Search PubMed⌕ Search

Biomedical subjects

P Cervera

Publications and source records attributed to P Cervera.

At least 37 records · Page 2Linked to original sources

Constant neurofibrillary changes in the neocortex in progressive supranuclear palsy. Basic differences with Alzheimer's disease and aging.

Neocortical neurofibrillary tangles (NFT) revealed by Bodian technique and anti-tau immunolabelling were seen in 5/5 cases of progressive supranuclear palsy (PSP) aged 58-76 years. These lesions differed from Alzheimer's disease or age-related changes: (1) they were most frequent in the precentral gyrus (Brodmann's area 4) whereas associative areas are predominantly lesioned in Alzheimer's disease; (2) they affected mainly large pyramidal neurons and small cells, relatively sparing the cell population selectively involved in Alzheimer's disease; (3) they predominated in layers V and VI of area 4, whereas NFT are most dense in layers III and V in Alzheimer's disease; (4) mature senile plaques (1/5 cases) and beta-amyloid diffuse deposits (3/5 cases), which usually precede or go together with NFT in Alzheimer's disease were rare or absent (2/5) in PSP. Neuropil threads and tufts of abnormal fibres were also seen. In addition, NFT and neuropil threads were found in the hippocampus. PSP is thus another example of abnormal storage of tau developing in the neocortex in the absence of beta-amyloid deposits. It might prove a useful model for the understanding of the mechanisms of localization and spreading of tau storage in the brain.

Aged↗

Tyrosine hydroxylase-like immunoreactivity in senile plaques is not related to the density of tyrosine hydroxylase-positive fibers in patients with Alzheimer's disease.

The numbers of silver-stained senile plaques and plaques containing tyrosine hydroxylase (TH)-like immunoreactivity were counted in the neocortex, amygdala and hippocampus of control subjects and patients with Alzheimer's disease, and compared with the density of TH-positive nerve fibers. The number of silver-stained senile plaques was lowest in the hippocampus and highest in the amygdala, and increased in all three structures in relation to the degree of dementia in the patients. A small proportion of plaques in the hippocampus of the most demented subjects and a large proportion of plaques in the amygdala were TH-positive. No TH-like immunoreactivity was found in plaques in the neocortex, although this structure contained almost as many silver-stained senile plaques and was as densely innervated by TH-positive fibers as the amygdala. The number of plaques containing TH-like immunoreactivity was, therefore, not proportional to the innervation of the structures by TH-positive fibers, nor to the total number of plaques in the structure, suggesting that the dissociation between the proportion of TH-positive plaques in the amygdala and neocortex may be due to differences in the populations of TH-positive fibers innervating the structures.

Aged↗

Piroxicam-induced photosensitivity and contact sensitivity to thiosalicylic acid.

A photocontact dermatitis developed in three patients after the application of gel containing 0.5% piroxicam. Patch tests were positive to thiomersal and thiosalicylic acid. Photopatch tests with piroxicam at several concentrations were positive in the three patients but negative in 62 normal volunteer subjects. Patch tests performed on 14 patients with proved systemic photosensitivity to piroxicam were positive for thiomersal and thiosalicylic acid. Nine of 12 patients previously sensitized to thiosalicylic acid and with no history of exposure to piroxicam showed positive photopatch test reactions to this chemical. These results support a relation between piroxicam-induced photosensitivity and contact sensitivity to thiosalicylic acid. Contact allergic sensitivity to the latter is a marker for patients with a high risk of developing photosensitivity reactions to piroxicam. These reactions may be due to photoproducts of the drug rather than metabolites.

Adult↗

Catecholaminergic systems in the medulla oblongata in parkinsonian syndromes: a quantitative immunohistochemical study in Parkinson's disease, progressive supranuclear palsy, and striatonigral degeneration.

We investigated tyrosine-hydroxylase (TH)-immunoreactive neurons in the medulla oblongata corresponding to the A1 and A2 cell groups in autopsy tissue of patients with Parkinson's disease (PD) (n = 3), progressive supranuclear palsy (PSP) (n = 3), striatonigral degeneration (SND) (n = 2), and in controls (n = 4). The estimated total number of TH-positive neurons in the A1 and the A2 regions was normal in PD and PSP patients. The sparing of medullary catecholaminergic cells in PD and PSP may be related to their minor degree of melanization and the possibility that intermediate compounds associated with the oxidative catabolism of norepinephrine and epinephrine may be less cytotoxic than those generated by degradation of dopamine. Patients with SND showed a marked loss of TH-immunoreactive cells in the A1 and the A2 groups, which may contribute to the impairment of vasomotor control characteristic of the disease.

Aged↗

Distribution of monoaminergic, cholinergic, and GABAergic markers in the human cerebral cortex.

