Search bioRxiv⌕ Search

Biology subjects

Fortuna, J. T. S.

Publications and source records attributed to Fortuna, J. T. S..

2 recordsLinked to original sources

AAV-mediated neuronal expression of a scFv antibody selective for Aβ oligomers protects synapses and rescues memory in Alzheimer models

Brain accumulation of soluble oligomers of the amyloid-{beta} peptide (A{beta}Os) has been implicated in synapse failure and memory impairment in Alzheimers disease. Here, we show that treatment with NUsc1, a single-chain variable fragment antibody (scFv) that selectively targets A{beta}Os, prevents the inhibition of long-term potentiation in hippocampal slices and memory impairment induced by A{beta}Os in mice. As a therapeutic approach for intracerebral antibody delivery, we developed an adeno-associated virus vector to drive neuronal expression of NUsc1 (AAV-NUsc1) within the brain. Transduction by AAV-NUsc1 induced NUsc1 expression and secretion in adult human brain slices, and inhibited A{beta}O binding to neurons and A{beta}O-induced loss of dendritic spine loss in primary rat hippocampal cultures. Treatment of mice with AAV-NUsc1 prevented memory impairment induced by A{beta}Os and, importantly, reversed memory deficits in aged APPswe/PS1{Delta}E9 Alzheimers disease model mice. These results support the feasibility of gene-mediated immunotherapy using single-chain antibodies as a potential therapeutic approach in Alzheimers disease.

neuroscience↗

Oxytocin attenuates microglial activation and restores social and non-social memory in the APP/PS1 mouse model of Alzheimer's disease

Alzheimers disease (AD) is the main cause of dementia in the elderly and is characterized by memory loss, social withdrawal and neurodegeneration, eventually leading to death. Brain inflammation has emerged as a key pathogenic mechanism in AD. We hypothesized that oxytocin, a pro-social hypothalamic neuropeptide with anti-inflammatory properties, could have therapeutic actions in AD. We investigated oxytocin production in mouse models of AD, and evaluated the therapeutic potential of intranasal oxytocin. We observed lower levels of hypothalamic oxytocin in wild-type mice following brain infusion of amyloid-{beta} oligomers (A{beta}Os), as well as in APP/PS1 AD model mice. Treatment of APP/PS1 mice with intranasal oxytocin reduced microglial activation and favored deposition of A{beta} in dense core plaques, a potentially neuroprotective mechanism. Oxytocin further alleviated social and non-social memory impairments in APP/PS1 mice. Our findings point to oxytocin as a potential therapeutic target to reduce brain inflammation and correct memory deficits in AD.

neuroscience↗