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C Duyckaerts

Publications and source records attributed to C Duyckaerts.

At least 55 records · Page 3Linked to original sources

[Fronto-temporal degenerative dementia. A modern neuropathologic approach].

The classification of degenerative dementias with fronto-temporal atrophy has been debated since the description of Pick's disease. The study of a clinico-pathological series of 10 cases using immunohistochemistry lead to the following conclusions: reserving the name of Pick's disease to those cases with argyrophilic inclusions, the most recognisable and characteristic marker at neuropathological examination, allows an easy and reliable diagnosis; keeping on with the splitting of these disorders into various clinico-pathologic entities seems today more useful than grouping them into a single syndrome until new data, based for example on genetic analysis, show that different phenotypes correspond to the same disease.

Adult↗

[Alzheimer's disease: lesions and their progression].

Alzheimer disease appears to be a stereotyped mode of reaction of the central nervous system to various types of aggression such as different mutations involving various proteins, trisomy 21 or repeated head trauma as in dementia pugilistica. Rather than a disease, it appears to be a clinicopathological syndrome due to various causes. Lesions may be considered under 3 headings: neurofibrillary pathology, A beta peptide deposits and loss (neuronal and synaptic). Neurofibrillary pathology includes the neurofibrillary tangle, the crown of the senile plaque and the neuropil threads. All those lesions are characterized by the same ultrastructure--i.e. the accumulation of paired helical filaments--and the same immunohistochemistry: they are labelled by antibodies directed against the tau proteins. The amyloid deposits, present in the core of the senile plaque and in the vascular walls, are made of a 40 to 42 amino-acids long peptide, named A beta, derived from the amyloid precursor protein (APP). Antibodies directed against the A beta peptide also label diffuse deposits that are devoid of the tinctorial affinities and of the biochemical properties of amyloid substances. Those diffuse deposits are insufficient to cause dementia since they may be observed in high density in aged people without intellectual deterioration. Neuronal loss occurs after neurofibrillary pathology. The role of the synaptic pathology remains discussed. Besides tau proteins, A beta peptide and APP, several other proteins may play an important role: apolipoprotein E which could act as a chaperone protein, inducing or facilitating the formation of amyloid, presenilins 1 and 2, mutated in some cases of familial Alzheimer disease, alpha-synuclein which is present in the Lewy bodies found in Parkinson disease and in dementia with Lewy bodies. The A beta deposits are diffusely distributed in the cerebral cortex; the neurofibrillary changes have a hierarchical distribution. The progression of the neurofibrillary pathology in the various cortical areas follow a stereotyped sequence that may help to grade the severity of the disease. Progression may take decades. The relations between aging and Alzheimer disease are still poorly understood. Frequency of Alzheimer type lesions in old people could suggest that they are the inevitable burden of age, but this has been discussed.

Aged↗

Transport of arginine and ornithine into isolated mitochondria of Saccharomyces cerevisiae.

In this work we have characterised the transport of L-arginine and L-ornithine into mitochondria isolated from a wild-type Saccharomyces cerevisiae strain and an isogenic arg11 knock-out mutant. The Arg11 protein (Arg11p) is a mitochondrial carrier required for arginine biosynthesis [Crabeel, M., Soetens, O., De Rijcke, M., Pratiwi, R. & Pankiewicz, R. (1996) J. Biol. Chem. 271, 25011-25019]. Reconstitution experiments have confirmed that it is an L-ornithine carrier also transporting L-arginine and L-lysine by order of decreasing affinity, but not L-histidine [Palmieri, L., De Marco, V., Iacobazzi, V., Palmieri, F., Runswick, M. & Walker, J. (1997) FEBS Lett. 410, 447-451]. Evidence is presented here that the mitochondrial inner membrane contains an L-arginine and L-ornithine transporting system distinct from Arg11p, in keeping with the arginine leaky phenotype of arg11 knock-out mutants. The newly characterised carrier, which we propose to name Bac1p (basic amino acid carrier), behaves as an antiporter catalysing the electroneutral exchange of the basic amino acids L-arginine, L-lysine, L-ornithine and L-histidine and displays the highest affinity for L-arginine (Km of 30 microM). L-Arginine uptake has a pH optimum in the range of 7.5-9 and is inhibited by several sulphydryl reagents, by pyridoxal 5'-phosphate and by cations.

