1.Primary age-related tauopathy in a Chinese cohort.
Xin WANG ; Lei ZHANG ; Hui LU ; Juan-Li WU ; Hua-Zheng LIANG ; Chong LIU ; Qing-Qing TAO ; Zhi-Ying WU ; Ke-Qing ZHU
Journal of Zhejiang University. Science. B 2020;21(3):256-262
Primary age-related tauopathy (PART) is characterized by the presence of tau neurofibrillary tangles (NFTs) which are typically observed in Alzheimer's disease (AD) brains, with few or without β-amyloid (Aβ) plaques. The diagnosis of PART can be categorized into "definite" or "possible" depending on the amount of Aβ plaques. Definite PART is diagnosed when NFTs are observed and the Braak stage is ≤IV, with Thal Aβ Phase 0 (Crary et al., 2014). According to the neuropathological diagnostic criteria, we reported that PART was frequently observed in the Chinese population according to our findings from specimens in our brain bank, with 47% of brain bank subjects meeting the criteria for PART. There is no consensus on the nature of PART. It remains to be elucidated whether PART is an early form of AD or a novel tauopathy (Duyckaerts et al., 2015; Jellinger et al., 2015).
Aged
;
Aged, 80 and over
;
Aging/pathology*
;
Alzheimer Disease/pathology*
;
Brain/pathology*
;
Cohort Studies
;
Female
;
Humans
;
Male
;
Middle Aged
;
Neurofibrillary Tangles/pathology*
;
Tauopathies/pathology*
2.Phosphorylated TDP-43 Staging of Primary Age-Related Tauopathy.
Xiaoling ZHANG ; Bing SUN ; Xing WANG ; Hui LU ; Fangjie SHAO ; Annemieke J M ROZEMULLER ; Huazheng LIANG ; Chong LIU ; Jiadong CHEN ; Manli HUANG ; Keqing ZHU
Neuroscience Bulletin 2019;35(2):183-192
Primary age-related tauopathy (PART) is characterized by tau neurofibrillary tangles (NFTs) in the absence of amyloid plaque pathology. In the present study, we analyzed the distribution patterns of phosphorylated 43-kDa TAR DNA-binding protein (pTDP-43) in the brains of patients with PART. Immunohistochemistry and immunofluorescence double-labeling in multiple brain regions was performed on brain tissues from PART, Alzheimer's disease (AD), and aging control cases. We examined the regional distribution patterns of pTDP-43 intraneuronal inclusions in PART with Braak NFT stages > 0 and ≤ IV, and a Thal phase of 0 (no beta-amyloid present). We found four stages which indicated potentially sequential dissemination of pTDP-43 in PART. Stage I was characterized by the presence of pTDP-43 lesions in the amygdala, stage II by such lesions in the hippocampus, stage III by spread of pTDP-43 to the neocortex, and stage IV by pTDP-43 lesions in the putamen, pallidum, and insular cortex. In general, the distribution pattern of pTDP-43 pathology in PART cases was similar to the early TDP-43 stages reported in AD, but tended to be more restricted to the limbic system. However, there were some differences in the distribution patterns of pTDP-43 between PART and AD, especially in the dentate gyrus of the hippocampus. Positive correlations were found in PART between the Braak NFT stage and the pTDP-43 stage and density.
