The role of the cerebellum in Alzheimer’s disease (AD) has been neglected for a long time. Recent studies carried out using transgenic mouse models have demonstrated that amyloid-b (Ab) is deposited in the cerebellum and affects synaptic transmission and plasticity, sometimes before plaque formation. A wide variability of motor phenotype has been observed in the different murine models of AD, without a consistent correlation with the extent of cerebellar histopathological changes or with cognitive deficits. The loss of noradrenergic drive may contribute to the impairment of cerebellar synaptic function and motor learning observed in these mice. Furthermore, cerebellar neurons, particularly granule cells, have been used as in vitro model of Ab-induced neuronal damage. An unexpected conclusion is that the cerebellum, for a long time thought to be somehow protected from AD pathology, is actually considered as a region vulnerable to Ab toxic damage, even at the early stage of the disease, with consequences on motor performance.
The Emerging Role of Altered Cerebellar Synaptic Processing in Alzheimer’s Disease / Hoxha, Eriola; Lippiello, Pellegrino; Zurlo, Fabio; Balbo, Ilaria; Santamaria, Rita; Tempia, Filippo; Miniaci, Maria. - In: FRONTIERS IN AGING NEUROSCIENCE. - ISSN 1663-4365. - 10:(2018), pp. 1-9. [10.3389/fnagi.2018.00396]
The Emerging Role of Altered Cerebellar Synaptic Processing in Alzheimer’s Disease
Pellegrino Lippiello;Rita Santamaria;Maria Concetta MiniaciUltimo
2018
Abstract
The role of the cerebellum in Alzheimer’s disease (AD) has been neglected for a long time. Recent studies carried out using transgenic mouse models have demonstrated that amyloid-b (Ab) is deposited in the cerebellum and affects synaptic transmission and plasticity, sometimes before plaque formation. A wide variability of motor phenotype has been observed in the different murine models of AD, without a consistent correlation with the extent of cerebellar histopathological changes or with cognitive deficits. The loss of noradrenergic drive may contribute to the impairment of cerebellar synaptic function and motor learning observed in these mice. Furthermore, cerebellar neurons, particularly granule cells, have been used as in vitro model of Ab-induced neuronal damage. An unexpected conclusion is that the cerebellum, for a long time thought to be somehow protected from AD pathology, is actually considered as a region vulnerable to Ab toxic damage, even at the early stage of the disease, with consequences on motor performance.File | Dimensione | Formato | |
---|---|---|---|
Front. Aging Neurosci 2018.pdf
accesso aperto
Descrizione: Articolo
Licenza:
Dominio pubblico
Dimensione
1.22 MB
Formato
Adobe PDF
|
1.22 MB | Adobe PDF | Visualizza/Apri |
I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.