bioRxiv · 10.1101/487405
Attenuation of Aβ-associated hyperactivity reduces Aβ and tau pathology along the entorhinal cortex-hippocampal network
Abstract
High levels of the amyloid-beta (A{beta}) peptide have been shown to disrupt neuronal function and induce hyperexcitability but it is unclear what effects A{beta}-associated hyperexcitability may have on tauopathy pathogenesis or propagation in vivo. Using a novel transgenic mouse line to model the impact of hAPP/A{beta} accumulation on tauopathy in the entorhinal cortex-hippocampal (EC-HIPP) network, we demonstrate that hAPP aggravates EC tau aggregation and accelerates pathological tau spread into the hippocampus. In vivo recordings revealed a strong role for hAPP/A{beta}, but not tau, in the emergence of EC neuronal hyperactivity and impaired theta rhythmicity. Chemogenetic attenuation of A{beta}-associated hyperactivity led to reduced hAPP/A{beta} accumulation and reduction of pathological tau in downstream hippocampus. These data strongly support the hypothesis that in Alzheimers disease (AD), A{beta}-associated hyperactivity accelerates the progression of pathological tau along vulnerable neuronal circuits, and demonstrates the utility of chronic, neuromodulatory approaches in ameliorating AD pathology in vivo.
Source connections
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Rodriguez, G. A., Barrett, G. M., Duff, K. E., Hussaini, A.. 2018-12-04. Attenuation of Aβ-associated hyperactivity reduces Aβ and tau pathology along the entorhinal cortex-hippocampal network. https://doi.org/10.1101/487405
Cite the original work for its findings. Save a collection to share your selection of sources.