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A case of primary progressive aphasia with abnormally ubiquitinated neurites in the cerebral cortex.

We report the histopathological and immunohistochemical findings in a patient with primary progressive aphasia and abnormally ubiquitinated neurites in the cerebral cortex. Neuropathological examination showed severe neuronal loss and astrocytosis with a spongy change in the frontal cortex and neostriatum. Immunohistochemistry for ubiquitin antibody showed many immunoreactive dystrophic neurites in the superficial layer of the affected cortices and putamen. Those neurites were neither argentophilic nor stained with other antibodies against neurofilament, tau, or microtubule-associated protein-2. There were no neuropathological changes characteristic of Alzheimer's disease, Pick's disease, or Creutzfeldt-Jakob disease. Immunoelectron microscopy using anti-ubiquitin antibody showed inclusions in the dendrites, consisting mainly of granular and filamentous material. These pathological features, unusual in primary progressive aphasia, indicate the neuropathological heterogeneity of this disease condition.

Aphasia, Primary Progressive↗

Cognition and anatomy in three variants of primary progressive aphasia.

We performed a comprehensive cognitive, neuroimaging, and genetic study of 31 patients with primary progressive aphasia (PPA), a decline in language functions that remains isolated for at least 2 years. Detailed speech and language evaluation was used to identify three different clinical variants: nonfluent progressive aphasia (NFPA; n = 11), semantic dementia (SD; n = 10), and a third variant termed logopenic progressive aphasia (LPA; n = 10). Voxel-based morphometry (VBM) on MRIs showed that, when all 31 PPA patients were analyzed together, the left perisylvian region and the anterior temporal lobes were atrophied. However, when each clinical variant was considered separately, distinctive patterns emerged: (1) NFPA, characterized by apraxia of speech and deficits in processing complex syntax, was associated with left inferior frontal and insular atrophy; (2) SD, characterized by fluent speech and semantic memory deficits, was associated with anterior temporal damage; and (3) LPA, characterized by slow speech and impaired syntactic comprehension and naming, showed atrophy in the left posterior temporal cortex and inferior parietal lobule. Apolipoprotein E epsilon4 haplotype frequency was 20% in NFPA, 0% in SD, and 67% in LPA. Cognitive, genetic, and anatomical features indicate that different PPA clinical variants may correspond to different underlying pathological processes.

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Preservation of reasoning in primary progressive aphasia: further differentiation from Alzheimer's disease and the behavioral presentation of frontotemporal dementia.

Primary Progressive Aphasia (PPA) is a clinical dementia syndrome characterized by the gradual dissolution of language without impairment of other cognitive domains for at least the first 2 years of illness (M.-M. Mesulam, 1982, 2001). It is difficult to demonstrate the integrity of nonlanguage domains in PPA because most neuropsychological tests of memory, reasoning, and attention require language competence for their performance. In the present study, reasoning and cognitive flexibility were tested nonverbally in patients with PPA using a modified ten-item version of the Visual Verbal Test (Feldman & Drasgow, 1959). This test measures the ability to detect similarities among objects and to sort a single set of objects according to two different principles. The performance of PPA patients (n = 20) was compared with that of patients with dementia of the Alzheimer type (AD) (n = 20), patients with the comportmental/executive dysfunction variant of frontotemporal dementia (FTD) (n = 16), and cognitively intact controls (n = 20). Patients with PPA and controls performed similarly, detecting commonalities among objects and shifting from one sorting principle to another. In contrast, both AD and FTD subjects were significantly impaired on both measures. These results provide evidence of preserved reasoning in PPA, further differentiating this syndrome from other behaviorally focal dementia syndromes.

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Pathologic findings in a case of primary progressive aphasia.

We report the histopathologic and immunohistochemical findings of a patient who suffered from primary progressive aphasia for 13 years. During the course of his illness, he was diagnosed as having Pick's disease, based on gradually progressive mild personality changes and MRI findings of severe bilateral temporal lobe atrophy. There was severe neuronal loss in the temporal gyri, intense gliosis throughout the cortex, and mild gliosis of the temporal white matter, without any changes typical for Alzheimer's disease or Pick's disease. Using the antibody Alz-50, we found many Alz-50-positive neurons that exhibited a granular or diffuse cytoplasmic stain without fibrous structures in the temporal and parietal cortex, but no ubiquitin or beta (A4) protein-reactive cells, nor spongiform changes. Staining for Alz-50 and ubiquitin did not reveal the presence of Pick bodies or Lewy bodies. We consider this case to be an example of nonspecific cortical degeneration. Our findings stress the need for histopathologic verification of the primary progressive aphasia syndrome.

