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Upregulation of Ca

Authors :
Livia, La Barbera
Annalisa, Nobili
Emma, Cauzzi
Ilaria, Paoletti
Mauro, Federici
Luana, Saba
Cecilia, Giacomet
Ramona, Marino
Paraskevi, Krashia
Marcello, Melone
Flavio, Keller
Nicola Biagio, Mercuri
Maria Teresa, Viscomi
Fiorenzo, Conti
Marcello, D'Amelio
Source :
Molecular neurodegeneration. 17(1)
Publication Year :
2022

Abstract

Recent clinical and experimental studies have highlighted the involvement of Ventral Tegmental Area (VTA) dopamine (DA) neurons for the early pathogenesis of Alzheimer's Disease (AD). We have previously described a progressive and selective degeneration of these neurons in the Tg2576 mouse model of AD, long before amyloid-beta plaque formation. The degenerative process in DA neurons is associated with an autophagy flux impairment, whose rescue can prevent neuronal loss. Impairments in autophagy can be the basis for accumulation of damaged mitochondria, leading to disturbance in calcium (CaIn Tg2576 mice, we performed amperometric recordings of DA levels and analysis of dopaminergic fibers in the Nucleus Accumbens - a major component of the ventral striatum precociously affected in AD patients - together with retrograde tracing, to identify the most vulnerable DA neuron subpopulations in the VTA. Then, we focused on these neurons to analyze mitochondrial integrity and Apoptosis-inducing factor (AIF) localization by electron and confocal microscopy, respectively. Stereological cell count was also used to evaluate degeneration of DA neuron subpopulations containing the CaWe found a progressive degeneration of mesolimbic DA neurons projecting to the ventral striatum, located in the paranigral nucleus and parabrachial pigmented subnucleus of the VTA. At the onset of degeneration (3 months of age), the vulnerable DA neurons in the Tg2576 accumulate damaged mitochondria, while AIF translocates from the mitochondria to the nucleus. Although we describe an age-dependent loss of the DA neurons expressing Calbindin-D28K or Calretinin, we observed that the remaining cells upregulate the levels of CaOverall, our results suggest that the overexpression of Ca

Details

ISSN :
17501326
Volume :
17
Issue :
1
Database :
OpenAIRE
Journal :
Molecular neurodegeneration
Accession number :
edsair.pmid..........1938ecf4bffedcbcb9dbef0ee842c710