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Zinc restores functionality in porcine prepubertal Sertoli cells exposed to subtoxic cadmium concentration via regulating the Nrf2 signaling pathway

INTRODUCTION: Among substances released into the environment by anthropogenic activities, the heavy metal cadmium (Cd) is known to induce severe testicular injury causing male subfertility/infertility. Zinc (Zn) is another heavy metal that, unlike Cd, is physiologically present in the testis, being...

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Autores principales: Mancuso, Francesca, Arato, Iva, Bellucci, Catia, Lilli, Cinzia, Eugeni, Elena, Aglietti, Maria Chiara, Stabile, Anna Maria, Pistilli, Alessandra, Brancorsini, Stefano, Gaggia, Francesco, Calvitti, Mario, Baroni, Tiziano, Luca, Giovanni
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9950629/
https://www.ncbi.nlm.nih.gov/pubmed/36843583
http://dx.doi.org/10.3389/fendo.2023.962519
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author Mancuso, Francesca
Arato, Iva
Bellucci, Catia
Lilli, Cinzia
Eugeni, Elena
Aglietti, Maria Chiara
Stabile, Anna Maria
Pistilli, Alessandra
Brancorsini, Stefano
Gaggia, Francesco
Calvitti, Mario
Baroni, Tiziano
Luca, Giovanni
author_facet Mancuso, Francesca
Arato, Iva
Bellucci, Catia
Lilli, Cinzia
Eugeni, Elena
Aglietti, Maria Chiara
Stabile, Anna Maria
Pistilli, Alessandra
Brancorsini, Stefano
Gaggia, Francesco
Calvitti, Mario
Baroni, Tiziano
Luca, Giovanni
author_sort Mancuso, Francesca
collection PubMed
description INTRODUCTION: Among substances released into the environment by anthropogenic activities, the heavy metal cadmium (Cd) is known to induce severe testicular injury causing male subfertility/infertility. Zinc (Zn) is another heavy metal that, unlike Cd, is physiologically present in the testis, being essential for spermatogenesis. We aimed to examine the possibility that 50 µM ZnCl(2) could counteract the toxic effects induced by Cd in an in vitro model of porcine prepubertal Sertoli cells (SCs) exposed to both subtoxic (5 μM) and toxic (10 μM) concentrations of CdCl(2) for 48 h. MATERIALS AND METHODS: Apoptosis, cell cycle, and cell functionality were assessed. The gene expression of Nrf2 and its downstream antioxidant enzymes, ERK1/2, and AKT kinase signaling pathways were evaluated. MATERIALS AND RESULTS: We found that Zn, in co-treatment with subtoxic and toxic Cd concentration, increased the number of metabolically active SCs compared to Cd exposure alone but restored SC functionality only in co-treatment with subtoxic Cd concentration with respect to subtoxic Cd alone. Exposure of Cd disrupted cell cycle in SCs, and Zn co-treatment was not able to counteract this effect. Cd alone induced SC death through apoptosis and necrosis in a dose-dependent manner, and co-treatment with Zn increased the pro-apoptotic effect of Cd. Subtoxic and toxic Cd exposures activated the Nrf2 signaling pathway by increasing gene expression of Nrf2 and its downstream genes (SOD, HO-1, and GSHPx). Zn co-treatment with subtoxic Cd attenuated upregulation on the Nrf2 system, while with toxic Cd, the effect was more erratic. Studying ERK1/2 and AKT pathways as a target, we found that the phosphorylation ratio of p-ERK1/2 and p-AKT was upregulated by both subtoxic and toxic Cd exposure alone and in co-treatment with Zn. DISCUSSION: Our results suggest that Zn could counteract Cd effects by increasing the number of metabolically active SCs, fully or partially restoring their functionality by modulating Nrf2, ERK1/2, and AKT pathways. Our SC model could be useful to study the effects of early Cd exposure on immature testis, evaluating the possible protective effects of Zn.