Aged
;
Aged, 80 and over
;
Aging
;
metabolism
;
pathology
;
Brain
;
metabolism
;
pathology
;
DNA-Binding Proteins
;
metabolism
;
Disease Progression
;
Female
;
Humans
;
Immunohistochemistry
;
Inclusion Bodies
;
pathology
;
Male
;
Middle Aged
;
Neurofibrillary Tangles
;
metabolism
;
pathology
;
Neurons
;
metabolism
;
pathology
;
Severity of Illness Index
;
Tauopathies
;
metabolism
;
pathology
3.Gait Ignition Failure in JNPL3 Human Tau-mutant Mice
HoChung JANG ; Jung Hwa RYU ; Kyung Min SHIN ; Na Young SEO ; Gyu Hyun KIM ; Yang Hoon HUH ; Ae Nim PAE ; Kea Joo LEE
Experimental Neurobiology 2019;28(3):404-413
Cognitive impairments and motor dysfunction are commonly observed behavioral phenotypes in genetic animal models of neurodegenerative diseases. JNPL3 transgenic mice expressing human P301L-mutant tau display motor disturbances with age- and gene dose-dependent development of neurofibrillary tangles, suggesting that tau pathology causes neurodegeneration associated with motor behavioral abnormalities. Although gait ignition failure (GIF), a syndrome marked by difficulty in initiating locomotion, has been described in patients with certain forms of tauopathies, transgenic mouse models mirroring human GIF syndrome have yet to be reported. Using the open field and balance beam tests, here we discovered that JNPL3 homozygous mice exhibit a marked delay of movement initiation. The elevated plus maze excluded the possibility that hesitation to start in JNPL3 mice was caused by enhanced levels of anxiety. Considering the normal gait ignition in rTg4510 mice expressing the same mutant tau in the forebrain, GIF in JNPL3 mice seems to arise from abnormal tau deposition in the hindbrain areas involved in locomotor initiation. Accordingly, immunohistochemistry revealed highly phosphorylated paired helical filament tau in JNPL3 brainstem areas associated with gait initiation. Together, these findings demonstrate a novel behavioral phenotype of impaired gait initiation in JNPL3 mice and underscore the value of this mouse line as a tool to study the neural mechanisms and potential treatments for human GIF syndrome.
Animals
;
Anxiety
;
Brain Stem
;
Cognition Disorders
;
Gait
;
Humans
;
Immunohistochemistry
;
Locomotion
;
Mice
;
Mice, Transgenic
;
Models, Animal
;
Neurodegenerative Diseases
;
Neurofibrillary Tangles
;
Pathology
;
Phenotype
;
Prosencephalon
;
Rhombencephalon
;
Tauopathies
4.Primary Age-Related Tauopathy: An Elderly Brain Pathology Frequently Encountered during Autopsy
Daru KIM ; Hyung Seok KIM ; Seong Min CHOI ; Byeong C KIM ; Min Cheol LEE ; Kyung Hwa LEE ; Jae Hyuk LEE
Journal of Pathology and Translational Medicine 2019;53(3):159-163
Due to the progressive aging of Korean society and the introduction of brain banks to the Korean medical system, the possibility that pathologists will have access to healthy elderly brains has increased. The histopathological analysis of an elderly brain from a subject with relatively well-preserved cognition is quite different from that of a brain from a demented subject. Additionally, the histology of elderly brains differs from that of young brains. This brief review discusses primary age-related tauopathy; this term was coined to describe elderly brains with Alzheimer’s diseasetype neurofibrillary tangles mainly confined to medial temporal structures, and no β-amyloid pathology.