Amyloid beta-Peptides↗

An autopsy case of Alzheimer's disease presenting with primary progressive aphasia: a clinicopathological and immunohistochemical study.

This report describes an autopsied Alzheimer's disease (AD) patient with primary progressive aphasia (PPA) as an early symptom. The patient developed a progressive speech disturbance at the age of 70 years, and difficulty in comprehension became apparent 2 years later. Magnetic resonance imaging scan disclosed asymmetrical brain atrophy, predominantly on the left temporal lobe. At the age of 74 years, the patient's dementia rapidly progressed with parkinsonism and he died after a disease duration of 6 years. At autopsy, the brain showed a marked temporo-frontal lobe atrophy, predominantly on the left side. There was severe neuronal loss with gliosis and tissue rarefaction in the atrophied cerebral cortex and amygdala. Many neurofibrillary tangles with neuropil threads were found in the cerebral cortex. Numerous amyloid deposits were distributed throughout the cerebral cortex, accompanied by amyloid angiopathies. This patient was clinically diagnosed with temporal lobe-dominant Pick's disease, although the possibility of corticobasal degeneration was made. The neuropathological diagnosis was AD with asymmetrical brain atrophy and widespread amyloid angiopathies.

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Primary progressive aphasia with glial cytoplasmic inclusions.

We report a 80-year-old woman who suffered from primary progressive aphasia for 3 years. Cranial CT and MRI studies showed moderate cerebral atrophy, more marked in the left frontal and temporal lobes, and SPECT brain scans revealed marked hypometabolism in the left frontal and temporal lobes. Neuropathologic examination of a temporal lobe biopsy demonstrated Gallyas-positive intracytoplasmic inclusions looking like fibrillary tangles and of Gallyas-positive cell processes, probably from glial cells. Glial intracytoplasmic inclusions were immunolabelled with antibodies to ubiquitin and with phosphorylion-dependent antitau antibodies, indicating the presence of hyperphosphorylated tau in the inclusions. There was only mild pathology of cortical neurons consisting in rare perikarya diffusely stained with antitau antibodies. There were no senile plaques, neurofibrillary tangles, 'achromatic' neurons, ballooned cells, Pick or Lewy bodies, nor microvacuoles or spongiform changes of the neuropil. The glial intracytoplasmic inclusions found in this case were similar to those found in multiple system atrophy, and differ from the cortical changes hitherto reported in primary progressive aphasia.

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Deterioration of naming nouns versus verbs in primary progressive aphasia.

Disproportionate impairment of naming nouns versus verbs and the opposite pattern have been reported in cases of focal brain damage or degenerative disease, indicating that processing of nouns and verbs may rely on different brain regions. However, it has not been clear whether it is the spoken word forms or the meanings (or both) of nouns and verbs that depend on separate neural regions. We tested oral and written naming of nouns and verbs, matched in difficulty, in patients with nonfluent primary progressive aphasia (nonfluent PPA; n = 15), fluent primary progressive aphasia (fluent PPA; n = 7), and amyotrophic lateral sclerosis with frontotemporal dementia (ALS-FTD; n = 6). Patients with nonfluent PPA and ALS-FTD, both individually and as groups, were significantly more impaired on verb naming than on noun naming and significantly more impaired on oral naming than written naming. Patients with fluent PPA showed the opposite pattern for both word class and modality, significantly more impaired naming of nouns versus verbs and significantly more impaired written versus oral naming. Results indicate that separate regions of the brain are essential for access to oral and written word forms of verbs and nouns, and that these neural regions can be differentially damaged in separate forms of PPA.

Aged↗

Primary progressive aphasia and Pick complex.

Ten autopsied patients from a prospectively followed, clinically defined, neuropsychologically and radiologically documented cohort with primary progressive aphasia were histologically characterized. All were variants of frontotemporal degeneration (Pick complex): Pick body dementia, n=3, corticobasals degeneration (CBD), n=4, and tau and synuclein negative ubiquitinated inclusions of the motor neuron disease type, n=3. All shared superficial cortical spongiosis, neuronal loss, and gliosis. Although most patients had fluent anomic aphasia at onset, all progressed to a nonfluent or mute state. Comprehension, episodic memory, and activities of daily living were initially preserved. Three cases with Pick body dementia had verbal apraxia and stuttering at onset. Two of the patients with CBD pathology were older than the average primary progressive aphasia (PPA). All patients developed secondary syndromes either of frontotemporal dementia (FTD) and/or extrapyramidal-apraxic manifestations (CBD). By the time autopsy was obtained, the pathology appeared outside the language areas. Progressive aphasias secondary to Alzheimer's disease (AD) were excluded on the basis of early loss of memory and comprehension.Rather than the previously emphasized histological heterogeneity, clinically probable PPA has a predictive value of a group of related pathologies, collectively named frontotemporal degeneration, or Pick complex. This series of autopsied cases provides evidence for the clinical and pathological overlap of PPA with FTD and CBD, and contributes to the diagnostic and neuropsychological definition of PPA.

