» Articles » PMID: 34102705

Protective Effects of Sciadopitysin Against Methylglyoxal-induced Degeneration in Neuronal SK-N-MC Cells

Overview
Journal J Appl Toxicol
Specialty Toxicology
Date 2021 Jun 8
PMID 34102705
Citations 6
Authors
Affiliations
Soon will be listed here.
Abstract

The accumulation of advanced glycation end products (AGEs) causes metabolic dysfunction and neuronal cell damage. Methylglyoxal (MG) is a major glycating agent that reacts with basic residues present in proteins and promotes the formation of AGEs. Sciadopitysin, a type of biflavonoid, exerts protective effects against neuronal cell damage; however, the underlying mechanisms have not been studied. This study aimed to investigate the mechanisms underlying the protective effects of sciadopitysin against MG-mediated cytotoxicity in SK-N-MC neuroblastoma cells. Our results demonstrated that pretreatment of SK-N-MC cells with sciadopitysin improved the cell viability that was inhibited by MG and inhibited the apoptosis induced by MG. Sciadopitysin attenuated intracellular Ca , NOX4 levels, oxidative stress, and MG-protein adduct levels, and increased nuclear Nrf2 and glyoxalase 1 levels in the presence of MG. These results suggest that sciadopitysin exerts neuroprotective effects against MG-induced death of human SK-N-MC cells via its antioxidative action. This study highlights sciadopitysin as a promising candidate for antioxidant therapy and designing natural drugs against AGE-induced neurodegenerative disorders.

Citing Articles

Elucidating the Antiglycation Effect of Creatine on Methylglyoxal-Induced Carbonyl Stress In Vitro.

Koike S, Mitsuhashi H, Kishida A, Ogasawara Y Int J Mol Sci. 2024; 25(20).

PMID: 39456665 PMC: 11506949. DOI: 10.3390/ijms252010880.


An integrated proteomics and metabolomics analysis of methylglyoxal-induced neurotoxicity in a human neuroblastoma cell line.

Wang H, Boeren S, Bakker W, Rietjens I, Saccenti E, Zheng L NPJ Sci Food. 2024; 8(1):84.

PMID: 39448607 PMC: 11502746. DOI: 10.1038/s41538-024-00328-0.


Use of physiologically based kinetic modeling to predict neurotoxicity and genotoxicity of methylglyoxal in humans.

Zheng L, Li X, Widjaja F, Liu C, Rietjens I NPJ Sci Food. 2024; 8(1):79.

PMID: 39368970 PMC: 11455947. DOI: 10.1038/s41538-024-00322-6.


3D human stem-cell-derived neuronal spheroids for neurotoxicity testing of methylglyoxal, highly reactive glycolysis byproduct and potent glycating agent.

Coccini T, Caloni F, Russo L, Villani L, Lonati D, De Simone U Curr Res Toxicol. 2024; 7:100176.

PMID: 38975063 PMC: 11225170. DOI: 10.1016/j.crtox.2024.100176.


Network Pharmacology and Bioinformatics Analysis to Identify the Molecular Targets and its Biological Mechanisms of Sciadopitysin against Glioblastoma.

Lian H, Xiong Y, Zhao G, Yi M, Wang J, Liu H J Cancer. 2024; 15(12):3675-3683.

PMID: 38911393 PMC: 11190769. DOI: 10.7150/jca.94202.