Aged
;
Aging
;
Amyloid beta-Peptides
;
Autopsy
;
Brain
;
Cognition
;
Dementia
;
Humans
;
Neurofibrillary Tangles
;
Numismatics
;
Pathology
;
Tauopathies
5.Targeted Downregulation of kdm4a Ameliorates Tau-engendered Defects in Drosophila melanogaster
Sung Yeon PARK ; Jieun SEO ; Yang Sook CHUN
Journal of Korean Medical Science 2019;34(33):e225-
BACKGROUND: Tauopathies, a class of neurodegenerative diseases that includes Alzheimer's disease (AD), are characterized by the deposition of neurofibrillary tangles composed of hyperphosphorylated tau protein in the human brain. As abnormal alterations in histone acetylation and methylation show a cause and effect relationship with AD, we investigated the role of several Jumonji domain-containing histone demethylase (JHDM) genes, which have yet to be studied in AD pathology. METHODS: To examine alterations of several JHDM genes in AD pathology, we performed bioinformatics analyses of JHDM gene expression profiles in brain tissue samples from deceased AD patients. Furthermore, to investigate the possible relationship between alterations in JHDM gene expression profiles and AD pathology in vivo, we examined whether tissue-specific downregulation of JHDM Drosophila homologs (kdm) can affect tauR406W-induced neurotoxicity using transgenic flies containing the UAS-Gal4 binary system. RESULTS: The expression levels of JHDM1A, JHDM2A/2B, and JHDM3A/3B were significantly higher in postmortem brain tissue from patients with AD than from non-demented controls, whereas JHDM1B mRNA levels were downregulated in the brains of patients with AD. Using transgenic flies, we revealed that knockdown of kdm2 (homolog to human JHDM1), kdm3 (homolog to human JHDM2), kdm4a (homolog to human JHDM3A), or kdm4b (homolog to human JHDM3B) genes in the eye ameliorated the tauR406W-engendered defects, resulting in less severe phenotypes. However, kdm4a knockdown in the central nervous system uniquely ameliorated tauR406W-induced locomotion defects by restoring heterochromatin. CONCLUSION: Our results suggest that downregulation of kdm4a expression may be a potential therapeutic target in AD.
Acetylation
;
Alzheimer Disease
;
Brain
;
Central Nervous System
;
Computational Biology
;
Diptera
;
Down-Regulation
;
Drosophila melanogaster
;
Drosophila
;
Heterochromatin
;
Histones
;
Humans
;
Locomotion
;
Methylation
;
Neurodegenerative Diseases
;
Neurofibrillary Tangles
;
Pathology
;
Phenotype
;
RNA, Messenger
;
tau Proteins
;
Tauopathies
;
Transcriptome
6.Sex Differences in Neuropathology and Cognitive Behavior in APP/PS1/tau Triple-Transgenic Mouse Model of Alzheimer's Disease.
Jun-Ting YANG ; Zhao-Jun WANG ; Hong-Yan CAI ; Li YUAN ; Meng-Ming HU ; Mei-Na WU ; Jin-Shun QI
Neuroscience Bulletin 2018;34(5):736-746
Alzheimer's disease (AD) is the most common form of dementia among the elderly, characterized by amyloid plaques, neurofibrillary tangles, and neuroinflammation in the brain, as well as impaired cognitive behaviors. A sex difference in the prevalence of AD has been noted, while sex differences in the cerebral pathology and relevant molecular mechanisms are not well clarified. In the present study, we systematically investigated the sex differences in pathological characteristics and cognitive behavior in 12-month-old male and female APP/PS1/tau triple-transgenic AD mice (3×Tg-AD mice) and examined the molecular mechanisms. We found that female 3×Tg-AD mice displayed more prominent amyloid plaques, neurofibrillary tangles, neuroinflammation, and spatial cognitive deficits than male 3×Tg-AD mice. Furthermore, the expression levels of hippocampal protein kinase A-cAMP response element-binding protein (PKA-CREB) and p38-mitogen-activated protein kinases (MAPK) also showed sex difference in the AD mice, with a significant increase in the levels of p-PKA/p-CREB and a decrease in the p-p38 in female, but not male, 3×Tg-AD mice. We suggest that an estrogen deficiency-induced PKA-CREB-MAPK signaling disorder in 12-month-old female 3×Tg-AD mice might be involved in the serious pathological and cognitive damage in these mice. Therefore, sex differences should be taken into account in investigating AD biomarkers and related target molecules, and estrogen supplementation or PKA-CREB-MAPK stabilization could be beneficial in relieving the pathological damage in AD and improving the cognitive behavior of reproductively-senescent females.
