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Prodromal metabolic phenotype in MCI cybrids: implications for Alzheimer's disease
D F Silva1, I Santana, A R Esteves
1CNC-Center for Neuroscience and Cell Biology, University of Coimbra, Coimbra, Portugal.
Abstract:
Mild cognitive impairment (MCI) is considered a nosological entity or a translational state between normal aging and sporadic Alzheimer's disease (AD). From brain tissue to peripheral blood samples, it is evident that the early markers of metabolic dysfunction observed in AD have also been found in MCI subjects. These observations obtained from MCI and AD subjects leave open the possibility that mitochondrial dysfunction-induced oxidative damage happening a priori of symptom onset, may trigger other pathological hallmarks, namely Aβ oligomerization. In this study, we used a citoplasmic hybrid (cybrid) model created by the repopulation of human teratocarcinoma (NT2) cells depleted of endogenous mitochondrial DNA (mtDNA) with platelets from age-matched controls, MCI and AD subjects. We found mitochondrial deficits in MCI and AD cybrids as compared with controls, such as a decrease in cytochrome c oxidase (COX) activity, a decrease in mitochondrial membrane potential and in mitochondrial cytochrome c content. Consequently, we analyzed parameters of oxidative damage and found that AD and MCI cybrids exhibit an increase in lipid peroxides, higher production of superoxide radicals, and higher content in protein carbonyls. Since our data clearly show alterations in mitochondrial-mediated oxidative damage in MCI cybrids we propose that mitochondrial dysfunction is an early event in idiopathic AD. Moreover, we found that mitochondrial Aβ oligomeric content increases in AD, which may exacerbate initial mitochondrial damage. Altogether, our data strongly supports a key role for mitochondria/ mtDNA in aged-driven AD pathology.
Insights
Mitochondrial dysfunction and oxidative damage are early signs in mild cognitive impairment (MCI) and Alzheimer's disease (AD). These cellular changes precede symptom onset, highlighting mitochondria's role in AD pathology.
Area of Science:
- Neuroscience
- Cell Biology
- Biochemistry
Background:
- Mild cognitive impairment (MCI) represents a transitional stage between normal aging and Alzheimer's disease (AD).
- Early metabolic dysfunction markers found in AD are also present in MCI patients.
- Mitochondrial dysfunction may precede and trigger other AD pathologies like Aβ oligomerization.
Purpose of the Study:
- To investigate the role of mitochondrial dysfunction and oxidative damage in MCI and AD.
- To determine if mitochondrial deficits occur before the onset of clinical symptoms.
Main Methods:
- Utilized a cybrid model by repopulating human NT2 cells with platelets from controls, MCI, and AD subjects.
- Assessed mitochondrial function by measuring cytochrome c oxidase (COX) activity, membrane potential, and cytochrome c content.
- Analyzed oxidative damage markers including lipid peroxides, superoxide radicals, and protein carbonyls.
Main Results:
- MCI and AD cybrids showed decreased mitochondrial function (COX activity, membrane potential, cytochrome c).
- Both MCI and AD cybrids exhibited increased oxidative damage (lipid peroxides, superoxide radicals, protein carbonyls).
- Mitochondrial amyloid-beta (Aβ) oligomeric content increased in AD cybrids.
Conclusions:
- Mitochondrial dysfunction is an early event in idiopathic AD, occurring before significant symptom development.
- Oxidative damage resulting from mitochondrial dysfunction plays a crucial role in AD pathogenesis.
- Mitochondria and mitochondrial DNA (mtDNA) are central to age-driven AD pathology.
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