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In Vitro Aggregation Assays Using Hyperphosphorylated Tau Protein
Published on: January 2, 2015
Pathological tau deposition in Motor Neurone Disease and frontotemporal lobar degeneration associated with TDP-43
Roya Behrouzi1, Xiawei Liu1,2, Dongyue Wu1,2
1Clinical and Cognitive Sciences Research Group, Institute of Brain, Behaviour and Mental Health, Faculty of Medical and Human Sciences, University of Manchester, Salford Royal Hospital, Salford, M6 8HD, UK.
Abstract:
It has been suggested that patients with motor neurone disease (MND) and those with MND combined with behavioural variant frontotemporal dementia (bvFTD) (ie FTD + MND) or with FTD alone might exist on a continuum based on commonalities of neuropathology and/or genetic risk. Moreover, it has been reported that both a neuronal and a glial cell tauopathy can accompany the TDP-43 proteinopathy in patients with motor neurone disease (MND) with cognitive changes, and that the tauopathy may be fundamental to disease pathogenesis and clinical phenotype. In the present study, we sought to substantiate these latter findings, and test this concept of a pathological continuum, in a consecutive series of 41 patients with MND, 16 with FTD + MND and 23 with FTD without MND. Paraffin sections of frontal, entorhinal, temporal and occipital cortex and hippocampus were immunostained for tau pathology using anti-tau antibodies, AT8, pThr(175) and pThr(217), and for amyloid β protein (Aβ) using 4G8 antibody. Twenty four (59 %) patients with MND, 7 (44 %) patients with FTD + MND and 10 (43 %) patients with FTD showed 'significant' tau pathology (ie more than just an isolated neurofibrillary tangle or a few neuropil threads in one or more brain regions examined). In most instances, this bore the histological characteristics of an Alzheimer's disease process involving entorhinal cortex, hippocampus, temporal cortex, frontal cortex and occipital cortex in decreasing frequency, accompanied by a deposition of Aβ up to Thal phase 3, though 2 patients with MND, and 1 with FTD did show tau pathology beyond Braak stage III. Four other patients with MND showed novel neuronal tau pathology, within the frontal cortex alone, specifically detected by pThr(175) antibody, which was characterised by a fine granular or more clumped aggregation of tau without neurofibrillary tangles or neuropil threads. However, none of these 4 patients had clinically evident cognitive disorder, and this type of tau pathology was not seen in any of the FTD + MND or FTD patients. Finally, two patients, one with MND and one with FTD, showed a tau pathology consistent with Argyrophilic Grain Disease (AGD). Western blotting and use of 3- and 4-repeat tau antibodies confirmed the histological interpretation of Alzheimer's disease type pathology in all instances except for those patients with accompanying AGD where a banding pattern on western blot, and immunohistochemistry, confirmed 4-repeat tauopathy. In all 3 patient groups, amyloid pathology was more likely to be present in patients dying after 65 years of age, and in the presence of APOE ε4 allele. We conclude that tau pathological changes are equally common amongst patients with MND, FTD + MND and FTD though, in most instances, these are limited in extent. In patients with MND, when cognitive impairment is present this is most likely due to an accompanying/evolving (coincidental) Alzheimer's disease process or, as in a single case, Dementia with Lewy bodies, within the cerebral cortex rather than as a result of TDP-43 proteinopathy. Conversely, in FTD and FTD + MND dementia is more likely to be associated with TDP-43 proteinopathy than tau. Hence, present study shows no progression in severity of (tau) pathology from MND through FTD + MND to FTD, and does not support the concept of these conditions forming a continuum of clinical or pathological change.
Insights
This study found tau pathology is common in motor neurone disease (MND), frontotemporal dementia (FTD)+MND, and FTD, but does not support a pathological continuum between these conditions.
Area of Science:
- Neuroscience
- Neuropathology
- Genetics
Background:
- Motor neurone disease (MND) and frontotemporal dementia (FTD) may share neuropathological and genetic links, potentially existing on a disease continuum.
- Tauopathy, a neuronal and glial cell tau pathology, can accompany TDP-43 proteinopathy in MND with cognitive changes, suggesting a role in disease pathogenesis.
Purpose of the Study:
- To investigate the presence and characteristics of tau pathology in patients with MND, FTD+MND, and FTD.
- To test the hypothesis of a pathological continuum between these neurodegenerative conditions.
Main Methods:
- Examined brain tissue from 41 MND, 16 FTD+MND, and 23 FTD patients using immunohistochemistry for tau and amyloid-beta (Aβ) pathology.
- Utilized antibodies AT8, pThr(175), pThr(217) for tau, and 4G8 for Aβ.
- Confirmed tau pathology subtypes using Western blotting and specific tau repeat antibodies.
Main Results:
- Significant tau pathology was observed in 59% of MND, 44% of FTD+MND, and 43% of FTD patients.
- Tau pathology often resembled Alzheimer's disease, with Aβ deposition, particularly in older patients and those with the APOE ε4 allele.
- Novel tau pathology in MND patients and tau pathology consistent with Argyrophilic Grain Disease (AGD) were also identified.
Conclusions:
- Tau pathology is common across MND, FTD+MND, and FTD, but typically limited in extent.
- Cognitive impairment in MND is likely due to co-occurring Alzheimer's disease or Dementia with Lewy bodies, not TDP-43 proteinopathy.
- Dementia in FTD and FTD+MND is more associated with TDP-43 proteinopathy than tau, refuting a pathological continuum.
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