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Evaluation of the Antitumor Effects of Platinum-Based [Pt(η(1)-C(2)H(4)-OR)(DMSO)(phen)](+) (R = Me, Et) Cationic Organometallic Complexes on Chemoresistant Pancreatic Cancer Cell Lines

Pancreatic cancer is one of the most lethal malignancies with an increasing incidence and a high mortality rate, due to its rapid progression, invasiveness, and resistance to anticancer therapies. In this work, we evaluated the antiproliferative and antimigratory activities of the two organometallic...

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Autores principales: Stefàno, Erika, Cossa, Luca Giulio, De Castro, Federica, De Luca, Erik, Vergaro, Viviana, My, Giulia, Rovito, Gianluca, Migoni, Danilo, Muscella, Antonella, Marsigliante, Santo, Benedetti, Michele, Fanizzi, Francesco Paolo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10506884/
https://www.ncbi.nlm.nih.gov/pubmed/37727647
http://dx.doi.org/10.1155/2023/5564624
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author Stefàno, Erika
Cossa, Luca Giulio
De Castro, Federica
De Luca, Erik
Vergaro, Viviana
My, Giulia
Rovito, Gianluca
Migoni, Danilo
Muscella, Antonella
Marsigliante, Santo
Benedetti, Michele
Fanizzi, Francesco Paolo
author_facet Stefàno, Erika
Cossa, Luca Giulio
De Castro, Federica
De Luca, Erik
Vergaro, Viviana
My, Giulia
Rovito, Gianluca
Migoni, Danilo
Muscella, Antonella
Marsigliante, Santo
Benedetti, Michele
Fanizzi, Francesco Paolo
author_sort Stefàno, Erika
collection PubMed
description Pancreatic cancer is one of the most lethal malignancies with an increasing incidence and a high mortality rate, due to its rapid progression, invasiveness, and resistance to anticancer therapies. In this work, we evaluated the antiproliferative and antimigratory activities of the two organometallic compounds, [Pt(η(1)-C(2)H(4)-OMe)(DMSO)(phen)]Cl (1) and [Pt(η(1)-C(2)H(4)-OEt)(DMSO)(phen)]Cl (2), on three human pancreatic ductal adenocarcinoma cell lines with different sensitivity to cisplatin (Mia PaCa-2, PANC-1, and YAPC). The two cationic analogues showed superimposable antiproliferative effects on the tested cells, without significant differences depending on alkyl chain length (Me or Et). On the other hand, they demonstrated to be more effective than cisplatin, especially on YAPC cancer cells. For the interesting cytotoxic activity observed on YAPC, further biological assays were performed, on this cancer cell line, to evaluate the apoptotic and antimetastatic properties of the considered platinum compounds (1 and 2). The cytotoxicity of 1 and 2 compounds appeared to be related to their intracellular accumulation, which was much faster than that of cisplatin. Both 1 and 2 compounds significantly induced apoptosis and cell cycle arrest, with a high accumulation of sub-G1 phase cells, compared to cisplatin. Moreover, phenanthroline-containing complexes caused a rapid loss of mitochondria membrane potential, ΔΨ(M), if compared to cisplatin, probably due to their cationic and lipophilic properties. On 3D tumor spheroids, 1 and 2 significantly reduced migrated area more than cisplatin, confirming an antimetastatic ability.