Mapping of a number of biochemical markers for noradrenergic, dopaminergic, serotoninergic, cholinergic and GABAergic systems was undertaken in 93 samples removed from the human cerebral cortex. The right hemisphere of brains from two subjects with no known history of neurological and psychiatric diseases was examined. Neurotransmitter markers were present in all cortical samples analysed, suggesting a widespread distribution of the corresponding neurons throughout the cerebral cortex. Each marker distributed heterogeneously in a distinct pattern. Noradrenaline concentrations were highest in the frontoparietal region and lowest in prefrontal and occipital areas. Markers for dopaminergic neurons (dopamine levels, dopamine/noradrenaline ratio and homovanillic acid levels) seemed denser in the prefrontal and temporal regions. 5-Hydroxyindolacetic acid levels were particularly high in the occipital area and decreased along the caudorostral axis. Choline acetyltransferase activity was highest in temporal and frontal lobes, at variance with muscarinic receptor distribution, which was highest in occipital cortex. Glutamate decarboxylase activity, an index of GABAergic innervation, did not vary markedly among the different areas of the cerebral cortex. The different biochemical markers investigated were detected in all cerebral cortical regions; their distribution was not homogeneous. A mismatch was observed between the distribution of cholinergic neuronal systems and receptors.

Aged↗

Choline acetyltransferase-like immunoreactivity in the hippocampal formation of control subjects and patients with Alzheimer's disease.

A qualitative and quantitative immunohistochemical study of cholinergic systems in the human hippocampal formation was performed with an antibody against choline acetyltransferase. Four control subjects and six patients with Alzheimer's disease, matched for age and post-mortem delay, were examined. Immunoreactive nerve fibres and terminals were visualized, but no cholinergic cell bodies were seen. The distribution of the fibres and terminals suggests that a major afferent cholinergic pathway enters the hippocampus dorsally via the fimbria-fornix, a minor input entering from the temporal lobe along the alvear path. The cholinergic innervation suffers some degenerative change in normal aged subjects, but decreases considerably in density in patients with Alzheimer's disease. The extent of the decrease differs somewhat among the subregions of the hippocampus, but is homogeneously distributed within each subregion, and throughout the rostrocaudal extent of the structure. Compensatory sprouting in reaction to denervation was not detected.

Aged↗

Selective loss of cholinergic neurons in the ventral striatum of patients with Alzheimer disease.

Cholinergic neurons were studied by immunohistochemistry with an antiserum against human choline acetyltransferase in the caudate nucleus, putamen, and ventral striatum (including the nucleus accumbens) of three patients with Alzheimer disease and three control subjects. Immunoreactive cell bodies were mapped and counted. In the ventral striatum of patients with Alzheimer disease, a 60% decrease in the number of cholinergic neurons was observed, whereas in the caudate nucleus and putamen values for control subjects and patients were similar. To determine whether all neurons in the ventral striatum were affected, neuropeptide Y-containing neurons were also immunostained, mapped, and counted. The number of these neurons was the same in control subjects and patients with Alzheimer disease, indicating that neuronal loss is not generalized in the ventral striatum and may be specific to the cholinergic population.

Acetylcholinesterase↗

[Cerebral cysticercosis: imaging, serology, treatment and evolution. Apropos of 2 cases].

The authors present two cases of neurocysticercosis diagnosed both by serology and medical imaging (computed tomographic scan and magnetic resonance imaging). The first patient had a mixed form with localization of the parasites in the different anatomic parts. He developed suddenly a severe encephalitis which growth has been quickly fatal in spite of a prompt praziquantel and corticosteroids treatment. The second patient had a parenchymal form, and the same treatment was very effective.

Adolescent↗

Autoradiographic analysis in rat brain of the postnatal ontogeny of voltage-dependent Na+ channels, Ca2+-dependent K+ channels and slow Ca2+ channels identified as receptors for tetrodotoxin, apamin and (-)-desmethoxyverapamil.

The postnatal development of the distribution of 3 different ionic channel proteins in rat brain was studied using light microscopic autoradiography. [3H]Ethylenediaminetetrodotoxin, [125I]apamin and (-)-[3H]desmethoxyverapamil were used to label one class of voltage-dependent Na+ channel proteins, one class of Ca2+-dependent K+ channel proteins, and the slow Ca2+ channel protein, respectively. Ca2+-dependent K+ channel proteins are detected very early in the germinative zone. They are associated to neuronal somas during their migration and their maturation. In hippocampus and cerebral cortex, apamin binding sites are already present at birth and their density increases to day 20 postnatal when the adult localization is established. Slow Ca2+ channel protein development occurs later in CNS ontogenesis. The development of slow Ca2+ channels seems to follow the development of dendrites. Density of these channel proteins increases regularly until adult age. At the resolution level of this analysis, Na+ channel proteins are absent in diencephalon at birth. Their appearance and their increase in density are strictly correlated to the synaptogenesis in particular in cerebral and cerebellar cortex and hippocampus. Although cerebellum, neocortex and hippocampus have been particularly analyzed, other brain structures have also been examined.

Animals↗

Pitfalls in membrane binding sites studies in post-mortem human brain.

A number of neurotransmitter receptor sites have been characterized biochemically in post-mortem human brain from normal subjects and in several neurological and psychiatric diseases. Such studies are valid, however, only when appropriate pre-mortem and post-mortem conditions are controlled. The effects of age, pre-mortem agonic conditions, drug therapy and post-mortem delay on the characteristics of five binding sites (alpha-1, alpha-2 and beta adrenergic receptors, 5HT-2 serotoninergic receptors, imipramine binding sites) were studied. Age related changes in receptor number were found. Pre-mortem anoxia and hypovolemia had no influence on receptor characteristics. The drugs administered before death, in particular neuroleptics, were found to affect binding to some receptors in post-mortem tissue. A post-mortem delay up to 24 hours after death had no effect on binding sites. Experimental strategies (single point values or saturation curves) were also compared.

Adult↗