New Estrone Oxime Derivatives: Synthesis, Cytotoxic Evaluation and Docking Studies

The interest in the introduction of the oxime group in molecules aiming to improve their biological effects is increasing. This work aimed to develop new steroidal oximes of the estrane series with potential antitumor interest. For this, several oximes were synthesized by reaction of hydroxylamine w...

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Main Authors: Catarina Canário, Mariana Matias, Vanessa Brito, Adriana O. Santos, Amílcar Falcão, Samuel Silvestre, Gilberto Alves
Format: Article
Language:English
Published: MDPI AG 2021-05-01
Series:Molecules
Subjects:
Online Access:https://www.mdpi.com/1420-3049/26/9/2687
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spelling doaj-6fea1e802f3b485c908e163532ac45b12021-05-31T23:10:37ZengMDPI AGMolecules1420-30492021-05-01262687268710.3390/molecules26092687New Estrone Oxime Derivatives: Synthesis, Cytotoxic Evaluation and Docking StudiesCatarina Canário0Mariana Matias1Vanessa Brito2Adriana O. Santos3Amílcar Falcão4Samuel Silvestre5Gilberto Alves6CICS-UBI–Health Sciences Research Centre, University of Beira Interior, 6200-506 Covilhã, PortugalCICS-UBI–Health Sciences Research Centre, University of Beira Interior, 6200-506 Covilhã, PortugalCICS-UBI–Health Sciences Research Centre, University of Beira Interior, 6200-506 Covilhã, PortugalCICS-UBI–Health Sciences Research Centre, University of Beira Interior, 6200-506 Covilhã, PortugalLaboratory of Pharmacology, Faculty of Pharmacy, University of Coimbra, 3000-548 Coimbra, PortugalCICS-UBI–Health Sciences Research Centre, University of Beira Interior, 6200-506 Covilhã, PortugalCICS-UBI–Health Sciences Research Centre, University of Beira Interior, 6200-506 Covilhã, PortugalThe interest in the introduction of the oxime group in molecules aiming to improve their biological effects is increasing. This work aimed to develop new steroidal oximes of the estrane series with potential antitumor interest. For this, several oximes were synthesized by reaction of hydroxylamine with the 17-ketone of estrone derivatives. Then, their cytotoxicity was evaluated in six cell lines. An estrogenicity assay, a cell cycle distribution analysis and a fluorescence microscopy study with Hoechst 3358 staining were performed with the most promising compound. In addition, molecular docking studies against estrogen receptor α, steroid sulfatase, 17β-hydroxysteroid dehydrogenase type 1 and β-tubulin were also accomplished. The 2-nitroestrone oxime showed higher cytotoxicity than the parent compound on MCF-7 cancer cells. Furthermore, the oximes bearing halogen groups in A-ring evidenced selectivity for HepaRG cells. Remarkably, the Δ<sup>9,11</sup>-estrone oxime was the most cytotoxic and arrested LNCaP cells in the G<sub>2</sub>/M phase. Fluorescence microscopy studies showed the presence of condensed DNA typical of prophase and condensed and fragmented nuclei characteristic of apoptosis. However, this oxime promoted the proliferation of T47-D cells. Interestingly, molecular docking studies estimated a strong interaction between Δ<sup>9,11</sup>-estrone oxime and estrogen receptor α and β-tubulin, which may account for the described effects.https://www.mdpi.com/1420-3049/26/9/2687estroneoximescytotoxicitycancerdocking
collection DOAJ
language English
format Article
sources DOAJ
author Catarina Canário
Mariana Matias
Vanessa Brito
Adriana O. Santos
Amílcar Falcão
Samuel Silvestre
Gilberto Alves
spellingShingle Catarina Canário
Mariana Matias
Vanessa Brito
Adriana O. Santos
Amílcar Falcão
Samuel Silvestre
Gilberto Alves
New Estrone Oxime Derivatives: Synthesis, Cytotoxic Evaluation and Docking Studies
Molecules
estrone
oximes
cytotoxicity
cancer
docking
author_facet Catarina Canário
Mariana Matias
Vanessa Brito
Adriana O. Santos
Amílcar Falcão
Samuel Silvestre
Gilberto Alves
author_sort Catarina Canário
title New Estrone Oxime Derivatives: Synthesis, Cytotoxic Evaluation and Docking Studies
title_short New Estrone Oxime Derivatives: Synthesis, Cytotoxic Evaluation and Docking Studies
title_full New Estrone Oxime Derivatives: Synthesis, Cytotoxic Evaluation and Docking Studies
title_fullStr New Estrone Oxime Derivatives: Synthesis, Cytotoxic Evaluation and Docking Studies
title_full_unstemmed New Estrone Oxime Derivatives: Synthesis, Cytotoxic Evaluation and Docking Studies
title_sort new estrone oxime derivatives: synthesis, cytotoxic evaluation and docking studies
publisher MDPI AG
series Molecules
issn 1420-3049
publishDate 2021-05-01
description The interest in the introduction of the oxime group in molecules aiming to improve their biological effects is increasing. This work aimed to develop new steroidal oximes of the estrane series with potential antitumor interest. For this, several oximes were synthesized by reaction of hydroxylamine with the 17-ketone of estrone derivatives. Then, their cytotoxicity was evaluated in six cell lines. An estrogenicity assay, a cell cycle distribution analysis and a fluorescence microscopy study with Hoechst 3358 staining were performed with the most promising compound. In addition, molecular docking studies against estrogen receptor α, steroid sulfatase, 17β-hydroxysteroid dehydrogenase type 1 and β-tubulin were also accomplished. The 2-nitroestrone oxime showed higher cytotoxicity than the parent compound on MCF-7 cancer cells. Furthermore, the oximes bearing halogen groups in A-ring evidenced selectivity for HepaRG cells. Remarkably, the Δ<sup>9,11</sup>-estrone oxime was the most cytotoxic and arrested LNCaP cells in the G<sub>2</sub>/M phase. Fluorescence microscopy studies showed the presence of condensed DNA typical of prophase and condensed and fragmented nuclei characteristic of apoptosis. However, this oxime promoted the proliferation of T47-D cells. Interestingly, molecular docking studies estimated a strong interaction between Δ<sup>9,11</sup>-estrone oxime and estrogen receptor α and β-tubulin, which may account for the described effects.
topic estrone
oximes
cytotoxicity
cancer
docking
url https://www.mdpi.com/1420-3049/26/9/2687
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AT marianamatias newestroneoximederivativessynthesiscytotoxicevaluationanddockingstudies
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AT adrianaosantos newestroneoximederivativessynthesiscytotoxicevaluationanddockingstudies
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AT gilbertoalves newestroneoximederivativessynthesiscytotoxicevaluationanddockingstudies
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