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Impact of the Pd(2)Spm (Spermine) Complex on the Metabolism of Triple-Negative Breast Cancer Tumors of a Xenograft Mouse Model

The interest in palladium(II) compounds as potential new anticancer drugs has increased in recent years, due to their high toxicity and acquired resistance to platinum(II)-derived agents, namely cisplatin. In fact, palladium complexes with biogenic polyamines (e.g., spermine, Pd(2)Spm) have been kno...

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Autores principales: Carneiro, Tatiana J., Araújo, Rita, Vojtek, Martin, Gonçalves-Monteiro, Salomé, de Carvalho, Ana L. M. Batista, Marques, Maria Paula M., Diniz, Carmen, Gil, Ana M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8509401/
https://www.ncbi.nlm.nih.gov/pubmed/34639114
http://dx.doi.org/10.3390/ijms221910775
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author Carneiro, Tatiana J.
Araújo, Rita
Vojtek, Martin
Gonçalves-Monteiro, Salomé
de Carvalho, Ana L. M. Batista
Marques, Maria Paula M.
Diniz, Carmen
Gil, Ana M.
author_facet Carneiro, Tatiana J.
Araújo, Rita
Vojtek, Martin
Gonçalves-Monteiro, Salomé
de Carvalho, Ana L. M. Batista
Marques, Maria Paula M.
Diniz, Carmen
Gil, Ana M.
author_sort Carneiro, Tatiana J.
collection PubMed
description The interest in palladium(II) compounds as potential new anticancer drugs has increased in recent years, due to their high toxicity and acquired resistance to platinum(II)-derived agents, namely cisplatin. In fact, palladium complexes with biogenic polyamines (e.g., spermine, Pd(2)Spm) have been known to display favorable antineoplastic properties against distinct human breast cancer cell lines. This study describes the in vivo response of triple-negative breast cancer (TNBC) tumors to the Pd(2)Spm complex or to cisplatin (reference drug), compared to tumors in vehicle-treated mice. Both polar and lipophilic extracts of tumors, excised from a MDA-MB-231 cell-derived xenograft mouse model, were characterized through nuclear magnetic resonance (NMR) metabolomics. Interestingly, the results show that polar and lipophilic metabolomes clearly exhibit distinct responses for each drug, with polar metabolites showing a stronger impact of the Pd(II)-complex compared to cisplatin, whereas neither drug was observed to significantly affect tumor lipophilic metabolism. Compared to cisplatin, exposure to Pd(2)Spm triggered a higher number of, and more marked, variations in some amino acids, nucleotides and derivatives, membrane precursors (choline and phosphoethanolamine), dimethylamine, fumarate and guanidine acetate, a signature that may be relatable to the cytotoxicity and/or mechanism of action of the palladium complex. Putative explanatory biochemical hypotheses are advanced on the role of the new Pd(2)Spm complex in TNBC metabolism.
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spelling pubmed-85094012021-10-13 Impact of the Pd(2)Spm (Spermine) Complex on the Metabolism of Triple-Negative Breast Cancer Tumors of a Xenograft Mouse Model Carneiro, Tatiana J. Araújo, Rita Vojtek, Martin Gonçalves-Monteiro, Salomé de Carvalho, Ana L. M. Batista Marques, Maria Paula M. Diniz, Carmen Gil, Ana M. Int J Mol Sci Article The interest in palladium(II) compounds as potential new anticancer drugs has increased in recent years, due to their high toxicity and acquired resistance to platinum(II)-derived agents, namely cisplatin. In fact, palladium complexes with biogenic polyamines (e.g., spermine, Pd(2)Spm) have been known to display favorable antineoplastic properties against distinct human breast cancer cell lines. This study describes the in vivo response of triple-negative breast cancer (TNBC) tumors to the Pd(2)Spm complex or to cisplatin (reference drug), compared to tumors in vehicle-treated mice. Both polar and lipophilic extracts of tumors, excised from a MDA-MB-231 cell-derived xenograft mouse model, were characterized through nuclear magnetic resonance (NMR) metabolomics. Interestingly, the results show that polar and lipophilic metabolomes clearly exhibit distinct responses for each drug, with polar metabolites showing a stronger impact of the Pd(II)-complex compared to cisplatin, whereas neither drug was observed to significantly affect tumor lipophilic metabolism. Compared to cisplatin, exposure to Pd(2)Spm triggered a higher number of, and more marked, variations in some amino acids, nucleotides and derivatives, membrane precursors (choline and phosphoethanolamine), dimethylamine, fumarate and guanidine acetate, a signature that may be relatable to the cytotoxicity and/or mechanism of action of the palladium complex. Putative explanatory biochemical hypotheses are advanced on the role of the new Pd(2)Spm complex in TNBC metabolism. MDPI 2021-10-05 /pmc/articles/PMC8509401/ /pubmed/34639114 http://dx.doi.org/10.3390/ijms221910775 Text en © 2021 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
Carneiro, Tatiana J.
Araújo, Rita
Vojtek, Martin
Gonçalves-Monteiro, Salomé
de Carvalho, Ana L. M. Batista
Marques, Maria Paula M.
Diniz, Carmen
Gil, Ana M.
Impact of the Pd(2)Spm (Spermine) Complex on the Metabolism of Triple-Negative Breast Cancer Tumors of a Xenograft Mouse Model
title Impact of the Pd(2)Spm (Spermine) Complex on the Metabolism of Triple-Negative Breast Cancer Tumors of a Xenograft Mouse Model
title_full Impact of the Pd(2)Spm (Spermine) Complex on the Metabolism of Triple-Negative Breast Cancer Tumors of a Xenograft Mouse Model
title_fullStr Impact of the Pd(2)Spm (Spermine) Complex on the Metabolism of Triple-Negative Breast Cancer Tumors of a Xenograft Mouse Model
title_full_unstemmed Impact of the Pd(2)Spm (Spermine) Complex on the Metabolism of Triple-Negative Breast Cancer Tumors of a Xenograft Mouse Model
title_short Impact of the Pd(2)Spm (Spermine) Complex on the Metabolism of Triple-Negative Breast Cancer Tumors of a Xenograft Mouse Model
title_sort impact of the pd(2)spm (spermine) complex on the metabolism of triple-negative breast cancer tumors of a xenograft mouse model
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8509401/
https://www.ncbi.nlm.nih.gov/pubmed/34639114
http://dx.doi.org/10.3390/ijms221910775
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