Amino Acids↗

[Brain lesions, pathogenic and etiologic hypotheses of Alzheimer's disease].

The main lesions of Alzheimer's disease are: 1. amyloid deposits, labelled by antibodies directed against the A beta peptide (core of the senile plaques, diffuse deposits and amyloid angiopathy), 2. neurofibrillary lesions labelled by anti-tau antibodies (neurofibrillary tangles, neuropil threads, crown of the senile plaques) and 3. loss of neurons and synapses. The distribution of neurofibrillary pathology is hierarchical: they begin in the entorhinal cortex, progress along the anterograde corticocortical pathways toward the multimodal and unimodal associative cortices to reach, in the most severe cases, the primary cortices. Amyloid lesions are more diffuse, rapidly affecting all the cortical areas. The density of neurofibrillary tangles in the cerebral cortex is correlated with the severity of dementia. Neuritic plaques, synaptic and neuronal loss also contribute to the intellectual deterioration. There are various causes of Alzheimer's disease (several mutations, trisomy 21, repeated head trauma as in dementia pugilistica): it should be considered a syndrome. Its pathophysiology is complex and involves several proteins (e.g. amyloid protein precursor, tau protein, presenilins 1 and 2, and apolipoprotein E).

Alzheimer Disease↗

Neuronal distribution of intranuclear inclusions in Huntington's disease with adult onset.

Neuronal intranuclear inclusions were recently found in the brain of patients with inherited neurodegenerative disorders characterized by the expansion of a polyglutamine stretch in the mutated protein. These inclusions are ubiquitinated and, for some of these diseases, the presence of the mutated protein could be also identified. Using immunohistochemistry, we show here that ubiquitinated intranuclear inclusions are also observed postmortem in the brain of patients suffering from Huntington's disease characterized by small polyglutamine expansions and adult onset. We were, however, unable to detect the mutated form of huntingtin in these inclusions. These intranuclear inclusions were detected only in the affected cerebral regions, suggesting that their presence is probably linked to the neurodegenerative process.

Adult↗

[125I]EGF binding in basal ganglia of patients with Parkinson's disease and progressive supranuclear palsy and in MPTP-treated monkeys.

Since EGF is known to protect and stimulate the activity of dopaminergic neurons, an autoradiographic study of [125I]EGF binding sites was performed in the striatum and pallidal complex in parkinsonian syndromes. The analysis was performed on postmortem brain tissues of three control subjects, three patients with Parkinson's disease, and three patients with progressive supranuclear palsy, another parkinsonian syndrome in which dopaminergic neurons also degenerate. Since all six patients had been treated with L-Dopa, we also analyzed the effects of this drug in an animal model of Parkinson's disease. Quantitative analysis of [125I]EGF binding was performed on the brains of three control monkeys, nine monkeys rendered parkinsonian by MPTP intoxication, three of which were treated with L-Dopa. An increased density of [125I]EGF binding was observed at anterior levels in the dorsal striatum, but not in the pallidum, of patients with Parkinson's disease and progressive supranuclear palsy. [125I]EGF binding was unchanged in parkinsonian monkeys whether or not they had been treated with L-Dopa. The data suggest an increased expression of EGFRs in the striatum in chronic parkinsonian syndromes but not in acute models of the disease.

1-Methyl-4-phenyl-1,2,3,6-tetrahydropyridine↗

The progression of the lesions in Alzheimer disease: insights from a prospective clinicopathological study.