Alzheimer Disease
;
metabolism
;
pathology
;
psychology
;
Amyloid beta-Protein Precursor
;
genetics
;
metabolism
;
Animals
;
Cyclic AMP Response Element-Binding Protein
;
metabolism
;
Cyclic AMP-Dependent Protein Kinases
;
metabolism
;
Disease Models, Animal
;
Female
;
Hippocampus
;
metabolism
;
pathology
;
Humans
;
Inflammation
;
metabolism
;
pathology
;
psychology
;
Male
;
Maze Learning
;
physiology
;
Mice, Inbred C57BL
;
Mice, Transgenic
;
Neurofibrillary Tangles
;
metabolism
;
pathology
;
Plaque, Amyloid
;
metabolism
;
pathology
;
psychology
;
Presenilin-1
;
genetics
;
metabolism
;
Sex Characteristics
;
Spatial Memory
;
physiology
;
p38 Mitogen-Activated Protein Kinases
;
metabolism
;
tau Proteins
;
genetics
;
metabolism
7.Tau Positron Emission Tomography Imaging in Degenerative Parkinsonisms
Chul Hyoung LYOO ; Hanna CHO ; Jae Yong CHOI ; Young Hoon RYU ; Myung Sik LEE
Journal of Movement Disorders 2018;11(1):1-12
In recent years, several radiotracers that selectively bind to pathological tau proteins have been developed. Evidence is emerging that binding patterns of in vivo tau positron emission tomography (PET) studies in Alzheimer's disease (AD) patients closely resemble the distribution patterns of known neurofibrillary tangle pathology, with the extent of tracer binding reflecting the clinical and pathological progression of AD. In Lewy body diseases (LBD), tau PET imaging has clearly revealed cortical tau burden with a distribution pattern distinct from AD and increased cortical binding within the LBD spectrum. In progressive supranuclear palsy, the globus pallidus and midbrain have shown increased binding most prominently. Tau PET patterns in patients with corticobasal syndrome are characterized by asymmetrical uptake in the motor cortex and underlying white matter, as well as in the basal ganglia. Even in the patients with multiple system atrophy, which is basically a synucleinopathy, ¹⁸F-flortaucipir, a widely used tau PET tracer, also binds to the atrophic posterior putamen, possibly due to off-target binding. These distinct patterns of tau-selective radiotracer binding in the various degenerative parkinsonisms suggest its utility as a potential imaging biomarker for the differential diagnosis of parkinsonisms.
Alzheimer Disease
;
Basal Ganglia
;
Diagnosis, Differential
;
Electrons
;
Globus Pallidus
;
Humans
;
Lewy Bodies
;
Mesencephalon
;
Motor Cortex
;
Multiple System Atrophy
;
Neurofibrillary Tangles
;
Parkinsonian Disorders
;
Pathology
;
Positron-Emission Tomography
;
Putamen
;
Supranuclear Palsy, Progressive
;
tau Proteins
;
White Matter
8.An Autopsy Proven Child Onset Chronic Traumatic Encephalopathy.
Kyuho LEE ; Seong Ik KIM ; Yujin LEE ; Jae Kyung WON ; Sung Hye PARK
Experimental Neurobiology 2017;26(3):172-177
Here we present an autopsy case of chronic traumatic encephalopathy (CTE) in a 36-year-old man. He had a history of febrile seizures at the age of four and was severely demented at age 10 when he was admitted to a mental hospital. He had suffered repetitive self-harm, such as frequent banging of the head on the wall in his hospital record, but he had no clear history between the ages of four and ten. Autopsy revealed global cerebral atrophy, including the basal ganglia, thalamus, hippocampus, amygdala, mammilary bodies and lateral geniculate bodies. This case showed typical pathological features of CTE. Phosphorylated tau (p-tau)-positive neurofibrillary tangles (NFTs) and neuropil threads (NT) we are widely distributed in the brain, especially in the depth of the cerebral sulci. NFT and NT were also found in the basal ganglia, thalamus, amygdala and brainstem. Scanty β-amyloid deposits were found in the motor and sensory cortices, but α-synuclein was completely negative in the brain. This example showed that CTE can occur in young ages and that even children can experience CTE dementia.
