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Piperine–Chlorogenic Acid Hybrid Inhibits the Proliferation of the SK-MEL-147 Melanoma Cells by Modulating Mitotic Kinases

Melanoma is considered the most aggressive form of skin cancer, showing high metastatic potential and persistent high mortality rates despite the introduction of immunotherapy and targeted therapies. Thus, it is important to identify new drug candidates for melanoma. The design of hybrid molecules,...

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Autores principales: Pressete, Carolina Girotto, Viegas, Flávia Pereira Dias, Campos, Thâmara Gaspar, Caixeta, Ester Siqueira, Hanemann, João Adolfo Costa, Ferreira-Silva, Guilherme Álvaro, Zavan, Bruno, Aissa, Alexandre Ferro, Miyazawa, Marta, Viegas-Jr, Claudio, Ionta, Marisa
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9965075/
https://www.ncbi.nlm.nih.gov/pubmed/37259298
http://dx.doi.org/10.3390/ph16020145
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author Pressete, Carolina Girotto
Viegas, Flávia Pereira Dias
Campos, Thâmara Gaspar
Caixeta, Ester Siqueira
Hanemann, João Adolfo Costa
Ferreira-Silva, Guilherme Álvaro
Zavan, Bruno
Aissa, Alexandre Ferro
Miyazawa, Marta
Viegas-Jr, Claudio
Ionta, Marisa
author_facet Pressete, Carolina Girotto
Viegas, Flávia Pereira Dias
Campos, Thâmara Gaspar
Caixeta, Ester Siqueira
Hanemann, João Adolfo Costa
Ferreira-Silva, Guilherme Álvaro
Zavan, Bruno
Aissa, Alexandre Ferro
Miyazawa, Marta
Viegas-Jr, Claudio
Ionta, Marisa
author_sort Pressete, Carolina Girotto
collection PubMed
description Melanoma is considered the most aggressive form of skin cancer, showing high metastatic potential and persistent high mortality rates despite the introduction of immunotherapy and targeted therapies. Thus, it is important to identify new drug candidates for melanoma. The design of hybrid molecules, with different pharmacophore fragments combined in the same scaffold, is an interesting strategy for obtaining new multi-target and more effective anticancer drugs. We designed nine hybrid compounds bearing piperine and chlorogenic acid pharmacophoric groups and evaluated their antitumoral potential on melanoma cells with distinct mutational profiles SK-MEL-147, CHL-1 and WM1366. We identified the compound named PQM-277 (3a) to be the most cytotoxic one, inhibiting mitosis progression and promoting an accumulation of cells in pro-metaphase and metaphase by altering the expression of genes that govern G2/M transition and mitosis onset. Compound 3a downregulated FOXM1, CCNB1, CDK1, AURKA, AURKB, and PLK1, and upregulated CDKN1A. Molecular docking showed that 3a could interact with the CUL1-RBX1 complex, which activity is necessary to trigger molecular events essential for FOXM1 transactivation and, in turn, G2/M gene expression. In addition, compound 3a effectively induced apoptosis by increasing BAX/BCL2 ratio. Our findings demonstrate that 3a is an important antitumor candidate prototype and support further investigations to evaluate its potential for melanoma treatment, especially for refractory cases to BRAF/MEK inhibitors.
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spelling pubmed-99650752023-02-26 Piperine–Chlorogenic Acid Hybrid Inhibits the Proliferation of the SK-MEL-147 Melanoma Cells by Modulating Mitotic Kinases Pressete, Carolina Girotto Viegas, Flávia Pereira Dias Campos, Thâmara Gaspar Caixeta, Ester Siqueira Hanemann, João Adolfo Costa Ferreira-Silva, Guilherme Álvaro Zavan, Bruno Aissa, Alexandre Ferro Miyazawa, Marta Viegas-Jr, Claudio Ionta, Marisa Pharmaceuticals (Basel) Article Melanoma is considered the most aggressive form of skin cancer, showing high metastatic potential and persistent high mortality rates despite the introduction of immunotherapy and targeted therapies. Thus, it is important to identify new drug candidates for melanoma. The design of hybrid molecules, with different pharmacophore fragments combined in the same scaffold, is an interesting strategy for obtaining new multi-target and more effective anticancer drugs. We designed nine hybrid compounds bearing piperine and chlorogenic acid pharmacophoric groups and evaluated their antitumoral potential on melanoma cells with distinct mutational profiles SK-MEL-147, CHL-1 and WM1366. We identified the compound named PQM-277 (3a) to be the most cytotoxic one, inhibiting mitosis progression and promoting an accumulation of cells in pro-metaphase and metaphase by altering the expression of genes that govern G2/M transition and mitosis onset. Compound 3a downregulated FOXM1, CCNB1, CDK1, AURKA, AURKB, and PLK1, and upregulated CDKN1A. Molecular docking showed that 3a could interact with the CUL1-RBX1 complex, which activity is necessary to trigger molecular events essential for FOXM1 transactivation and, in turn, G2/M gene expression. In addition, compound 3a effectively induced apoptosis by increasing BAX/BCL2 ratio. Our findings demonstrate that 3a is an important antitumor candidate prototype and support further investigations to evaluate its potential for melanoma treatment, especially for refractory cases to BRAF/MEK inhibitors. MDPI 2023-01-19 /pmc/articles/PMC9965075/ /pubmed/37259298 http://dx.doi.org/10.3390/ph16020145 Text en © 2023 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
Pressete, Carolina Girotto
Viegas, Flávia Pereira Dias
Campos, Thâmara Gaspar
Caixeta, Ester Siqueira
Hanemann, João Adolfo Costa
Ferreira-Silva, Guilherme Álvaro
Zavan, Bruno
Aissa, Alexandre Ferro
Miyazawa, Marta
Viegas-Jr, Claudio
Ionta, Marisa
Piperine–Chlorogenic Acid Hybrid Inhibits the Proliferation of the SK-MEL-147 Melanoma Cells by Modulating Mitotic Kinases
title Piperine–Chlorogenic Acid Hybrid Inhibits the Proliferation of the SK-MEL-147 Melanoma Cells by Modulating Mitotic Kinases
title_full Piperine–Chlorogenic Acid Hybrid Inhibits the Proliferation of the SK-MEL-147 Melanoma Cells by Modulating Mitotic Kinases
title_fullStr Piperine–Chlorogenic Acid Hybrid Inhibits the Proliferation of the SK-MEL-147 Melanoma Cells by Modulating Mitotic Kinases
title_full_unstemmed Piperine–Chlorogenic Acid Hybrid Inhibits the Proliferation of the SK-MEL-147 Melanoma Cells by Modulating Mitotic Kinases
title_short Piperine–Chlorogenic Acid Hybrid Inhibits the Proliferation of the SK-MEL-147 Melanoma Cells by Modulating Mitotic Kinases
title_sort piperine–chlorogenic acid hybrid inhibits the proliferation of the sk-mel-147 melanoma cells by modulating mitotic kinases
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9965075/
https://www.ncbi.nlm.nih.gov/pubmed/37259298
http://dx.doi.org/10.3390/ph16020145
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