Open access · CC-BY
via OpenAlex
The Causal Role of Lipoxidative Damage in Mitochondrial Bioenergetic Dysfunction Linked to Alzheimer’s Disease Pathology
Mariona Jové, Natàlia Mota‐Martorell, Pascual Torres, Victòria Ayala, Manuel Portero‐Otín, Isidró Ferrer, Reinald Pamplona
Life · 2021 · ▲ 33 citations
Abstract
Current shreds of evidence point to the entorhinal cortex (EC) as the origin of the Alzheimer's disease (AD) pathology in the cerebrum. Compared with other cortical areas, the neurons from this brain region possess an inherent selective vulnerability derived from particular oxidative stress conditions that favor increased mitochondrial molecular damage with early bioenergetic involvement. This alteration of energy metabolism is the starting point for subsequent changes in a multitude of cell mechanisms, leading to neuronal dysfunction and, ultimately, cell death. These events are induced by changes that come with age, creating the substrate for the alteration of several neuronal pathways that will evolve toward neurodegeneration and, consequently, the development of AD pathology. In this context, the present review will focus on description of the biological mechanisms that confer vulnerability specifically to neurons of the entorhinal cortex, the changes induced by the aging process in this brain region, and the alterations at the mitochondrial level as the earliest mechanism for the development of AD pathology. Current findings allow us to propose the existence of an altered allostatic mechanism at the entorhinal cortex whose core is made up of mitochondrial oxidative stress, lipid metabolism, and energy production, and which, in a positive loop, evolves to neurodegeneration, laying the basis for the onset and progression of AD pathology.
◌ CITATION ONLY
Full text is not openly licensed for redistribution here. Read it at the source:
Provenance
- Source
- OpenAlex
- DOI
- 10.3390/life11050388
- Canonical
- link ↗
- Fetched
- 2026-06-01 MST
Cite this
APA
Jové, M., Mota‐Martorell, N., Torres, P., Ayala, V., Portero‐Otín, M., Ferrer, I., & Pamplona, R. (2021). The Causal Role of Lipoxidative Damage in Mitochondrial Bioenergetic Dysfunction Linked to Alzheimer’s Disease Pathology. <em>Life</em>. https://doi.org/10.3390/life11050388
Vancouver
Jové M, Mota‐Martorell N, Torres P, Ayala V, Portero‐Otín M, Ferrer I, et al. The Causal Role of Lipoxidative Damage in Mitochondrial Bioenergetic Dysfunction Linked to Alzheimer’s Disease Pathology. Life. 2021. doi:10.3390/life11050388.
BibTeX
@article{mariona2021TheCau,
title = {The Causal Role of Lipoxidative Damage in Mitochondrial Bioenergetic Dysfunction Linked to Alzheimer’s Disease Pathology},
author = {Mariona Jové and Natàlia Mota‐Martorell and Pascual Torres and Victòria Ayala and Manuel Portero‐Otín and Isidró Ferrer and Reinald Pamplona},
journal = {Life},
year = {2021},
doi = {10.3390/life11050388},
}
Research neighborhood
References, citing works, and semantically nearest findings. Click a node to open it.
Related findings
Cells 2020
Open access · CC-BY
Early Onset of Sex-Dependent Mitochondrial Deficits in the Cortex of 3xTg Alzheimer’s Mice
Biomolecules 2025
Open access · CC-BY
Mitochondrial Aging in the CNS: Unravelling Implications for Neurological Health and Disease
International Journal of Molecular Sciences 2022
Open access · CC-BY
Phosphorylated Tau in Alzheimer’s Disease and Other Tauopathies
Frontiers in Neuroscience 2017
Open access · CC-BY
Mitochondrial Bioenergetics Is Altered in Fibroblasts from Patients with Sporadic Alzheimer's Disease
Molecular Neurodegeneration 2014
Open access · OA
Increased mtDNA mutations with aging promotes amyloid accumulation and brain atrophy in the APP/Ld transgenic mouse model of Alzheimer’s disease
Biochemistry (Moscow) 2021
Citation only