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Hormone deprivation alters mitochondrial function and lipid profile in the hippocampus
Sandra Zárate, Mariana Astiz, Natalia Magnani, Mercedes Imsen, Florencia Merino, Silvia Álvarez, Analı́a Reinés, Adriana Seilicovich
Journal of Endocrinology · 2017 · ▲ 18 citations
Abstract
Mitochondrial dysfunction(definition) is a common hallmark in aging. In the female, reproductive senescence(definition) is characterized by loss of ovarian hormones, many of whose neuroprotective effects converge upon mitochondria. The functional integrity of mitochondria is dependent on membrane fatty acid and phospholipid composition, which are also affected during aging. The effect of long-term ovarian hormone deprivation upon mitochondrial function and its putative association with changes in mitochondrial membrane lipid profile in the hippocampus, an area primarily affected during aging and highly responsive to ovarian hormones, is unknown. To this aim, Wistar adult female rats were ovariectomized or sham-operated. Twelve weeks later, different parameters of mitochondrial function (O 2 uptake, ATP production, membrane potential and respiratory complex activities) as well as membrane phospholipid content and composition were evaluated in hippocampal mitochondria. Chronic ovariectomy reduced mitochondrial O 2 uptake and ATP production rates and induced membrane depolarization during active respiration without altering the activity of respiratory complexes. Mitochondrial membrane lipid profile showed no changes in cholesterol levels but higher levels of unsaturated fatty acids and a higher peroxidizability index in mitochondria from ovariectomized rats. Interestingly, ovariectomy also reduced cardiolipin content and altered cardiolipin fatty acid profile leading to a lower peroxidizability index. In conclusion, chronic ovarian hormone deprivation induces mitochondrial dysfunction and changes in the mitochondrial membrane lipid profile comparable to an aging phenotype. Our study provides insights into ovarian hormone loss-induced early lipidomic changes with bioenergetic deficits in the hippocampus that may contribute to the increased risk of Alzheimer’s disease and other age-associated disorders observed in postmenopause.
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- 10.1530/joe-16-0451
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- 2026-06-01 MST
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APA
Zárate, S., Astiz, M., Magnani, N., Imsen, M., Merino, F., Álvarez, S., Reinés, A., & Seilicovich, A. (2017). Hormone deprivation alters mitochondrial function and lipid profile in the hippocampus. <em>Journal of Endocrinology</em>. https://doi.org/10.1530/joe-16-0451
Vancouver
Zárate S, Astiz M, Magnani N, Imsen M, Merino F, Álvarez S, et al. Hormone deprivation alters mitochondrial function and lipid profile in the hippocampus. Journal of Endocrinology. 2017. doi:10.1530/joe-16-0451.
BibTeX
@article{sandra2017Hormon,
title = {Hormone deprivation alters mitochondrial function and lipid profile in the hippocampus},
author = {Sandra Zárate and Mariana Astiz and Natalia Magnani and Mercedes Imsen and Florencia Merino and Silvia Álvarez and Analı́a Reinés and Adriana Seilicovich},
journal = {Journal of Endocrinology},
year = {2017},
doi = {10.1530/joe-16-0451},
}
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