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spelling pubmed-105068842023-09-19 Evaluation of the Antitumor Effects of Platinum-Based [Pt(η(1)-C(2)H(4)-OR)(DMSO)(phen)](+) (R = Me, Et) Cationic Organometallic Complexes on Chemoresistant Pancreatic Cancer Cell Lines Stefàno, Erika Cossa, Luca Giulio De Castro, Federica De Luca, Erik Vergaro, Viviana My, Giulia Rovito, Gianluca Migoni, Danilo Muscella, Antonella Marsigliante, Santo Benedetti, Michele Fanizzi, Francesco Paolo Bioinorg Chem Appl Research Article Pancreatic cancer is one of the most lethal malignancies with an increasing incidence and a high mortality rate, due to its rapid progression, invasiveness, and resistance to anticancer therapies. In this work, we evaluated the antiproliferative and antimigratory activities of the two organometallic compounds, [Pt(η(1)-C(2)H(4)-OMe)(DMSO)(phen)]Cl (1) and [Pt(η(1)-C(2)H(4)-OEt)(DMSO)(phen)]Cl (2), on three human pancreatic ductal adenocarcinoma cell lines with different sensitivity to cisplatin (Mia PaCa-2, PANC-1, and YAPC). The two cationic analogues showed superimposable antiproliferative effects on the tested cells, without significant differences depending on alkyl chain length (Me or Et). On the other hand, they demonstrated to be more effective than cisplatin, especially on YAPC cancer cells. For the interesting cytotoxic activity observed on YAPC, further biological assays were performed, on this cancer cell line, to evaluate the apoptotic and antimetastatic properties of the considered platinum compounds (1 and 2). The cytotoxicity of 1 and 2 compounds appeared to be related to their intracellular accumulation, which was much faster than that of cisplatin. Both 1 and 2 compounds significantly induced apoptosis and cell cycle arrest, with a high accumulation of sub-G1 phase cells, compared to cisplatin. Moreover, phenanthroline-containing complexes caused a rapid loss of mitochondria membrane potential, ΔΨ(M), if compared to cisplatin, probably due to their cationic and lipophilic properties. On 3D tumor spheroids, 1 and 2 significantly reduced migrated area more than cisplatin, confirming an antimetastatic ability. Hindawi 2023-09-11 /pmc/articles/PMC10506884/ /pubmed/37727647 http://dx.doi.org/10.1155/2023/5564624 Text en Copyright © 2023 Erika Stefàno et al. https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Stefàno, Erika
Cossa, Luca Giulio
De Castro, Federica
De Luca, Erik
Vergaro, Viviana
My, Giulia
Rovito, Gianluca
Migoni, Danilo
Muscella, Antonella
Marsigliante, Santo
Benedetti, Michele
Fanizzi, Francesco Paolo
Evaluation of the Antitumor Effects of Platinum-Based [Pt(η(1)-C(2)H(4)-OR)(DMSO)(phen)](+) (R = Me, Et) Cationic Organometallic Complexes on Chemoresistant Pancreatic Cancer Cell Lines
title Evaluation of the Antitumor Effects of Platinum-Based [Pt(η(1)-C(2)H(4)-OR)(DMSO)(phen)](+) (R = Me, Et) Cationic Organometallic Complexes on Chemoresistant Pancreatic Cancer Cell Lines
title_full Evaluation of the Antitumor Effects of Platinum-Based [Pt(η(1)-C(2)H(4)-OR)(DMSO)(phen)](+) (R = Me, Et) Cationic Organometallic Complexes on Chemoresistant Pancreatic Cancer Cell Lines
title_fullStr Evaluation of the Antitumor Effects of Platinum-Based [Pt(η(1)-C(2)H(4)-OR)(DMSO)(phen)](+) (R = Me, Et) Cationic Organometallic Complexes on Chemoresistant Pancreatic Cancer Cell Lines
title_full_unstemmed Evaluation of the Antitumor Effects of Platinum-Based [Pt(η(1)-C(2)H(4)-OR)(DMSO)(phen)](+) (R = Me, Et) Cationic Organometallic Complexes on Chemoresistant Pancreatic Cancer Cell Lines
title_short Evaluation of the Antitumor Effects of Platinum-Based [Pt(η(1)-C(2)H(4)-OR)(DMSO)(phen)](+) (R = Me, Et) Cationic Organometallic Complexes on Chemoresistant Pancreatic Cancer Cell Lines
title_sort evaluation of the antitumor effects of platinum-based [pt(η(1)-c(2)h(4)-or)(dmso)(phen)](+) (r = me, et) cationic organometallic complexes on chemoresistant pancreatic cancer cell lines
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10506884/
https://www.ncbi.nlm.nih.gov/pubmed/37727647
http://dx.doi.org/10.1155/2023/5564624
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