Astaxanthin Counteracts Excitotoxicity and Reduces the Associated Increases in Calcium Levels and Mitochondrial Reactive Oxygen Species Generation

Cataldo K.; Estay C.; Paula Lima A.; Munoz P.C.

Keywords: NMDA, Astaxanthin, calcium, mitochondrial superoxide, excitotoxicity.

Abstract

Astaxanthin (ASX) is a carotenoid pigment with strong antioxidant properties. We have reported previously thatASXprotects neurons fromthe noxious effects of amyloid-peptide oligomers, which promote excessive mitochondrial reactive oxygen species (mROS) production and induce a sustained increase in cytoplasmic Ca2+ concentration. These properties make ASX a promising therapeutic agent against pathological conditions that entail oxidative and Ca2+ dysregulation. Here, we studied whether ASX protects neurons fromN-methyl-D-Aspartate (NMDA)-induced excitotoxicity, a noxious process which decreases cellular viability, alters gene expression and promotes excessive mROS production. Incubation of the neuronal cell line SH-SY5Y with NMDA decreased cellular viability and increased mitochondrial superoxide production; pre-incubation with ASX prevented these effects. Additionally, incubation of SH-SY5Y cells with ASX effectively reduced the basal mROS production and prevented hydrogen peroxide-induced cell death. In primary hippocampal neurons, transfected with a genetically encoded cytoplasmic Ca2+ sensor, ASX also prevented the increase in intracellular Ca2+ concentration induced by NMDA.We suggest that, by preventing the noxious mROS and Ca2+ increases that occur under excitotoxic conditions, ASX could be useful as a therapeutic agent in neurodegenerative pathologies that involve alterations in Ca2+ homeostasis and ROS generation.

Más información

Título según WOS: Astaxanthin Counteracts Excitotoxicity and Reduces the Ensuing Increases in Calcium Levels and Mitochondrial Reactive Oxygen Species Generation
Título según SCOPUS: Astaxanthin counteracts excitotoxicity and reduces the ensuing increases in calcium levels and mitochondrial reactive oxygen species generation
Título de la Revista: Marine Drugs
Volumen: 18
Número: 6
Editorial: Multidisciplinary Digital Publishing Institute (MDPI)
Fecha de publicación: 2020
Idioma: English
Financiamiento/Sponsor: This research was funded by CORFO (13IDL2-18271), FONDECYT (11140580, 1150736, 1170053), BNI (P-09-015) and UBO/VVCM 1905.
DOI:

10.3390/MD18060335

Notas: ISI, SCOPUS - ISI