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1.
J Neuropathol Exp Neurol ; 77(2): 149-161, 2018 02 01.
Article in English | MEDLINE | ID: mdl-29304218

ABSTRACT

The brainstem nuclei of the reticular formation (RF) are critical for regulating homeostasis, behavior, and cognition. RF degenerates in tauopathies including Alzheimer disease (AD), progressive supranuclear palsy (PSP), and corticobasal degeneration (CBD). Although the burden of phopho-tau inclusion is high across these diseases, suggesting a similar vulnerability pattern, a distinct RF-associated clinical phenotype in these diseases indicates the opposite. To compare patterns of RF selective vulnerability to tauopathies, we analyzed 5 RF nuclei in tissue from 14 AD, 14 CBD, 10 PSP, and 3 control cases. Multidimensional quantitative analysis unraveled discernable differences on how these nuclei are vulnerable to AD, CBD, and PSP. For instance, PSP and CBD accrued more tau inclusions than AD in locus coeruleus, suggesting a lower vulnerability to AD. However, locus coeruleus neuronal loss in AD was so extreme that few neurons remained to develop aggregates. Likewise, tau burden in gigantocellular nucleus was low in AD and high in PSP, but few GABAergic neurons were present in AD. This challenges the hypothesis that gigantocellular nucleus neuronal loss underlies REM behavioral disorders because REM behavioral disorders rarely manifests in AD. This study provides foundation for characterizing the clinical consequences of RF degeneration in tauopathies and guiding customized treatment.


Subject(s)
Brain Stem/pathology , Tauopathies/pathology , tau Proteins/metabolism , Aged , Aged, 80 and over , Autopsy , Female , Humans , Male , Middle Aged , Neurotransmitter Agents/metabolism , Retrospective Studies
2.
Neurobiol Aging ; 61: 1-12, 2018 01.
Article in English | MEDLINE | ID: mdl-29031088

ABSTRACT

Clarifying the mechanisms connecting neurofibrillary tangle (NFT) neurotoxicity to neuronal dysfunction in humans is likely to be pivotal for developing effective treatments for Alzheimer's disease (AD). To model the temporal progression of AD in humans, we used a collection of brains with controls and individuals from each Braak stage to quantitatively investigate the correlation between intraneuronal caspase activation or macroautophagy markers, NFT burden, and neuronal loss, in the dorsal raphe nucleus and locus coeruleus, the earliest vulnerable areas to NFT accumulation. We fit linear regressions with each count as outcomes, with Braak score and age as the predictors. In progressive Braak stages, intraneuronal active caspase-6 positivity increases both alone and overlapping with NFTs. Likewise, the proportion of NFT-bearing neurons showing autophagosomes increases. Overall, caspases may be involved in upstream cascades in AD and are associated with higher NFTs. Macroautophagy changes correlate with increasing NFT burden from early AD stages.


Subject(s)
Alzheimer Disease/etiology , Alzheimer Disease/pathology , Brain/pathology , Cell Death , Neurofibrillary Tangles/pathology , Neurons/pathology , Aged , Aged, 80 and over , Autophagosomes , Autophagy/physiology , Caspase 6/metabolism , Caspase 6/physiology , Disease Progression , Female , Humans , Male , Middle Aged
3.
Alzheimers Dement ; 13(3): 236-246, 2017 Mar.
Article in English | MEDLINE | ID: mdl-27513978

ABSTRACT

INTRODUCTION: Alzheimer's disease (AD) progression follows a specific spreading pattern, emphasizing the need to characterize those brain areas that degenerate first. The brainstem's locus coeruleus (LC) is the first area to develop neurofibrillary changes (neurofibrillary tangles [NFTs]). METHODS: The methods include unbiased stereological analyses in human brainstems to estimate LC volume and neuronal population in controls and individuals across all AD stages. RESULTS: As the Braak stage increases by 1 unit, the LC volume decreases by 8.4%. Neuronal loss started only midway through AD progression. Age-related changes spare the LC. DISCUSSION: The long gap between NFT accumulation and neuronal loss suggests that a second trigger may be necessary to induce neuronal death in AD. Imaging studies should determine whether LC volumetry can replicate the stage-wise atrophy observed here and how these changes are specific to AD. LC volumetry may develop into a screening biomarker for selecting high-yield candidates to undergo expensive and less accessible positron emission tomography scans and to monitor AD progression from presymptomatic stages.


Subject(s)
Alzheimer Disease/pathology , Biomarkers/metabolism , Locus Coeruleus/pathology , Neurons/pathology , Adult , Aged , Aged, 80 and over , Autopsy , Disease Progression , Female , Humans , Male , Middle Aged , Stereotaxic Techniques
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