Cargando…

Cellular Senescence in Human Aldosterone-Producing Adrenocortical Cells and Related Disorders

In situ cortisol excess was previously reported to promote cellular senescence, a cell response to stress, in cortisol-producing adenomas (CPA). The aim of this study was to explore senescence pathways in aldosterone-producing cells and related disorders, and the influence of aldosterone overproduct...

Descripción completa

Detalles Bibliográficos
Autores principales: Pieroni, Jacopo, Yamazaki, Yuto, Gao, Xin, Tezuka, Yuta, Ogata, Hiroko, Omata, Kei, Ono, Yoshikiyo, Morimoto, Ryo, Nakamura, Yasuhiro, Satoh, Fumitoshi, Sasano, Hironobu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8158118/
https://www.ncbi.nlm.nih.gov/pubmed/34070051
http://dx.doi.org/10.3390/biomedicines9050567
_version_ 1783699816504623104
author Pieroni, Jacopo
Yamazaki, Yuto
Gao, Xin
Tezuka, Yuta
Ogata, Hiroko
Omata, Kei
Ono, Yoshikiyo
Morimoto, Ryo
Nakamura, Yasuhiro
Satoh, Fumitoshi
Sasano, Hironobu
author_facet Pieroni, Jacopo
Yamazaki, Yuto
Gao, Xin
Tezuka, Yuta
Ogata, Hiroko
Omata, Kei
Ono, Yoshikiyo
Morimoto, Ryo
Nakamura, Yasuhiro
Satoh, Fumitoshi
Sasano, Hironobu
author_sort Pieroni, Jacopo
collection PubMed
description In situ cortisol excess was previously reported to promote cellular senescence, a cell response to stress, in cortisol-producing adenomas (CPA). The aim of this study was to explore senescence pathways in aldosterone-producing cells and related disorders, and the influence of aldosterone overproduction on in situ senescence. We analyzed 30 surgical cases of aldosterone-producing adenoma (APA), 10 idiopathic hyperaldosteronism (IHA) and 19 normal adrenals (NA). CYP11B2 and senescence markers p16 and p21 were immunolocalized in all those cases above and results were correlated with histological/endocrinological findings. In the three cohorts examined, the zona glomerulosa (ZG) was significantly more senescent than other corticosteroid-producing cells. In addition, the ZG of adjacent non-pathological adrenal glands of APA and IHA had significantly higher p16 expression than adjacent non-pathological zona fasciculata (ZF), reticularis (ZR) and ZG of NA. In addition, laboratory findings of primary aldosteronism (PA) were significantly correlated with p21 status in KCNJ5-mutated tumors. Results of our present study firstly demonstrated that non-aldosterone-producing cells in the ZG were the most senescent compared to other cortical zones and aldosterone-producing cells in PA. Therefore, aldosterone production, whether physiological or pathological, could be maintained by suppression of cell senescence in human adrenal cortex.
format Online
Article
Text
id pubmed-8158118
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-81581182021-05-28 Cellular Senescence in Human Aldosterone-Producing Adrenocortical Cells and Related Disorders Pieroni, Jacopo Yamazaki, Yuto Gao, Xin Tezuka, Yuta Ogata, Hiroko Omata, Kei Ono, Yoshikiyo Morimoto, Ryo Nakamura, Yasuhiro Satoh, Fumitoshi Sasano, Hironobu Biomedicines Article In situ cortisol excess was previously reported to promote cellular senescence, a cell response to stress, in cortisol-producing adenomas (CPA). The aim of this study was to explore senescence pathways in aldosterone-producing cells and related disorders, and the influence of aldosterone overproduction on in situ senescence. We analyzed 30 surgical cases of aldosterone-producing adenoma (APA), 10 idiopathic hyperaldosteronism (IHA) and 19 normal adrenals (NA). CYP11B2 and senescence markers p16 and p21 were immunolocalized in all those cases above and results were correlated with histological/endocrinological findings. In the three cohorts examined, the zona glomerulosa (ZG) was significantly more senescent than other corticosteroid-producing cells. In addition, the ZG of adjacent non-pathological adrenal glands of APA and IHA had significantly higher p16 expression than adjacent non-pathological zona fasciculata (ZF), reticularis (ZR) and ZG of NA. In addition, laboratory findings of primary aldosteronism (PA) were significantly correlated with p21 status in KCNJ5-mutated tumors. Results of our present study firstly demonstrated that non-aldosterone-producing cells in the ZG were the most senescent compared to other cortical zones and aldosterone-producing cells in PA. Therefore, aldosterone production, whether physiological or pathological, could be maintained by suppression of cell senescence in human adrenal cortex. MDPI 2021-05-18 /pmc/articles/PMC8158118/ /pubmed/34070051 http://dx.doi.org/10.3390/biomedicines9050567 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
Pieroni, Jacopo
Yamazaki, Yuto
Gao, Xin
Tezuka, Yuta
Ogata, Hiroko
Omata, Kei
Ono, Yoshikiyo
Morimoto, Ryo
Nakamura, Yasuhiro
Satoh, Fumitoshi
Sasano, Hironobu
Cellular Senescence in Human Aldosterone-Producing Adrenocortical Cells and Related Disorders
title Cellular Senescence in Human Aldosterone-Producing Adrenocortical Cells and Related Disorders
title_full Cellular Senescence in Human Aldosterone-Producing Adrenocortical Cells and Related Disorders
title_fullStr Cellular Senescence in Human Aldosterone-Producing Adrenocortical Cells and Related Disorders
title_full_unstemmed Cellular Senescence in Human Aldosterone-Producing Adrenocortical Cells and Related Disorders
title_short Cellular Senescence in Human Aldosterone-Producing Adrenocortical Cells and Related Disorders
title_sort cellular senescence in human aldosterone-producing adrenocortical cells and related disorders
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8158118/
https://www.ncbi.nlm.nih.gov/pubmed/34070051
http://dx.doi.org/10.3390/biomedicines9050567
work_keys_str_mv AT pieronijacopo cellularsenescenceinhumanaldosteroneproducingadrenocorticalcellsandrelateddisorders
AT yamazakiyuto cellularsenescenceinhumanaldosteroneproducingadrenocorticalcellsandrelateddisorders
AT gaoxin cellularsenescenceinhumanaldosteroneproducingadrenocorticalcellsandrelateddisorders
AT tezukayuta cellularsenescenceinhumanaldosteroneproducingadrenocorticalcellsandrelateddisorders
AT ogatahiroko cellularsenescenceinhumanaldosteroneproducingadrenocorticalcellsandrelateddisorders
AT omatakei cellularsenescenceinhumanaldosteroneproducingadrenocorticalcellsandrelateddisorders
AT onoyoshikiyo cellularsenescenceinhumanaldosteroneproducingadrenocorticalcellsandrelateddisorders
AT morimotoryo cellularsenescenceinhumanaldosteroneproducingadrenocorticalcellsandrelateddisorders
AT nakamurayasuhiro cellularsenescenceinhumanaldosteroneproducingadrenocorticalcellsandrelateddisorders
AT satohfumitoshi cellularsenescenceinhumanaldosteroneproducingadrenocorticalcellsandrelateddisorders
AT sasanohironobu cellularsenescenceinhumanaldosteroneproducingadrenocorticalcellsandrelateddisorders