Cargando…
Human Adult Renal Progenitor Cells Prevent Cisplatin-Nephrotoxicity by Inducing CYP1B1 Overexpression and miR-27b-3p Down-Regulation through Extracellular Vesicles
Cisplatin is one of the most effective chemotherapeutic agents strongly associated with nephrotoxicity. Tubular adult renal progenitor cells (tARPC) can regenerate functional tubules and participate in the repair processes after cisplatin exposition. This study investigated the molecular mechanisms...
Autores principales: | , , , , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
MDPI
2023
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10296841/ https://www.ncbi.nlm.nih.gov/pubmed/37371125 http://dx.doi.org/10.3390/cells12121655 |
_version_ | 1785063742950604800 |
---|---|
author | Franzin, Rossana Stasi, Alessandra De Palma, Giuseppe Picerno, Angela Curci, Claudia Sebastiano, Serena Campioni, Monica Cicirelli, Antonella Rizzo, Alessandro Di Lorenzo, Vito Francesco Pontrelli, Paola Pertosa, Giovanni Battista Castellano, Giuseppe Gesualdo, Loreto Sallustio, Fabio |
author_facet | Franzin, Rossana Stasi, Alessandra De Palma, Giuseppe Picerno, Angela Curci, Claudia Sebastiano, Serena Campioni, Monica Cicirelli, Antonella Rizzo, Alessandro Di Lorenzo, Vito Francesco Pontrelli, Paola Pertosa, Giovanni Battista Castellano, Giuseppe Gesualdo, Loreto Sallustio, Fabio |
author_sort | Franzin, Rossana |
collection | PubMed |
description | Cisplatin is one of the most effective chemotherapeutic agents strongly associated with nephrotoxicity. Tubular adult renal progenitor cells (tARPC) can regenerate functional tubules and participate in the repair processes after cisplatin exposition. This study investigated the molecular mechanisms underlying the protective effect of tARPC on renal epithelium during cisplatin nephrotoxicity. By performing a whole-genome transcriptomic analysis, we found that tARPC, in presence of cisplatin, can strongly influence the gene expression of renal proximal tubular cell [RPTEC] by inducing overexpression of CYP1B1, a member of the cytochrome P450 superfamily capable of metabolizing cisplatin and of hypoxia/cancer-related lncRNAs as MIR210HG and LINC00511. Particularly, tARPC exerted renoprotection and regeneration effects via extracellular vesicles (EV) enriched with CYP1B1 and miR-27b-3p, a well-known CYP1B1 regulatory miRNA. The expression of CYP1B1 by tARPC was confirmed by analyzing biopsies of cisplatin-treated renal carcinoma patients that showed the colocalization of CYP1B1 with the tARPC marker CD133. CYP1B1 was also overexpressed in urinary EV purified from oncologic patients that presented nephrotoxicity episodes after cisplatin treatment. Interestingly CYP1B1 expression significantly correlated with creatinine and eGFR levels. Taken together, our results show that tARPC are able to counteract cisplatin-induced nephrotoxicity via CYP1B1 release through EV. These findings provide a promising therapeutic strategy for nephrotoxicity risk assessment that could be related to abundance of renal progenitors. |
format | Online Article Text |
id | pubmed-10296841 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2023 |
publisher | MDPI |
record_format | MEDLINE/PubMed |
spelling | pubmed-102968412023-06-28 Human Adult Renal Progenitor Cells Prevent Cisplatin-Nephrotoxicity by Inducing CYP1B1 Overexpression and miR-27b-3p Down-Regulation through Extracellular Vesicles Franzin, Rossana Stasi, Alessandra De Palma, Giuseppe Picerno, Angela Curci, Claudia Sebastiano, Serena Campioni, Monica Cicirelli, Antonella Rizzo, Alessandro Di Lorenzo, Vito Francesco Pontrelli, Paola Pertosa, Giovanni Battista Castellano, Giuseppe Gesualdo, Loreto Sallustio, Fabio Cells Article Cisplatin is one of the most effective chemotherapeutic agents strongly associated with nephrotoxicity. Tubular adult renal progenitor cells (tARPC) can regenerate functional tubules and participate in the repair processes after cisplatin exposition. This study investigated the molecular mechanisms underlying the protective effect of tARPC on renal epithelium during cisplatin nephrotoxicity. By performing a whole-genome transcriptomic analysis, we found that tARPC, in presence of cisplatin, can strongly influence the gene expression of renal proximal tubular cell [RPTEC] by inducing overexpression of CYP1B1, a member of the cytochrome P450 superfamily capable of metabolizing cisplatin and of hypoxia/cancer-related lncRNAs as MIR210HG and LINC00511. Particularly, tARPC exerted renoprotection and regeneration effects via extracellular vesicles (EV) enriched with CYP1B1 and miR-27b-3p, a well-known CYP1B1 regulatory miRNA. The expression of CYP1B1 by tARPC was confirmed by analyzing biopsies of cisplatin-treated renal carcinoma patients that showed the colocalization of CYP1B1 with the tARPC