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Synthesis and Antiproliferative Activity of Novel Heterocyclic Indole-Trimethoxyphenyl Conjugates

The synthesis and biological evaluation of a series of novel heterocyclic indole derivatives is described. The consolidation of the combretastatin and bisindolylmaleimide templates towards the inclusion of a novel heterocyclic ring proffered a versatile pharmacophore with which to pursue chemical di...

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Autores principales: Cahill, Michael M., O’Shea, Kevin D., Pierce, Larry T., Winfield, Hannah J., Eccles, Kevin S., Lawrence, Simon E., McCarthy, Florence O.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5620606/
https://www.ncbi.nlm.nih.gov/pubmed/28678205
http://dx.doi.org/10.3390/ph10030062
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author Cahill, Michael M.
O’Shea, Kevin D.
Pierce, Larry T.
Winfield, Hannah J.
Eccles, Kevin S.
Lawrence, Simon E.
McCarthy, Florence O.
author_facet Cahill, Michael M.
O’Shea, Kevin D.
Pierce, Larry T.
Winfield, Hannah J.
Eccles, Kevin S.
Lawrence, Simon E.
McCarthy, Florence O.
author_sort Cahill, Michael M.
collection PubMed
description The synthesis and biological evaluation of a series of novel heterocyclic indole derivatives is described. The consolidation of the combretastatin and bisindolylmaleimide templates towards the inclusion of a novel heterocyclic ring proffered a versatile pharmacophore with which to pursue chemical diversification. Given literature precedent, maleimide was initially investigated in this role and the bioactivity assessed by measurement of NCI-60 cell panel growth. Subsequently, a range of 5-aminopyrazoles was designed and developed to explore the specific effect of heterocycle hydrogen bonding on cell growth. The unique electronic nature of the 5-aminopyrazole moiety allowed for regiospecific monosubstitution on different sites of the ring, such as thiourea substitution at the N(1) position for derivative 45 or trifluoroacetylation on the 5-amino position for 43. Further derivatisation led to the ultimate development of bicyclic pyrazolotriazinedione 41 and pyrimidine 42 systems. The antiproliferative activities of these 3,4-diaryl-5-aminopyrazoles were assessed using the NCI-60 cell screen, disclosing the discovery of distinct selectivity profiles towards a number of cell lines, such as SNB-75 CNS cancer, UO-31 and CAKI-1 renal cancer cells. A series of DNA topological assays discounted the interaction with topoisomerase II as a putative mechanism of action.
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spelling pubmed-56206062017-10-03 Synthesis and Antiproliferative Activity of Novel Heterocyclic Indole-Trimethoxyphenyl Conjugates Cahill, Michael M. O’Shea, Kevin D. Pierce, Larry T. Winfield, Hannah J. Eccles, Kevin S. Lawrence, Simon E. McCarthy, Florence O. Pharmaceuticals (Basel) Article The synthesis and biological evaluation of a series of novel heterocyclic indole derivatives is described. The consolidation of the combretastatin and bisindolylmaleimide templates towards the inclusion of a novel heterocyclic ring proffered a versatile pharmacophore with which to pursue chemical diversification. Given literature precedent, maleimide was initially investigated in this role and the bioactivity assessed by measurement of NCI-60 cell panel growth. Subsequently, a range of 5-aminopyrazoles was designed and developed to explore the specific effect of heterocycle hydrogen bonding on cell growth. The unique electronic nature of the 5-aminopyrazole moiety allowed for regiospecific monosubstitution on different sites of the ring, such as thiourea substitution at the N(1) position for derivative 45 or trifluoroacetylation on the 5-amino position for 43. Further derivatisation led to the ultimate development of bicyclic pyrazolotriazinedione 41 and pyrimidine 42 systems. The antiproliferative activities of these 3,4-diaryl-5-aminopyrazoles were assessed using the NCI-60 cell screen, disclosing the discovery of distinct selectivity profiles towards a number of cell lines, such as SNB-75 CNS cancer, UO-31 and CAKI-1 renal cancer cells. A series of DNA topological assays discounted the interaction with topoisomerase II as a putative mechanism of action. MDPI 2017-07-05 /pmc/articles/PMC5620606/ /pubmed/28678205 http://dx.doi.org/10.3390/ph10030062 Text en © 2017 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Cahill, Michael M.
O’Shea, Kevin D.
Pierce, Larry T.
Winfield, Hannah J.
Eccles, Kevin S.
Lawrence, Simon E.
McCarthy, Florence O.
Synthesis and Antiproliferative Activity of Novel Heterocyclic Indole-Trimethoxyphenyl Conjugates
title Synthesis and Antiproliferative Activity of Novel Heterocyclic Indole-Trimethoxyphenyl Conjugates
title_full Synthesis and Antiproliferative Activity of Novel Heterocyclic Indole-Trimethoxyphenyl Conjugates
title_fullStr Synthesis and Antiproliferative Activity of Novel Heterocyclic Indole-Trimethoxyphenyl Conjugates
title_full_unstemmed Synthesis and Antiproliferative Activity of Novel Heterocyclic Indole-Trimethoxyphenyl Conjugates
title_short Synthesis and Antiproliferative Activity of Novel Heterocyclic Indole-Trimethoxyphenyl Conjugates
title_sort synthesis and antiproliferative activity of novel heterocyclic indole-trimethoxyphenyl conjugates
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5620606/
https://www.ncbi.nlm.nih.gov/pubmed/28678205
http://dx.doi.org/10.3390/ph10030062
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