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spelling pubmed-99506292023-02-25 Zinc restores functionality in porcine prepubertal Sertoli cells exposed to subtoxic cadmium concentration via regulating the Nrf2 signaling pathway Mancuso, Francesca Arato, Iva Bellucci, Catia Lilli, Cinzia Eugeni, Elena Aglietti, Maria Chiara Stabile, Anna Maria Pistilli, Alessandra Brancorsini, Stefano Gaggia, Francesco Calvitti, Mario Baroni, Tiziano Luca, Giovanni Front Endocrinol (Lausanne) Endocrinology INTRODUCTION: Among substances released into the environment by anthropogenic activities, the heavy metal cadmium (Cd) is known to induce severe testicular injury causing male subfertility/infertility. Zinc (Zn) is another heavy metal that, unlike Cd, is physiologically present in the testis, being essential for spermatogenesis. We aimed to examine the possibility that 50 µM ZnCl(2) could counteract the toxic effects induced by Cd in an in vitro model of porcine prepubertal Sertoli cells (SCs) exposed to both subtoxic (5 μM) and toxic (10 μM) concentrations of CdCl(2) for 48 h. MATERIALS AND METHODS: Apoptosis, cell cycle, and cell functionality were assessed. The gene expression of Nrf2 and its downstream antioxidant enzymes, ERK1/2, and AKT kinase signaling pathways were evaluated. MATERIALS AND RESULTS: We found that Zn, in co-treatment with subtoxic and toxic Cd concentration, increased the number of metabolically active SCs compared to Cd exposure alone but restored SC functionality only in co-treatment with subtoxic Cd concentration with respect to subtoxic Cd alone. Exposure of Cd disrupted cell cycle in SCs, and Zn co-treatment was not able to counteract this effect. Cd alone induced SC death through apoptosis and necrosis in a dose-dependent manner, and co-treatment with Zn increased the pro-apoptotic effect of Cd. Subtoxic and toxic Cd exposures activated the Nrf2 signaling pathway by increasing gene expression of Nrf2 and its downstream genes (SOD, HO-1, and GSHPx). Zn co-treatment with subtoxic Cd attenuated upregulation on the Nrf2 system, while with toxic Cd, the effect was more erratic. Studying ERK1/2 and AKT pathways as a target, we found that the phosphorylation ratio of p-ERK1/2 and p-AKT was upregulated by both subtoxic and toxic Cd exposure alone and in co-treatment with Zn. DISCUSSION: Our results suggest that Zn could counteract Cd effects by increasing the number of metabolically active SCs, fully or partially restoring their functionality by modulating Nrf2, ERK1/2, and AKT pathways. Our SC model could be useful to study the effects of early Cd exposure on immature testis, evaluating the possible protective effects of Zn. Frontiers Media S.A. 2023-02-10 /pmc/articles/PMC9950629/ /pubmed/36843583 http://dx.doi.org/10.3389/fendo.2023.962519 Text en Copyright © 2023 Mancuso, Arato, Bellucci, Lilli, Eugeni, Aglietti, Stabile, Pistilli, Brancorsini, Gaggia, Calvitti, Baroni and Luca https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Endocrinology
Mancuso, Francesca
Arato, Iva
Bellucci, Catia
Lilli, Cinzia
Eugeni, Elena
Aglietti, Maria Chiara
Stabile, Anna Maria
Pistilli, Alessandra
Brancorsini, Stefano
Gaggia, Francesco
Calvitti, Mario
Baroni, Tiziano
Luca, Giovanni
Zinc restores functionality in porcine prepubertal Sertoli cells exposed to subtoxic cadmium concentration via regulating the Nrf2 signaling pathway
title Zinc restores functionality in porcine prepubertal Sertoli cells exposed to subtoxic cadmium concentration via regulating the Nrf2 signaling pathway
title_full Zinc restores functionality in porcine prepubertal Sertoli cells exposed to subtoxic cadmium concentration via regulating the Nrf2 signaling pathway
title_fullStr Zinc restores functionality in porcine prepubertal Sertoli cells exposed to subtoxic cadmium concentration via regulating the Nrf2 signaling pathway
title_full_unstemmed Zinc restores functionality in porcine prepubertal Sertoli cells exposed to subtoxic cadmium concentration via regulating the Nrf2 signaling pathway
title_short Zinc restores functionality in porcine prepubertal Sertoli cells exposed to subtoxic cadmium concentration via regulating the Nrf2 signaling pathway
title_sort zinc restores functionality in porcine prepubertal sertoli cells exposed to subtoxic cadmium concentration via regulating the nrf2 signaling pathway
topic Endocrinology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9950629/
https://www.ncbi.nlm.nih.gov/pubmed/36843583
http://dx.doi.org/10.3389/fendo.2023.962519
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