Cargando…

Senescent melanocytes driven by glycolytic changes are characterized by melanosome transport dysfunction

Rationale: Senescent melanocytes accumulate in photoaged skin and are closely related to skin aging. A better understanding of the molecular characteristics of senescent melanocytes may be the key to controlling skin aging. Methods: We have developed an in vitro model of senescence in melanocytes us...

Descripción completa

Detalles Bibliográficos
Autores principales: Park, Young Joon, Kim, Jin Cheol, Kim, Yeongeun, Kim, Yul Hee, Park, Soon Sang, Muther, Charlotte, Tessier, Agnès, Lee, Gimyung, Gendronneau, Gaëlle, Forestier, Sandra, Ben-Khalifa, Youcef, Park, Tae Jun, Kang, Hee Young
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10405833/
https://www.ncbi.nlm.nih.gov/pubmed/37554281
http://dx.doi.org/10.7150/thno.84912
_version_ 1785085620424540160
author Park, Young Joon
Kim, Jin Cheol
Kim, Yeongeun
Kim, Yul Hee
Park, Soon Sang
Muther, Charlotte
Tessier, Agnès
Lee, Gimyung
Gendronneau, Gaëlle
Forestier, Sandra
Ben-Khalifa, Youcef
Park, Tae Jun
Kang, Hee Young
author_facet Park, Young Joon
Kim, Jin Cheol
Kim, Yeongeun
Kim, Yul Hee
Park, Soon Sang
Muther, Charlotte
Tessier, Agnès
Lee, Gimyung
Gendronneau, Gaëlle
Forestier, Sandra
Ben-Khalifa, Youcef
Park, Tae Jun
Kang, Hee Young
author_sort Park, Young Joon
collection PubMed
description Rationale: Senescent melanocytes accumulate in photoaged skin and are closely related to skin aging. A better understanding of the molecular characteristics of senescent melanocytes may be the key to controlling skin aging. Methods: We have developed an in vitro model of senescence in melanocytes using UV irradiation and investigated the functional characteristics and molecular mechanisms underlying senescence in UV-irradiated melanocytes. Results: We have highlighted that in vitro senescent melanocytes are characterized by melanosome transport dysfunction resulting in melanin accumulation. The defective melanosome transport was confirmed with the ultrastructural characterization of both in vitro UV-induced senescent melanocytes and in vivo melanocytes of hypopigmented aging skin. A single-cell transcriptomic analysis revealed that the glycolytic metabolism pathway appeared to be significantly upregulated in most senescent phenotypes. Furthermore, the inhibition of glycolysis by pharmacological compounds mitigates the pro-aging effects of melanocytes senescence, suggesting that alterations in cellular glucose metabolism act as a driving force for senescence in melanocytes. Conclusion: These results demonstrate that senescent melanocytes are characterized by glycolytic metabolism changes and a defective melanosome transport process, which may be related to impaired mitochondrial function, highlighting the importance of metabolic reprogramming in regulating melanocyte senescence.
format Online
Article
Text
id pubmed-10405833
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher Ivyspring International Publisher
record_format MEDLINE/PubMed
spelling pubmed-104058332023-08-08 Senescent melanocytes driven by glycolytic changes are characterized by melanosome transport dysfunction Park, Young Joon Kim, Jin Cheol Kim, Yeongeun Kim, Yul Hee Park, Soon Sang Muther, Charlotte Tessier, Agnès Lee, Gimyung Gendronneau, Gaëlle Forestier, Sandra Ben-Khalifa, Youcef Park, Tae Jun Kang, Hee Young Theranostics Research Paper Rationale: Senescent melanocytes accumulate in photoaged skin and are closely related to skin aging. A better understanding of the molecular characteristics of senescent melanocytes may be the key to controlling skin aging. Methods: We have developed an in vitro model of senescence in melanocytes using UV irradiation and investigated the functional characteristics and molecular mechanisms underlying senescence in UV-irradiated melanocytes. Results: We have highlighted that in vitro senescent