Peer-Reviewed Journal Details
Mandatory Fields
Gonzalez-Giraldo, Y.,Garcia-Segura, L. M.,Echeverria, V.,Barreto, G. E.
2018
May
Mol Neurobiolmol Neurobiol
Tibolone Preserves Mitochondrial Functionality and Cell Morphology in Astrocytic Cells Treated with Palmitic Acid
Published
()
Optional Fields
Astrocytes/*cytology/drug effects/metabolism Cell Line, Tumor Cell Shape/*drug effects Cell Survival/drug effects Humans Mitochondria/drug effects/*metabolism Norpregnenes/*pharmacology Palmitic Acid/*toxicity
55
55
4453
4462
Obesity has been associated with increased chronic neuroinflammation and augmented risk of neurodegeneration. This is worsened during the normal aging process when the levels of endogenous gonadal hormones are reduced. In this study, we have assessed the protective actions of tibolone, a synthetic steroid with estrogenic actions, on T98G human astrocytic cells exposed to palmitic acid, a saturated fatty acid used to mimic obesity in vitro. Tibolone improved cell survival, and preserved mitochondrial membrane potential in palmitic acid-treated astrocytic cells. Although we did not find significant actions of tibolone on free radical production, it modulated astrocytic morphology after treatment with palmitic acid. These data suggest that tibolone protects astrocytic cells by preserving both mitochondrial functionality and morphological complexity.Obesity has been associated with increased chronic neuroinflammation and augmented risk of neurodegeneration. This is worsened during the normal aging process when the levels of endogenous gonadal hormones are reduced. In this study, we have assessed the protective actions of tibolone, a synthetic steroid with estrogenic actions, on T98G human astrocytic cells exposed to palmitic acid, a saturated fatty acid used to mimic obesity in vitro. Tibolone improved cell survival, and preserved mitochondrial membrane potential in palmitic acid-treated astrocytic cells. Although we did not find significant actions of tibolone on free radical production, it modulated astrocytic morphology after treatment with palmitic acid. These data suggest that tibolone protects astrocytic cells by preserving both mitochondrial functionality and morphological complexity.
1559-1182 (Electronic) 08
2017/07/02
http://www.ncbi.nlm.nih.gov/pubmed/28667487http://www.ncbi.nlm.nih.gov/pubmed/28667487
10.1007/s12035-017-0667-3
Grant Details