Senile plaques and neurofibrillary tangles are the markers of Alzheimer's disease. They are also found in old patients who have been considered to be intellectually normal throughout their life, a situation referred to as "physiological aging". The neurofibrillary tangles are made of abnormally phosphorylated tau. The anti-tau antibody labels not only the neurofibrillary tangles, but also the crown of the senile plaques and the neuropil threads interspersed between the cell bodies and the plaques. The senile plaque comprises a core made of A beta peptide surrounded by a neuritic crown. The anti-A beta antibody also labels "diffuse deposits", i.e. ill limited areas of immunoreactivity which lacks the characteristics of the amyloid substance. The intellectual deficit appears to be statistically linked with the density of the tau-positive alterations-tangles, threads and plaque crowns--which usually appear simultaneously in a given cortical area. In the entorhinal area, their density increases proportionally to the intellectual deficit without threshold, suggesting that ageing and disease are a continuum. In the isocortex, the progression of the tau positive alterations is, on the contrary, stepwise--in a "all or none" fashion--from the hippocampus to the primary cortices, through the associative multimodal areas. The tau positive lesions probably progress through connections: they indeed disappear from areas, that have been disconnected by additional lesions (such as infarcts).

Aged↗

Cytoarchitectonic alterations in the supramarginal gyrus of late onset Alzheimer's disease.

The intellectual status of 28 women of over 75 years of age had been prospectively assessed by the Blessed test score. It ranged from nearly normal to deeply altered by dementia. After autopsy, the supramarginal gyrus was marked at the surface of the brain. Sections, 1 cm thick, were cut with a specially devised macrotome. The volume of the parietal lobe was measured by a point counting method, using Cavalieri principle. A sample from the supramarginal gyrus was taken from the previously marked area and the shrinkage due to the histological procedures was measured (it averaged 12%). More than 500 nucleolated neuronal profiles per case were mapped with a semi-automatic system. Density maps of the neuronal profiles were drawn and mean density was calculated using Dirichlet tessellation. The thickness of the cortical ribbon was standardized on the maps. The density of the neurons per unit volume was calculated, taking into account the section thickness measured for each sample with a length gauge fastened to the Z axis of the microscope. Statistical correlations were sought between the mean and laminar densities of the neurons on one hand, and Blessed test score, the densities of neurofibrillary tangles (NFT) and of senile plaques profiles, on the other hand. Finally, the total number of neurons present in the parietal lobe was estimated in each case. Neuronal loss appeared to be linked with the density of the NFT (r = -0.52; P < 0.004). The correlation was mainly due to a severe drop in neuronal number observed in the cases with more than 5 NFT/mm2. An average difference of 98 x 10(6) neurons per parietal lobe was found between the cases with less than 5 NFT/mm2 and those with more. The neuronal loss predominated in layers II and III (upper part). A multivariate analysis showed that the intellectual status was better correlated with the density of the tangles than with the neuronal loss.

Age of Onset↗

Laminar spongiosis of the dentate gyrus: a sign of disconnection, present in cases of severe Alzheimer's disease.

An extensive laminar spongiosis was found in the outer part of the dentate gyrus in an 84-year-old patient. An old cavitary infarct in the parahippocampal gyrus disconnected the dentate gyrus from the entorhinal area. This finding prompted us to seek laminar spongiosis in Alzheimer's disease, where the neuronal loss in the entorhinal cortex might be severe. The dentate gyrus was systematically examined in a series of prospectively assessed cases either intellectually normal or affected by mental impairment of graded severity. Laminar spongiosis was present in the most severely affected patients. The neuritic crown of the senile plaques seen in the laminar band of spongiosis contained only a few tau- and Bodian-positive fibers, a sign that was taken as evidence of "plaque denervation". By contrast, deposits of Abeta peptide remained abundant but lacked a dense core. These data suggest that dendritic and axonal processes are intermingled in the senile plaque and that the amyloid core is at least partially dependent on the presence of the axonal component.

Aged↗

Atypical neuronal inclusion bodies in meningioangiomatosis.

A case of meningioangiomatosis not associated with neurofibromatosis 2 in a 24-year-old man is reported. Abundant neurofibrillary tangles and threads, shown by immunohistochemistry and ultrastructural analysis to be similar to those seen in Alzheimer's disease, were found in the residual neuropil. Another lesion consisting of argyrophilic globular inclusion bodies with radial fibrils was found at the periphery. Single and double immunostaining with a panel of antibodies showed similarities between these inclusions and Pick bodies.

