Cargando…

Glycolaldehyde, an Advanced Glycation End Products Precursor, Induces Apoptosis via ROS-Mediated Mitochondrial Dysfunction in Renal Mesangial Cells

Glycolaldehyde (GA) is a reducing sugar and a precursor of advanced glycation end products (AGEs). The role of precursor and precursor-derived AGEs in diabetes and its complications have been actively discussed in the literature. This study aimed to elucidate the mechanism of GA-induced apoptosis in...

Descripción completa

Detalles Bibliográficos
Autores principales: Gu, Min Ji, Hyon, Ju-Youg, Lee, Hee-Weon, Han, Eun Hee, Kim, Yoonsook, Cha, Youn-Soo, Ha, Sang Keun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9137959/
https://www.ncbi.nlm.nih.gov/pubmed/35624799
http://dx.doi.org/10.3390/antiox11050934
_version_ 1784714508284985344
author Gu, Min Ji
Hyon, Ju-Youg
Lee, Hee-Weon
Han, Eun Hee
Kim, Yoonsook
Cha, Youn-Soo
Ha, Sang Keun
author_facet Gu, Min Ji
Hyon, Ju-Youg
Lee, Hee-Weon
Han, Eun Hee
Kim, Yoonsook
Cha, Youn-Soo
Ha, Sang Keun
author_sort Gu, Min Ji
collection PubMed
description Glycolaldehyde (GA) is a reducing sugar and a precursor of advanced glycation end products (AGEs). The role of precursor and precursor-derived AGEs in diabetes and its complications have been actively discussed in the literature. This study aimed to elucidate the mechanism of GA-induced apoptosis in renal cells. Immunoblotting results showed that GA (100 μM) caused cytotoxicity in murine renal glomerular mesangial cells (SV40 MES 13) and induced apoptosis via major modulators, decreasing Bcl-2 and increasing Bax, cytochrome c, and cleaved caspase-3/-9 expression. GA-derived AGE accumulation and receptor for AGE (RAGE) expression increased in mesangial cells; however, cells that were cotreated with aminoguanidine (AG) showed no increase in GA-derived AGE concentration. Furthermore, reactive oxygen species (ROS) production was increased by GA, while AG inhibited AGE formation, leading to a decrease in ROS levels in mesangial cells. We evaluated apoptosis through fluorescence-activated cell sorting, and used TUNEL staining to study DNA fragmentation. Additionally, we measured ATP generation and used MitoTracker staining to access changes in mitochondrial membrane potential. This study showed that GA increased AGE concentration, RAGE expression, and excessive ROS generation, leading to renal mesangial cell damage via GA-induced apoptosis pathway caused by mitochondrial dysfunction.
format Online
Article
Text
id pubmed-9137959
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-91379592022-05-28 Glycolaldehyde, an Advanced Glycation End Products Precursor, Induces Apoptosis via ROS-Mediated Mitochondrial Dysfunction in Renal Mesangial Cells Gu, Min Ji Hyon, Ju-Youg Lee, Hee-Weon Han, Eun Hee Kim, Yoonsook Cha, Youn-Soo Ha, Sang Keun Antioxidants (Basel) Article Glycolaldehyde (GA) is a reducing sugar and a precursor of advanced glycation end products (AGEs). The role of precursor and precursor-derived AGEs in diabetes and its complications have been actively discussed in the literature. This study aimed to elucidate the mechanism of GA-induced apoptosis in renal cells. Immunoblotting results showed that GA (100 μM) caused cytotoxicity in murine renal glomerular mesangial cells (SV40 MES 13) and induced apoptosis via major modulators, decreasing Bcl-2 and increasing Bax, cytochrome c, and cleaved caspase-3/-9 expression. GA-derived AGE accumulation and receptor for AGE (RAGE) expression increased in mesangial cells; however, cells that were cotreated with aminoguanidine (AG) showed no increase in GA-derived AGE concentration. Furthermore, reactive oxygen species (ROS) production was increased by GA, while AG inhibited AGE formation, leading to a decrease in ROS levels in mesangial cells. We evaluated apoptosis through fluorescence-activated cell sorting, and used TUNEL staining to study DNA fragmentation. Additionally, we measured ATP generation and used MitoTracker staining to access changes in mitochondrial membrane potential. This study showed that GA increased AGE concentration, RAGE expression, and excessive ROS generation, leading to renal mesangial cell damage via GA-induced apoptosis pathway caused by mitochondrial dysfunction. MDPI 2022-05-09 /pmc/articles/PMC9137959/ /pubmed/35624799 http://dx.doi.org/10.3390/antiox11050934 Text en © 2022 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
Gu, Min Ji
Hyon, Ju-Youg
Lee, Hee-Weon
Han, Eun Hee
Kim, Yoonsook
Cha, Youn-Soo
Ha, Sang Keun
Glycolaldehyde, an Advanced Glycation End Products Precursor, Induces Apoptosis via ROS-Mediated Mitochondrial Dysfunction in Renal Mesangial Cells
title Glycolaldehyde, an Advanced Glycation End Products Precursor, Induces Apoptosis via ROS-Mediated Mitochondrial Dysfunction in Renal Mesangial Cells
title_full Glycolaldehyde, an Advanced Glycation End Products Precursor, Induces Apoptosis via ROS-Mediated Mitochondrial Dysfunction in Renal Mesangial Cells
title_fullStr Glycolaldehyde, an Advanced Glycation End Products Precursor, Induces Apoptosis via ROS-Mediated Mitochondrial Dysfunction in Renal Mesangial Cells
title_full_unstemmed Glycolaldehyde, an Advanced Glycation End Products Precursor, Induces Apoptosis via ROS-Mediated Mitochondrial Dysfunction in Renal Mesangial Cells
title_short Glycolaldehyde, an Advanced Glycation End Products Precursor, Induces Apoptosis via ROS-Mediated Mitochondrial Dysfunction in Renal Mesangial Cells
title_sort glycolaldehyde, an advanced glycation end products precursor, induces apoptosis via ros-mediated mitochondrial dysfunction in renal mesangial cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9137959/
https://www.ncbi.nlm.nih.gov/pubmed/35624799
http://dx.doi.org/10.3390/antiox11050934
work_keys_str_mv AT guminji glycolaldehydeanadvancedglycationendproductsprecursorinducesapoptosisviarosmediatedmitochondrialdysfunctioninrenalmesangialcells
AT hyonjuyoug glycolaldehydeanadvancedglycationendproductsprecursorinducesapoptosisviarosmediatedmitochondrialdysfunctioninrenalmesangialcells
AT leeheeweon glycolaldehydeanadvancedglycationendproductsprecursorinducesapoptosisviarosmediatedmitochondrialdysfunctioninrenalmesangialcells
AT haneunhee glycolaldehydeanadvancedglycationendproductsprecursorinducesapoptosisviarosmediatedmitochondrialdysfunctioninrenalmesangialcells
AT kimyoonsook glycolaldehydeanadvancedglycationendproductsprecursorinducesapoptosisviarosmediatedmitochondrialdysfunctioninrenalmesangialcells
AT chayounsoo glycolaldehydeanadvancedglycationendproductsprecursorinducesapoptosisviarosmediatedmitochondrialdysfunctioninrenalmesangialcells
AT hasangkeun glycolaldehydeanadvancedglycationendproductsprecursorinducesapoptosisviarosmediatedmitochondrialdysfunctioninrenalmesangialcells