Adult
;
Amygdala
;
Atrophy
;
Autopsy*
;
Basal Ganglia
;
Brain
;
Brain Injuries
;
Brain Injury, Chronic*
;
Brain Stem
;
Child*
;
Dementia
;
Geniculate Bodies
;
Head
;
Hippocampus
;
Hospital Records
;
Hospitals, Psychiatric
;
Humans
;
Neurofibrillary Tangles
;
Neuropil Threads
;
Pathology
;
Seizures, Febrile
;
Thalamus
9.Mechanisms of Alzheimer's Disease Pathogenesis and Prevention: The Brain, Neural Pathology, N-methyl-D-aspartate Receptors, Tau Protein and Other Risk Factors.
Clinical Psychopharmacology and Neuroscience 2017;15(1):1-8
The characteristic features of Alzheimer's disease (AD) are the appearance of extracellular amyloid-beta (Aβ) plaques and neurofibrillary tangles in the intracellular environment, neuronal death and the loss of synapses, all of which contribute to cognitive decline in a progressive manner. A number of hypotheses have been advanced to explain AD. Abnormal tau phosphorylation may contribute to the formation of abnormal neurofibrillary structures. Many different structures are susceptible to AD, including the reticular formation, the nuclei in the brain stem (e.g., raphe nucleus), thalamus, hypothalamus, locus ceruleus, amygdala, substantia nigra, striatum, and claustrum. Excitotoxicity results from continuous, low-level activation of N-methyl-D-aspartate (NMDA) receptors. Premature synaptotoxicity, changes in neurotransmitter expression, neurophils loss, accumulation of amyloid β-protein deposits (amyloid/senile plaques), and neuronal loss and brain atrophy are all associated with stages of AD progression. Several recent studies have examined the relationship between Aβ and NMDA receptors. Aβ-induced spine loss is associated with a decrease in glutamate receptors and is dependent upon the calcium-dependent phosphatase calcineurin, which has also been linked to long-term depression.
Alzheimer Disease*
;
Amygdala
;
Amyloid
;
Animals, Genetically Modified
;
Atrophy
;
Basal Ganglia
;
Brain Stem
;
Brain*
;
Calcineurin
;
Depression
;
Hypothalamus
;
Locus Coeruleus
;
N-Methylaspartate*
;
Neurofibrillary Tangles
;
Neurons
;
Neurotransmitter Agents
;
Pathology*
;
Phosphorylation
;
Receptors, Glutamate
;
Receptors, N-Methyl-D-Aspartate*
;
Reticular Formation
;
Risk Factors*
;
Spine
;
Substantia Nigra
;
Synapses
;
tau Proteins*
;
Thalamus
10.Stem Cell Therapy: A Prospective Treatment for Alzheimer's Disease.
Ji Han LEE ; Il Hoan OH ; Hyun Kook LIM
Psychiatry Investigation 2016;13(6):583-589
Alzheimer's disease (AD) without cure remains as a serious health issue in the modern society. The major neuropathological alterations in AD are characterized by chronic neuroinflammation and neuronal loss due to neurofibrillary tangles (NFTs) of abnormally hyperphosphorylated tau, plaques of β-amyloid (Aβ) and various metabolic dysfunctions. Due to the multifaceted nature of AD pathology and our limited understanding on its etiology, AD is difficult to be treated with currently available pharmaceuticals. This unmet need, however, could be met with stem cell technology that can be engineered to replace neuronal loss in AD patients. Although stem cell therapy for AD is only in its development stages, it has vast potential uses ranging from replacement therapy to disease modelling and drug development. Current progress with stem cells in animal model studies offers promising results for the new prospective treatment for AD. This review will discuss the characteristics of AD, current progress in stem cell therapy and remaining challenges and promises in its development.
Alzheimer Disease*
;
Humans
;
Models, Animal
;
Neurofibrillary Tangles
;
Neurogenesis
;
Neurons
;
Pathology
;
Prospective Studies*
;
Stem Cells*
;
Transplantation

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