melanocytes are characterized by melanosome transport dysfunction resulting in melanin accumulation. The defective melanosome transport was confirmed with the ultrastructural characterization of both in vitro UV-induced senescent melanocytes and in vivo melanocytes of hypopigmented aging skin. A single-cell transcriptomic analysis revealed that the glycolytic metabolism pathway appeared to be significantly upregulated in most senescent phenotypes. Furthermore, the inhibition of glycolysis by pharmacological compounds mitigates the pro-aging effects of melanocytes senescence, suggesting that alterations in cellular glucose metabolism act as a driving force for senescence in melanocytes. Conclusion: These results demonstrate that senescent melanocytes are characterized by glycolytic metabolism changes and a defective melanosome transport process, which may be related to impaired mitochondrial function, highlighting the importance of metabolic reprogramming in regulating melanocyte senescence. Ivyspring International Publisher 2023-07-03 /pmc/articles/PMC10405833/ /pubmed/37554281 http://dx.doi.org/10.7150/thno.84912 Text en © The author(s) https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/). See http://ivyspring.com/terms for full terms and conditions.
spellingShingle Research Paper
Park, Young Joon
Kim, Jin Cheol
Kim, Yeongeun
Kim, Yul Hee
Park, Soon Sang
Muther, Charlotte
Tessier, Agnès
Lee, Gimyung
Gendronneau, Gaëlle
Forestier, Sandra
Ben-Khalifa, Youcef
Park, Tae Jun
Kang, Hee Young
Senescent melanocytes driven by glycolytic changes are characterized by melanosome transport dysfunction
title Senescent melanocytes driven by glycolytic changes are characterized by melanosome transport dysfunction
title_full Senescent melanocytes driven by glycolytic changes are characterized by melanosome transport dysfunction
title_fullStr Senescent melanocytes driven by glycolytic changes are characterized by melanosome transport dysfunction
title_full_unstemmed Senescent melanocytes driven by glycolytic changes are characterized by melanosome transport dysfunction
title_short Senescent melanocytes driven by glycolytic changes are characterized by melanosome transport dysfunction
title_sort senescent melanocytes driven by glycolytic changes are characterized by melanosome transport dysfunction
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10405833/
https://www.ncbi.nlm.nih.gov/pubmed/37554281
http://dx.doi.org/10.7150/thno.84912
work_keys_str_mv AT parkyoungjoon senescentmelanocytesdrivenbyglycolyticchangesarecharacterizedbymelanosometransportdysfunction
AT kimjincheol senescentmelanocytesdrivenbyglycolyticchangesarecharacterizedbymelanosometransportdysfunction
AT kimyeongeun senescentmelanocytesdrivenbyglycolyticchangesarecharacterizedbymelanosometransportdysfunction
AT kimyulhee senescentmelanocytesdrivenbyglycolyticchangesarecharacterizedbymelanosometransportdysfunction
AT parksoonsang senescentmelanocytesdrivenbyglycolyticchangesarecharacterizedbymelanosometransportdysfunction
AT muthercharlotte senescentmelanocytesdrivenbyglycolyticchangesarecharacterizedbymelanosometransportdysfunction
AT tessieragnes senescentmelanocytesdrivenbyglycolyticchangesarecharacterizedbymelanosometransportdysfunction
AT leegimyung senescentmelanocytesdrivenbyglycolyticchangesarecharacterizedbymelanosometransportdysfunction
AT gendronneaugaelle senescentmelanocytesdrivenbyglycolyticchangesarecharacterizedbymelanosometransportdysfunction
AT forestiersandra senescentmelanocytesdrivenbyglycolyticchangesarecharacterizedbymelanosometransportdysfunction
AT benkhalifayoucef senescentmelanocytesdrivenbyglycolyticchangesarecharacterizedbymelanosometransportdysfunction
AT parktaejun senescentmelanocytesdrivenbyglycolyticchangesarecharacterizedbymelanosometransportdysfunction
AT kangheeyoung senescentmelanocytesdrivenbyglycolyticchangesarecharacterizedbymelanosometransportdysfunction