marker CD133. CYP1B1 was also overexpressed in urinary EV purified from oncologic patients that presented nephrotoxicity episodes after cisplatin treatment. Interestingly CYP1B1 expression significantly correlated with creatinine and eGFR levels. Taken together, our results show that tARPC are able to counteract cisplatin-induced nephrotoxicity via CYP1B1 release through EV. These findings provide a promising therapeutic strategy for nephrotoxicity risk assessment that could be related to abundance of renal progenitors. MDPI 2023-06-17 /pmc/articles/PMC10296841/ /pubmed/37371125 http://dx.doi.org/10.3390/cells12121655 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 Franzin, Rossana Stasi, Alessandra De Palma, Giuseppe Picerno, Angela Curci, Claudia Sebastiano, Serena Campioni, Monica Cicirelli, Antonella Rizzo, Alessandro Di Lorenzo, Vito Francesco Pontrelli, Paola Pertosa, Giovanni Battista Castellano, Giuseppe Gesualdo, Loreto Sallustio, Fabio Human Adult Renal Progenitor Cells Prevent Cisplatin-Nephrotoxicity by Inducing CYP1B1 Overexpression and miR-27b-3p Down-Regulation through Extracellular Vesicles |
title | Human Adult Renal Progenitor Cells Prevent Cisplatin-Nephrotoxicity by Inducing CYP1B1 Overexpression and miR-27b-3p Down-Regulation through Extracellular Vesicles |
title_full | Human Adult Renal Progenitor Cells Prevent Cisplatin-Nephrotoxicity by Inducing CYP1B1 Overexpression and miR-27b-3p Down-Regulation through Extracellular Vesicles |
title_fullStr | Human Adult Renal Progenitor Cells Prevent Cisplatin-Nephrotoxicity by Inducing CYP1B1 Overexpression and miR-27b-3p Down-Regulation through Extracellular Vesicles |
title_full_unstemmed | Human Adult Renal Progenitor Cells Prevent Cisplatin-Nephrotoxicity by Inducing CYP1B1 Overexpression and miR-27b-3p Down-Regulation through Extracellular Vesicles |
title_short | Human Adult Renal Progenitor Cells Prevent Cisplatin-Nephrotoxicity by Inducing CYP1B1 Overexpression and miR-27b-3p Down-Regulation through Extracellular Vesicles |
title_sort | human adult renal progenitor cells prevent cisplatin-nephrotoxicity by inducing cyp1b1 overexpression and mir-27b-3p down-regulation through extracellular vesicles |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10296841/ https://www.ncbi.nlm.nih.gov/pubmed/37371125 http://dx.doi.org/10.3390/cells12121655 |
work_keys_str_mv | AT franzinrossana humanadultrenalprogenitorcellspreventcisplatinnephrotoxicitybyinducingcyp1b1overexpressionandmir27b3pdownregulationthroughextracellularvesicles AT stasialessandra humanadultrenalprogenitorcellspreventcisplatinnephrotoxicitybyinducingcyp1b1overexpressionandmir27b3pdownregulationthroughextracellularvesicles AT depalmagiuseppe humanadultrenalprogenitorcellspreventcisplatinnephrotoxicitybyinducingcyp1b1overexpressionandmir27b3pdownregulationthroughextracellularvesicles AT picernoangela humanadultrenalprogenitorcellspreventcisplatinnephrotoxicitybyinducingcyp1b1overexpressionandmir27b3pdownregulationthroughextracellularvesicles AT curciclaudia humanadultrenalprogenitorcellspreventcisplatinnephrotoxicitybyinducingcyp1b1overexpressionandmir27b3pdownregulationthroughextracellularvesicles AT sebastianoserena humanadultrenalprogenitorcellspreventcisplatinnephrotoxicitybyinducingcyp1b1overexpressionandmir27b3pdownregulationthroughextracellularvesicles AT campionimonica humanadultrenalprogenitorcellspreventcisplatinnephrotoxicitybyinducingcyp1b1overexpressionandmir27b3pdownregulationthroughextracellularvesicles AT cicirelliantonella humanadultrenalprogenitorcellspreventcisplatinnephrotoxicitybyinducingcyp1b1overexpressionandmir27b3pdownregulationthroughextracellularvesicles AT rizzoalessandro humanadultrenalprogenitorcellspreventcisplatinnephrotoxicitybyinducingcyp1b1overexpressionandmir27b3pdownregulationthroughextracellularvesicles AT dilorenzovitofrancesco humanadultrenalprogenitorcellspreventcisplatinnephrotoxicitybyinducingcyp1b1overexpressionandmir27b3pdownregulationthroughextracellularvesicles AT pontrellipaola humanadultrenalprogenitorcellspreventcisplatinnephrotoxicitybyinducingcyp1b1overexpressionandmir27b3pdownregulationthroughextracellularvesicles AT pertosagiovannibattista humanadultrenalprogenitorcellspreventcisplatinnephrotoxicitybyinducingcyp1b1overexpressionandmir27b3pdownregulationthroughextracellularvesicles AT castellanogiuseppe humanadultrenalprogenitorcellspreventcisplatinnephrotoxicitybyinducingcyp1b1overexpressionandmir27b3pdownregulationthroughextracellularvesicles AT gesualdoloreto humanadultrenalprogenitorcellspreventcisplatinnephrotoxicitybyinducingcyp1b1overexpressionandmir27b3pdownregulationthroughextracellularvesicles AT sallustiofabio humanadultrenalprogenitorcellspreventcisplatinnephrotoxicitybyinducingcyp1b1overexpressionandmir27b3pdownregulationthroughextracellularvesicles |