Adult↗

Striatal expression of glutamic acid decarboxylase gene in Alzheimer's disease.

To examine potential alteration of GABAergic striatal neurons in Alzheimer's disease, we used quantitative in situ hybridization to analyze the messenger RNA coding for Mr 67,000 glutamic acid decarboxylase (GAD67 mRNA) in the striatum of five patients with Alzheimer's disease (AD) and nine matched control subjects. We found a 51-57% increase in the optical density of hybridization signal in the caudate nucleus and putamen, corresponding to a 30-42% increase in the number of neurons expressing a detectable amount of GAD67 mRNA. By contrast, no alteration was observed in the ventral striatum. The expression of GAD67 mRNA per neuron was similar in AD and control subjects both in the dorsal and ventral striatum. Taken together, our data indicate that, in AD, GABAergic neurotransmission is increased in the dorsal striatum but not in the ventral striatum. We suggest that this increased GABAergic neurotransmission may explain extrapyramidal signs often observed in AD.

Aged↗

Spinocerebellar ataxia type 7 (SCA7): a neurodegenerative disorder with neuronal intranuclear inclusions.

Autosomal dominant cerebellar ataxia with progressive macular degeneration is caused by a CAG/glutamine repeat expansion in the SCA7 gene/protein. Neuronal intranuclear inclusions were detected in the brain of an early onset SCA7 case with the 1C2 antibody directed against an expanded polyglutamine domain. Nuclear inclusions were most frequent in the inferior olivary complex, a site of severe neuronal loss in SCA7. They were also observed in other brain regions, including the cerebral cortex, not considered to be affected in the disease. Using confocal microscopy we showed that some inclusions were ubiquitinated, but to varying degrees, ranging from <1% in the cerebral cortex to 60% in the inferior olive. In addition, we also observed cytoplasmic staining using the 1C2 antibody, particularly in the supramarginal gyrus, the hippocampus, the thalamus, the lateral geniculate body and the pontine nuclei. These data confirm that the presence of intranuclear inclusions in neurons is a common characteristic of disorders caused by CAG/polyglutamine expansions, but unlike what has been reported for Huntington's disease, SCA1 and SCA3/MJD, in SCA7 the inclusions were not restricted to the sites of severe neuronal loss.

Ataxin-7↗

Dementia with Lewy bodies.

The presence of a high number of Lewy bodies--the morphological marker of Parkinson's disease--in the cerebral cortex of some cases of dementia has been frequently observed in association to Alzheimer type lesions (mainly senile plaques) and changes in the substantia nigra, that may be held responsible for the frequently associated symptoms of parkinsonism. The term "dementia with Lewy body" (DLB) has recently been suggested by a consensus conference and indicates that the pathogenetic mechanism of the dementia remains poorly understood. Marked fluctuations of alertness and of the cognitive performances, moderate parkinsonism and episodes of visual hallucinations may lead to suspect this diagnosis in cases of dementia. Unexplained falls, syncopes, delirium or alterations of consciousness may also be observed, and the patients may then be admitted in departments of internal medicine or geriatrics. The Lewy body is an intraneuronal spherical inclusion, present in Parkinson's disease. It is observed in the brainstem (substantia nigra, locus coeruleus, dorsal nucleus of the Xth nerve) and in the nucleus basalis of Meynert. The cortical Lewy bodies have a different aspect, but retain their antigenic characteristics: they are, in particular, stained by the antiubiquitin antibodies. Recently, they were found to be also labeled by antisynuclein antibodies. A mutation of the synuclein gene was recently identified in cases of familial Parkinson's disease. Clinically as well as pathologically, DLB may thus be difficult to distinguish from Alzheimer's disease on the one hand, and from Parkinson's disease, on the other. That diagnosis, however, is associated with a poor prognosis and should lead to specific therapeutic measures.

Aged↗

Progression of Alzheimer histopathological changes.

