Castro, Rosane N.
de Moura, Ricardo O.
Kümmerle, Arthur E.
author_sort Sousa, Gleyton
collection PubMed
description In this study, we report the synthesis of twenty new acridine–thiosemicarbazone derivatives and their antiproliferative activities. Mechanisms of action such as the inhibition of topoisomerase IIα and the interaction with DNA have been studied for some of the most active derivatives by means of both in silico and in vitro methods, and evaluations of the non-clinical toxicities (in vivo) in mice. In general, the compounds showed greater cytotoxicity against B16-F10 cells, with the highest potency for DL-08 (IC(50) = 14.79 µM). Derivatives DL-01 (77%), DL-07 (74%) and DL-08 (79%) showed interesting inhibition of topoisomerase IIα when compared to amsacrine, at 100 µM. In silico studies proposed the way of bonding of these compounds and a possible stereoelectronic reason for the absence of enzymatic activity for CL-07 and DL-06. Interactions with DNA presented different spectroscopic effects and indicate that the compound CL-07 has higher affinity for DNA (Kb = 4.75 × 10(4) M(−1); Ksv = 2.6 × 10(3) M(−1)). In addition, compounds selected for non-clinical toxicity testing did not show serious signs of toxicity at the dose of 2000 mg/kg in mice; cytotoxic tests performed on leukemic cells (K-562) and its resistant form (K-562 Lucena 1) identified moderate potency for DL-01 and DL-08, with IC(50) between 11.45 and 17.32 µM.
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spelling pubmed-95064802022-09-24 Synthesis and Evaluation of Antiproliferative Activity, Topoisomerase IIα Inhibition, DNA Binding and Non-Clinical Toxicity of New Acridine–Thiosemicarbazone Derivatives Sousa, Gleyton de Almeida, Maria C. F. Lócio, Lucas L. dos Santos, Vanda L. Bezerra, Daniel P. Silva, Valdenizia R. de Almeida, Sinara M. V. Simon, Alice Honório, Thiago da S. Cabral, Lucio M. Castro, Rosane N. de Moura, Ricardo O. Kümmerle, Arthur E. Pharmaceuticals (Basel) Article In this study, we report the synthesis of twenty new acridine–thiosemicarbazone derivatives and their antiproliferative activities. Mechanisms of action such as the inhibition of topoisomerase IIα and the interaction with DNA have been studied for some of the most active derivatives by means of both in silico and in vitro methods, and evaluations of the non-clinical toxicities (in vivo) in mice. In general, the compounds showed greater cytotoxicity against B16-F10 cells, with the highest potency for DL-08 (IC(50) = 14.79 µM). Derivatives DL-01 (77%), DL-07 (74%) and DL-08 (79%) showed interesting inhibition of topoisomerase IIα when compared to amsacrine, at 100 µM. In silico studies proposed the way of bonding of these compounds and a possible stereoelectronic reason for the absence of enzymatic activity for CL-07 and DL-06. Interactions with DNA presented different spectroscopic effects and indicate that the compound CL-07 has higher affinity for DNA (Kb = 4.75 × 10(4) M(−1); Ksv = 2.6 × 10(3) M(−1)). In addition, compounds selected for non-clinical toxicity testing did not show serious signs of toxicity at the dose of 2000 mg/kg in mice; cytotoxic tests performed on leukemic cells (K-562) and its resistant form (K-562 Lucena 1) identified moderate potency for DL-01 and DL-08, with IC(50) between 11.45 and 17.32 µM. MDPI 2022-09-02 /pmc/articles/PMC9506480/ /pubmed/36145320 http://dx.doi.org/10.3390/ph15091098 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
Sousa, Gleyton
de Almeida, Maria C. F.
Lócio, Lucas L.
dos Santos, Vanda L.
Bezerra, Daniel P.
Silva, Valdenizia R.
de Almeida, Sinara M. V.
Simon, Alice
Honório, Thiago da S.
Cabral, Lucio M.
Castro, Rosane N.
de Moura, Ricardo O.
Kümmerle, Arthur E.
Synthesis and Evaluation of Antiproliferative Activity, Topoisomerase IIα Inhibition, DNA Binding and Non-Clinical Toxicity of New Acridine–Thiosemicarbazone Derivatives
title Synthesis and Evaluation of Antiproliferative Activity, Topoisomerase IIα Inhibition, DNA Binding and Non-Clinical Toxicity of New Acridine–Thiosemicarbazone Derivatives
title_full Synthesis and Evaluation of Antiproliferative Activity, Topoisomerase IIα Inhibition, DNA Binding and Non-Clinical Toxicity of New Acridine–Thiosemicarbazone Derivatives
title_fullStr Synthesis and Evaluation of Antiproliferative Activity, Topoisomerase IIα Inhibition, DNA Binding and Non-Clinical Toxicity of New Acridine–Thiosemicarbazone Derivatives
title_full_unstemmed Synthesis and Evaluation of Antiproliferative Activity, Topoisomerase IIα Inhibition, DNA Binding and Non-Clinical Toxicity of New Acridine–Thiosemicarbazone Derivatives
title_short Synthesis and Evaluation of Antiproliferative Activity, Topoisomerase IIα Inhibition, DNA Binding and Non-Clinical Toxicity of New Acridine–Thiosemicarbazone Derivatives
title_sort synthesis and evaluation of antiproliferative activity, topoisomerase iiα inhibition, dna binding and non-clinical toxicity of new acridine–thiosemicarbazone derivatives
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9506480/
https://www.ncbi.nlm.nih.gov/pubmed/36145320
http://dx.doi.org/10.3390/ph15091098
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