Aphasia↗

Possible association of the tau H1/H1 genotype with primary progressive aphasia.

The authors screened for tau gene mutations and polymorphisms to determine whether genetic variation at or near the tau locus contributes to the development of primary progressive aphasia (PPA). No mutations were detected in 25 patients with PPA. However, a significant overrepresentation of the tau H1/H1 genotype, also found in progressive supranuclear palsy and corticobasal degeneration, was found in the PPA group. Whether tau haplotypes have a primary causal role or whether they affect the topology of neurodegeneration remains to be determined.

Adult↗

The case of the lawyer's lugubrious language: dysarthria plus primary progressive aphasia or dysarthria plus dementia?

A productive, intelligent, 60-year-old practicing attorney slowly begins to notice that the language that he has commanded throughout his life is beginning to become more difficult to produce, exacting its toll on his mental energy and emotional stability. His search for answers to his diminished "memory for words" leads him through the fetid ranks of traditional medicine and into the search for a differential diagnosis involving clinical neurology, neuropsychology, and speech-language pathology. Consistencies and conflicts in the signs and symptoms between the competing diagnoses raise theoretical and clinical classification issues. A course of treatment for aphasia provides evidence to support the diagnosis of primary progressive aphasia, but the development of concommitant spastic dysarthria and dysphagia challenge current wisdom about the underlying neuropathology of aphasia and support a diagnosis of early dementia. A selective but steady and rapid decline of abilities over the course of 2 years leads to the patient's death and autopsy, from which a neuropathologic analysis was to provide the "final" and "ultimate" diagnosis. But it doesn't!

Aphasia↗

Apolipoprotein E genotypes in primary progressive aphasia.

We obtained apolipoprotein E genotyping in a population of 12 consecutive patients who fulfilled rigorous criteria for the clinical diagnosis of primary progressive aphasia (PPA). The allele frequencies were 4% for E2, 83% for E3, and 13% for E4. This pattern of allele distribution was significantly different from the pattern seen in groups of patients either with the clinical diagnosis of probable Alzheimer's disease (PRAD) or the histopathologic diagnosis of Alzheimer's disease (AD). The E4 allele frequency in the group of patients with PPA was in the range seen in control populations and was much lower than the one reported in populations of patients with PRAD or AD. The E4 allele is therefore not a significant risk factor for developing PPA. These results provide neurobiological support for the syndromic distinction of PPA from PRAD and are in keeping with neuropathologic evidence showing that the vast majority of patients with PPA do not have the histopathology of AD. Although we do not yet have neuropathologic information on our patients, these results indicate that the clinical diagnosis of PPA has biological validity in that it identifies a population that is genetically different from the population of patients with a clinical diagnosis of PRAD.

Adult↗

Clinical and pathological overlap between frontotemporal dementia, primary progressive aphasia and corticobasal degeneration: the Pick complex.

A substantive overlap between the clinical syndromes of frontal lobe dementia (FLD), frontotemporal dementia (FTD), or primary progressive aphasia (PPA), and corticobasal degeneration syndrome (CBDS) has been demonstrated in a population of 55 patients followed for more than 3 years in a cognitive neurology clinic. Patients presenting with the personality behavior disorder (FLD) often develop progressive aphasia (PA) and vice versa. CBDS is often associated with FLD and PA, and the extrapyramidal-apractic syndrome of CBDS often appears in FLD and PPA. The histopathological variations do not predict the clinical phenotype. The term Pick complex is suggested to indicate that these clinical and pathological variations are related and they were first described by Pick as clinical manifestations of fronotemporal atrophy. This term will avoid the confusion of using FLD or FTD or for the whole complex and also for the personality behavioral presentation. The relationship of the various clinical presentations has been strengthened by the discovery of chromosome 17 linkage in families manifesting them.

Aphasia, Primary Progressive↗