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Metabolomics Point out the Effects of Carfilzomib on Aromatic Amino Acid Biosynthesis and Degradation

(1) Carfilzomib (Cfz) is an antineoplastic agent indicated for the treatment of multiple myeloma. However, its beneficial action is attenuated by the occurrence of cardiotoxicity and nephrotoxicity as the most common adverse effects. Presently, there is well-established knowledge on the pathomechani...

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Autores principales: Barla, Ioanna, Efentakis, Panagiotis, Lamprou, Sofia, Gavriatopoulou, Maria, Dimopoulos, Meletios-Athanasios, Terpos, Evangelos, Andreadou, Ioanna, Thomaidis, Nikolaos, Gikas, Evangelos
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10530946/
https://www.ncbi.nlm.nih.gov/pubmed/37762269
http://dx.doi.org/10.3390/ijms241813966
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author Barla, Ioanna
Efentakis, Panagiotis
Lamprou, Sofia
Gavriatopoulou, Maria
Dimopoulos, Meletios-Athanasios
Terpos, Evangelos
Andreadou, Ioanna
Thomaidis, Nikolaos
Gikas, Evangelos
author_facet Barla, Ioanna
Efentakis, Panagiotis
Lamprou, Sofia
Gavriatopoulou, Maria
Dimopoulos, Meletios-Athanasios
Terpos, Evangelos
Andreadou, Ioanna
Thomaidis, Nikolaos
Gikas, Evangelos
author_sort Barla, Ioanna
collection PubMed
description (1) Carfilzomib (Cfz) is an antineoplastic agent indicated for the treatment of multiple myeloma. However, its beneficial action is attenuated by the occurrence of cardiotoxicity and nephrotoxicity as the most common adverse effects. Presently, there is well-established knowledge on the pathomechanisms related to these side effects; however, the research on the metabolic alterations provoked by the drug is limited. (2) An in vivo simulation of Cfz-induced toxicity was developed in (i) Cfz-treated and (ii) control mice. An RP-HRMS-based protocol and an advanced statistical treatment were used to investigate the impact of Cfz on the non-polar metabolome. (3) The differential analysis classified the Cfz-treated and control mice and resulted in a significant number of identified biomarkers with AUC > 0.9. The drug impaired the biosynthesis and degradation of aromatic amino acids (AAA) and led to alterations of uremic toxins in the renal and urine levels. Furthermore, the renal degradation of tryptophan was affected, inducing its degradation via the kynurenine pathway. (4) The renal levels of metabolites showed impaired excretion and degradation of AAAs. Cfz was, finally, correlated with the biosynthesis of renal dopamine, explaining the biochemical causes of water and ion retention and the increase in systolic pressure.
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spelling pubmed-105309462023-09-28 Metabolomics Point out the Effects of Carfilzomib on Aromatic Amino Acid Biosynthesis and Degradation Barla, Ioanna Efentakis, Panagiotis Lamprou, Sofia Gavriatopoulou, Maria Dimopoulos, Meletios-Athanasios Terpos, Evangelos Andreadou, Ioanna Thomaidis, Nikolaos Gikas, Evangelos Int J Mol Sci Article (1) Carfilzomib (Cfz) is an antineoplastic agent indicated for the treatment of multiple myeloma. However, its beneficial action is attenuated by the occurrence of cardiotoxicity and nephrotoxicity as the most common adverse effects. Presently, there is well-established knowledge on the pathomechanisms related to these side effects; however, the research on the metabolic alterations provoked by the drug is limited. (2) An in vivo simulation of Cfz-induced toxicity was developed in (i) Cfz-treated and (ii) control mice. An RP-HRMS-based protocol and an advanced statistical treatment were used to investigate the impact of Cfz on the non-polar metabolome. (3) The differential analysis classified the Cfz-treated and control mice and resulted in a significant number of identified biomarkers with AUC > 0.9. The drug impaired the biosynthesis and degradation of aromatic amino acids (AAA) and led to alterations of uremic toxins in the renal and urine levels. Furthermore, the renal degradation of tryptophan was affected, inducing its degradation via the kynurenine pathway. (4) The renal levels of metabolites showed impaired excretion and degradation of AAAs. Cfz was, finally, correlated with the biosynthesis of renal dopamine, explaining the biochemical causes of water and ion retention and the increase in systolic pressure. MDPI 2023-09-12 /pmc/articles/PMC10530946/ /pubmed/37762269 http://dx.doi.org/10.3390/ijms241813966 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
Barla, Ioanna
Efentakis, Panagiotis
Lamprou, Sofia
Gavriatopoulou, Maria
Dimopoulos, Meletios-Athanasios
Terpos, Evangelos
Andreadou, Ioanna
Thomaidis, Nikolaos
Gikas, Evangelos
Metabolomics Point out the Effects of Carfilzomib on Aromatic Amino Acid Biosynthesis and Degradation
title Metabolomics Point out the Effects of Carfilzomib on Aromatic Amino Acid Biosynthesis and Degradation
title_full Metabolomics Point out the Effects of Carfilzomib on Aromatic Amino Acid Biosynthesis and Degradation
title_fullStr Metabolomics Point out the Effects of Carfilzomib on Aromatic Amino Acid Biosynthesis and Degradation
title_full_unstemmed Metabolomics Point out the Effects of Carfilzomib on Aromatic Amino Acid Biosynthesis and Degradation
title_short Metabolomics Point out the Effects of Carfilzomib on Aromatic Amino Acid Biosynthesis and Degradation
title_sort metabolomics point out the effects of carfilzomib on aromatic amino acid biosynthesis and degradation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10530946/
https://www.ncbi.nlm.nih.gov/pubmed/37762269
http://dx.doi.org/10.3390/ijms241813966
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