Ontology highlight
ABSTRACT: Background
Growing evidence suggests that the non-receptor tyrosine kinase, c-Abl, plays a significant role in the pathogenesis of Alzheimer's disease (AD). Here, we analyzed the effect of c-Abl on the cognitive performance decline of APPSwe/PSEN1ΔE9 (APP/PS1) mouse model for AD.Methods
We used the conditional genetic ablation of c-Abl in the brain (c-Abl-KO) and pharmacological treatment with neurotinib, a novel allosteric c-Abl inhibitor with high brain penetrance, imbued in rodent's chow.Results
We found that APP/PS1/c-Abl-KO mice and APP/PS1 neurotinib-fed mice had improved performance in hippocampus-dependent tasks. In the object location and Barnes-maze tests, they recognized the displaced object and learned the location of the escape hole faster than APP/PS1 mice. Also, APP/PS1 neurotinib-fed mice required fewer trials to reach the learning criterion in the memory flexibility test. Accordingly, c-Abl absence and inhibition caused fewer amyloid plaques, reduced astrogliosis, and preserved neurons in the hippocampus.Discussion
Our results further validate c-Abl as a target for AD, and the neurotinib, a novel c-Abl inhibitor, as a suitable preclinical candidate for AD therapies.
SUBMITTER: Leon R
PROVIDER: S-EPMC10289333 | biostudies-literature | 2023
REPOSITORIES: biostudies-literature
León Rilda R Gutiérrez Daniela A DA Pinto Claudio C Morales Cristian C de la Fuente Catalina C Riquelme Cristóbal C Cortés Bastián I BI González-Martin Adrián A Chamorro David D Espinosa Nelson N Fuentealba Pablo P Cancino Gonzalo I GI Zanlungo Silvana S Dulcey Andrés E AE Marugan Juan J JJ Álvarez Rojas Alejandra A
Frontiers in aging neuroscience 20230605
<h4>Background</h4>Growing evidence suggests that the non-receptor tyrosine kinase, c-Abl, plays a significant role in the pathogenesis of Alzheimer's disease (AD). Here, we analyzed the effect of c-Abl on the cognitive performance decline of APPSwe/PSEN1ΔE9 (APP/PS1) mouse model for AD.<h4>Methods</h4>We used the conditional genetic ablation of c-Abl in the brain (c-Abl-KO) and pharmacological treatment with neurotinib, a novel allosteric c-Abl inhibitor with high brain penetrance, imbued in ro ...[more]