Open access · CC-BY
via OpenAlex
Sex hormone-related neurosteroids differentially rescue bioenergetic deficits induced by amyloid-β or hyperphosphorylated tau protein
Amandine Grimm, Emily E. Biliouris, Undine E. Lang, Jürgen Götz, Ayikoe Guy Mensah‐Nyagan, Anne Eckert
Cellular and Molecular Life Sciences · 2015 · ▲ 101 citations
Abstract
Alzheimer's disease (AD) is an age-related neurodegenerative disease marked by a progressive cognitive decline. Metabolic impairments are common hallmarks of AD, and amyloid-β (Aβ) peptide and hyperphosphorylated tau protein--the two foremost histopathological signs of AD--have been implicated in mitochondrial dysfunction(definition). Neurosteroids have recently shown promise in alleviating cognitive and neuronal sequelae of AD. The present study evaluates the impact of neurosteroids belonging to the sex hormone family (progesterone, estradiol, estrone, testosterone, 3α-androstanediol) on mitochondrial dysfunction in cellular models of AD: human neuroblastoma cells (SH-SY5Y) stably transfected with constructs encoding (1) the human amyloid precursor protein (APP) resulting in overexpression of APP and Aβ, (2) wild-type tau (wtTau), and (3) mutant tau (P301L), that induces abnormal tau hyperphosphorylation. We show that while APP and P301L cells both display a drop in ATP levels, they present distinct mitochondrial impairments with regard to their bioenergetic profiles. The P301L cells presented a decreased maximal respiration and spare respiratory capacity, while APP cells exhibited, in addition, a decrease in basal respiration, ATP turnover, and glycolytic reserve. All neurosteroids showed beneficial effects on ATP production and mitochondrial membrane potential in APP/Aβ overexpressing cells while only progesterone and estradiol increased ATP levels in mutant tau cells. Of note, testosterone was more efficient in alleviating Aβ-induced mitochondrial deficits, while progesterone and estrogen were the most effective neurosteroids in our model of AD-related tauopathy. Our findings lend further support to the neuroprotective effects of neurosteroids in AD and may open new avenues for the development of gender-specific therapeutic approaches in AD.
◌ CITATION ONLY
Full text is not openly licensed for redistribution here. Read it at the source:
Provenance
- Source
- OpenAlex
- DOI
- 10.1007/s00018-015-1988-x
- Canonical
- link ↗
- Fetched
- 2026-06-06 MST
Cite this
APA
Grimm, A., Biliouris, E.E., Lang, U.E., Götz, J., Mensah‐Nyagan, A.G., & Eckert, A. (2015). Sex hormone-related neurosteroids differentially rescue bioenergetic deficits induced by amyloid-β or hyperphosphorylated tau protein. <em>Cellular and Molecular Life Sciences</em>. https://doi.org/10.1007/s00018-015-1988-x
Vancouver
Grimm A, Biliouris EE, Lang UE, Götz J, Mensah‐Nyagan AG, Eckert A. Sex hormone-related neurosteroids differentially rescue bioenergetic deficits induced by amyloid-β or hyperphosphorylated tau protein. Cellular and Molecular Life Sciences. 2015. doi:10.1007/s00018-015-1988-x.
BibTeX
@article{amandine2015Sexhor,
title = {Sex hormone-related neurosteroids differentially rescue bioenergetic deficits induced by amyloid-β or hyperphosphorylated tau protein},
author = {Amandine Grimm and Emily E. Biliouris and Undine E. Lang and Jürgen Götz and Ayikoe Guy Mensah‐Nyagan and Anne Eckert},
journal = {Cellular and Molecular Life Sciences},
year = {2015},
doi = {10.1007/s00018-015-1988-x},
}
Research neighborhood
References, citing works, and semantically nearest findings. Click a node to open it.
Related findings
International Journal of Molecular Sciences 2023
Open access · CC-BY
Spermidine Rescues Bioenergetic and Mitophagy Deficits Induced by Disease-Associated Tau Protein
Human Molecular Genetics 2012
Open access · OA
Abnormal interaction of VDAC1 with amyloid beta and phosphorylated tau causes mitochondrial dysfunction in Alzheimer's disease
Frontiers in Aging Neuroscience 2021
Open access · CC-BY
Exercise-Induced Benefits for Alzheimer’s Disease by Stimulating Mitophagy and Improving Mitochondrial Function
Frontiers in Cell and Developmental Biology 2020
Open access · CC-BY
Culprit or Bystander: Defective Mitophagy in Alzheimer’s Disease
Molecular Neurodegeneration 2013
Open access · CC-BY
Drosophila melanogaster as a model organism for Alzheimer’s disease
International Journal of Molecular Sciences 2023
Open access · CC-BY