The clinical-pathological correlations that were prospectively obtained in a cohort of old patients (> 75 years of age) are reviewed. The pathological data were obtained in 31 cases, either normal or affected by Alzheimer disease of various degrees of severity. The density of the A beta peptide deposits was poorly linked with the intellectual status. One patient had a very high density of deposits, although she was considered intellectually normal. When present in a patient, the A beta deposits usually involved all the cortical samples; the samples devoid of deposits most often belonged to the limbic system. The distribution of the neurofibrillary tangles was highly selective: the primary areas (such as the visual cortex) were lesioned only in a few cases, invariably the most severely affected ones. Neurofibrillary tangles involved the associative cortices (sparing the primary areas) in the cases of intermediate severity. The hippocampal-parahippocampal areas contained at least a few neurofibrillary tangles in all the cases. The prevalence of the neurofibrillary lesions in that cohort of cases probably indicated the chronological (and hierarchical) order of involvement: from limbic to associative, from associative to primary areas. There was a linear relationship between the density of the neurofibrillary tangles and the intellectual deficit in the hippocampal-parahippocampal gyrus. The relationship was stepwise rather than linear in the isocortical samples, suggesting that the neurofibrillary tangles were a late phenomenon in those types of cortices. An accumulation of SNAP 25 immunoreactivity was found in some of the most severely affected cases, pointing to a deficit in axonal transport. The density and the total number of neurons were evaluated in a sample of the supramarginal gyrus. The neuronal loss was found to be severe, but only in the most affected cases, when the density of neurofibrillary tangles was higher than 5/mm2.

Aged↗

[Diseases transmitted by non-conventional agents ("prions"): nosology and diagnosis].

Transmissible non conventional agents are currently called "Prions". This is not a neutral terminology: the attractive Prion hypothesis (the infectious agent being a protein able to replicate in the absence of DNA or RNA) due to Stanley Prusiner is the prevalent one, and has shown to be heuristic, but has not been formally proven and does not easily explain all the data, unless modified and expanded. No simple account has been given for the very unusual physical, chemical, and biological properties of non conventional agents. These infectious agents are associated with degenerative diseases of the nervous system that are either the consequence of a genetic mutation or develop spontaneously in apparently normal individuals, and then can be transmitted to various susceptible hosts, including man. Thus, non conventional agents cannot be considered only as fascinating biological enigmas. They constitute a challenge for public health. The changing characteristics of prion-associated diseases has led to a renewing of their clinical and neuropathological diagnostic criteria. A brief survey of the nosology and neuropathology of prions diseases, with emphasis on new data and on difficulties, is provided. A simple classification based on the familial, sporadic or infectious variety of the disease is suggested. Familial diseases can be named according to the genetic disorder. Sporadic and infectious diseases can be classified following the main clinical symptoms and signs, and the presence or absence of amyloid plaques in the brain, until new tools (analysis of the glycosylation pattern of PrP, strain recognition) allow a more precise nomenclature. The new epidemiology of Prion disorders allowed by these new approaches relies on a full study of Prion diseases affected patients, which necessarily involves their genetic study, and the analysis of brain tissue. This, for practical and ethical reasons, is better achieved by autopsy.

Diagnosis, Differential↗

[Memory: clinico-pathologic data].

Synaptic modifications are probably the basis of the memory processes that take place in the central nervous system. They have been studied in Aplysia or in hippocampal slices. How these minute alterations of the synaptic strength are integrated in larger neural systems is still poorly understood. In man, hippocampal lesions, when bilateral, cause a deficit in anterograde episodic memory. The loss of previously acquired memories (retrograde amnesia) is limited. Procedural memory is spared. Young patients with hippocampal lesions remain able to learn how to read or to write (abilities that belong to semantic memories). Recordings obtained with intracerebral electrodes have shown that some neurons of the hippocampus act as "place cells". They fire when the animal is in a specific place of the experimental maze, an observation that suggests that the hippocampus acts as a map that may also be viewed as a context indicator (a "cognitive map"). Computer models have been devised to test the hypothesis that the hippocampus recorded the map of the activated synapses at a particular moment in time. This pattern of activity could secondarily be transferred to the isocortex during a process known as consolidation. The frontal lobe plays a role in attention, which greatly influences the memory process. It also plays a role in the various strategies that are used to recall a memory and in the analysis of the quality of the recall (metamemory). An asymmetry has been shown by the PET-scan: the left frontal lobe is activated during acquisition, and the right one during recall. The ability to integrate one's own memories in one's own history and consciousness (self-awareness or "autonoesis") also depends on the activity of the prefrontal region. The loss of acquired memories (retrograde amnesia) is most often observed in cases of large lesions of the anterior part of the temporal lobe. Partial amnesias are difficult to separate from possibly localized deficits of a cognitive function (some types of aphasia may be considered as an amnesia of words). Subcortical amnesias are caused by diencephalic lesions; the topography of the critical structures is still discussed: mamillary bodies and mamillo-thalamic tract or dorsomedial nucleus of the thalamus. The amygdaloid nucleus, the frontal lobe and the dorsomedial nucleus of the thalamus belong to a network of connections that could be involved in emotions. It could be responsible for the emotional flavor of a memory. Basal ganglia could play a role in procedural memory, but experimental or clinicopathological confirmations are still scarce. Finally, the involvement of the cholinergic innervation in the memory processes has been discussed: it could be direct, or according to more recent data, related to its role in attention.

