Individuals at risk of developing Alzheimer’s disease (AD) often exhibit hippocampal hyperexcitability. A growing body of evidence suggests perturbations in the glutamatergic tripartite synapse may underlie this hyperexcitability. Here, we used a tau mouse model of AD (rTg(TauP301L)4510) to examine the effects of tau pathology on hippocampal glutamate regulation. We found a 40% increase in hippocampal vGLUT, which packages glutamate into vesicles, and has previously been shown to influence glutamate release, and a 40% decrease in hippocampal GLT-1, the major glutamate transporter responsible for removing glutamate from the extracellular space. To determine whether these alterations affected glutamate regulation in vivo, we measured tonic gl...
Neuronal hyperexcitability linked to an increase in glutamate signalling is a peculiar trait of the ...
Alzheimer’s disease (AD) is characterized by the accumulation of the tau protein in neurons, neurode...
Mounting evidence suggests that synaptic plasticity provides the cellular biological basis of learni...
Individuals at risk of developing Alzheimer’s disease (AD) often exhibit hippocampal hyperexcitabili...
Individuals at risk for developing Alzheimer\u27s disease (AD) often exhibit neuronal network hypere...
Tau pathology is a hallmark of Alzheimer’s disease (AD) and other tauopathies, but how pathological ...
Individuals at risk for developing Alzheimer\u27s disease (AD) often demonstrate hyperactivity in ar...
In the years preceding a diagnosis of Alzheimer’s disease (AD), hyperexcitability of the hippocampus...
Those at risk for Alzheimer’s disease (AD) often exhibit hippocampal hyperexcitability in the years ...
<div><p>Accumulation of hyperphosphorylated tau in the entorhinal cortex (EC) is one of the earliest...
The greatest risk factor for developing Alzheimer’s disease (AD) is increasing age. Understanding th...
Using synaptosomes purified from the brains of two transgenic mouse models overexpressing mutated hu...
Tau pathology is a hallmark of Alzheimer’s disease (AD) and other tauopathies, but how pathological ...
Hyperphosphorylation and deposition of tau in the brain characterizes frontotemporal dementia and Al...
Alzheimer's disease (AD) is histopathologically characterized by Aβ plaques and the accumulation of ...
Neuronal hyperexcitability linked to an increase in glutamate signalling is a peculiar trait of the ...
Alzheimer’s disease (AD) is characterized by the accumulation of the tau protein in neurons, neurode...
Mounting evidence suggests that synaptic plasticity provides the cellular biological basis of learni...
Individuals at risk of developing Alzheimer’s disease (AD) often exhibit hippocampal hyperexcitabili...
Individuals at risk for developing Alzheimer\u27s disease (AD) often exhibit neuronal network hypere...
Tau pathology is a hallmark of Alzheimer’s disease (AD) and other tauopathies, but how pathological ...
Individuals at risk for developing Alzheimer\u27s disease (AD) often demonstrate hyperactivity in ar...
In the years preceding a diagnosis of Alzheimer’s disease (AD), hyperexcitability of the hippocampus...
Those at risk for Alzheimer’s disease (AD) often exhibit hippocampal hyperexcitability in the years ...
<div><p>Accumulation of hyperphosphorylated tau in the entorhinal cortex (EC) is one of the earliest...
The greatest risk factor for developing Alzheimer’s disease (AD) is increasing age. Understanding th...
Using synaptosomes purified from the brains of two transgenic mouse models overexpressing mutated hu...
Tau pathology is a hallmark of Alzheimer’s disease (AD) and other tauopathies, but how pathological ...
Hyperphosphorylation and deposition of tau in the brain characterizes frontotemporal dementia and Al...
Alzheimer's disease (AD) is histopathologically characterized by Aβ plaques and the accumulation of ...
Neuronal hyperexcitability linked to an increase in glutamate signalling is a peculiar trait of the ...
Alzheimer’s disease (AD) is characterized by the accumulation of the tau protein in neurons, neurode...
Mounting evidence suggests that synaptic plasticity provides the cellular biological basis of learni...