Visual evoked potentials as an early-stage biomarker in the rTg4510 tauopathy mouse model

Author:

Parka AleksandraORCID,Volbracht ChristianeORCID,Hall BenjaminORCID,Bastlund Jesper F.ORCID,Nedergaard MaikenORCID,Laursen Bettina,Botta PaoloORCID,Sotty FlorenceORCID

Abstract

AbstractTauopathies such as Alzheimer’s Disease (AD) and frontotemporal dementia (FTD) are characterized by formation of neurofibrillary tangles consisting of hyperphosphorylated tau protein. Early pathophysiological and functional changes related to neurofibrillary tangles formation are considered to occur prior to extensive neurodegeneration. Hyperphosphorylated tau has been detected in postmortem retinas of AD and FTD patients, and the visual pathway is an easily accessible system in a clinical setting. Hence, assessment of the visual function may offer the potential to detect consequences of early tau pathology in patients. In this study we explored the association between the visual system and functional consequences of tau pathology progression using a tauopathy rTg4510 mouse model. To this end, we recorded full-field electroretinography and visual evoked potentials in anesthetized and awake states at different ages. While retinal function remained mostly intact within all the age groups investigated, we detected significant changes in amplitudes of visual evoked potential responses in young rTg4510 mice exhibiting early tau pathology prior to neurodegeneration. These functional alterations in the visual cortex were positively correlated with pathological tau levels. Our findings suggest that visual processing could be useful as a novel electrophysiological biomarker for early stages of tauopathy.

Publisher

Cold Spring Harbor Laboratory

Reference56 articles.

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