Amnesia↗

[Neuropathologic markers in degenerative dementias].

The number of neuropathological markers used for the diagnosis of degenerative dementias is rapidly increasing, and this is somewhat confusing: some lesions described a long time ago, such as ballooned cells, proved to be less specific than they were supposed to be; this is also the case for Lewy bodies, that have been recognised in a larger spectrum of disorders than thought a few years ago. On the contrary, for an increasing number of neuropathologists, Pick bodies are now mandatory for the diagnosis of Pick disease, and this contrasts with the prevalent opinions of the late sixties or seventies. There are a number of reasons for the changing significance of neuropathological markers. Three of them can be easily identified: 1) the burst of immunohistochemistry into neuropathology allowed an easier recognition, a better delineation and new pathophysiological approaches to old lesions, and a dramatic increase in the description of new markers, especially in glial cells; 2) in some conditions characterized by the number and distribution of some lesions rather than by their mere presence, such as aging and Alzheimer disease, a better neuroanatomical point of view permitted new insights into the concept of disease versus age-related changes; 3) more accurate clinicopathologic correlations showed clearly the need of grouping or lumping together some entities: for example, obvious relationship aroused between progressive supranuclear palsy and corticobasal degeneration; in contrast, distinguishing different disorders in the frontal lobe dementias grouped together into "Pick disease" was felt necessary. This review summarizes the main criteria for identification, and the presumed meaning of the chief markers indicating the presence of abnormally phosphorylated tau proteins, A beta peptides, and PrP proteins. Abnormally phosphorylated tau proteins can be stored in the neurons, and participate in the constitution of many lesions (neurofibrillary tangles, neuropil threads, abnormal processes of the crown of neuritic senile plaques, Pick bodies, granulo-vacuolar degeneration, argyrophilic grains). When seen in neuroglia, they are the chief constituents of various lesions that affect mainly astrocytes (abnormal tufts of fibres, astrocytic plaques, thorn-shaped astrocytes, spiny astrocytes) and also oligodendrocytes (oligodendroglial threads and coils, glial cytoplasmic inclusions). A beta peptides, in "preamyloid" and amyloid conformations, can be seen in the extracellular space (plaques, of the neuritic or non-neuritic varieties, diffuse, focal and granular deposits) and in the vascular walls (amyloid angiopathies). Some PrP deposits are also of the amyloid variety (kuru type, multicentric or florid plaques), but immunohistochemistry, far more sensitive than conventional studies, revealed a number of other lesions (perivacuolar, neuronal, "synaptic" deposits...). Numerous markers are easily detected by ubiquitin immunohistochemistry. Lewy bodies, Pick bodies, neurofibrillary tangles had already be identified by other methods. In contrast, some ubiquitin-positive inclusions are shown, by this technique only, in amyotrophic lateral sclerosis and other conditions which were thus related to this disease. Finally, this review deals with two classic markers, ballooned cells ("Pick cells") and spongiosis seen in disorders due to non conventional agents or prions (spongiform encephalopathies).

Biomarkers↗