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Biomedical subjects

C Menini

Publications and source records attributed to C Menini.

At least 55 records · Page 3Linked to original sources

Chemical synaptic transmission is not necessary for epileptic seizures to persist in the baboon Papio papio.

The spread and persistence of epileptic seizures have generally been attributed to chemical synaptic interactions. Using ion-sensitive microelectrodes, we showed that in the allylglycine-treated photosensitive baboon, prolonged light-induced generalized seizures were accompanied by abnormally large decreases in the concentration of extracellular calcium ions, reaching values at which chemical synaptic transmission was certainly very reduced or blocked. This feature was observed in all cortical layers. Measurements of the concentration of extracellular potassium ions in the course of such light-induced seizures indicated that the observed low values of the concentration of calcium ions could not be ascribed to the occurrence of spreading depressions. These findings showed that nonsynaptic mechanisms play a prominent role in the persistence of epileptic seizures.

Animals↗

[Antiglobulin test using an immunoenzyme method].

An enzyme-linked antiglobulin test (ELAT) is described. All reagents are commercially available. The antiglobulin reagent is a monoclonal anti-IgG conjugated with alkaline phosphatase. The substrate (p-nitrophenylphosphate) is stable and innocuous. The procedure requires long incubations, particularly between red cells and the enzyme-conjugated antibody. However most of the time actively spent by the technician is consumed by washing procedures (LAV). These may be avoided by using density gradient centrifugation (CSG). ELAT is significantly more sensitive than agglutination, using either washing or gradient centrifugation (P = 0.002 and P = 0.0005, respectively). Moreover ELAT-CSG is significantly more sensitive than ELAT-LAV (P = 0.03). CSG yields better reproducibility and probably avoids some of the spontaneous elution of the primary and/or secondary antibody which may occur during washing.

Alkaline Phosphatase↗

Physostigmine antagonizes benzodiazepine-induced myoclonus in the baboon, Papio papio.

The antagonism of some benzodiazepine (Bz) actions by physostigmine was investigated in 4 Papio papio baboons. As a model of these actions, the myoclonus induced in this species by clonazepam i.m. administration was used. The baboon develops, 20-30 min after Bz i.m. injection, a non-epileptic myoclonus characterized by clinical symptomatology (jerks involving mainly the neck and the trunk bilaterally), by the absence of any correlative EEG discharge, and by its facilitation during movement. This Bz-induced myoclonus resembles the intention myoclonus of human patients, as seen for example after anoxia. In the present series, the effect of physostigmine i.v. injection on the frequency of clonazepam-induced myoclonus was tested. Physostigmine produces a rapid and total abolition of the myoclonus, and this effect lasts for a period which corresponds to the pharmacological activity of physostigmine. On the contrary, atropine i.v. injection considerably increases the amount of Bz-induced myoclonus. These results allow the existence of an anticholinergic action of benzodiazepines, reversed by physostigmine, and the theory that the myoclonus would be the consequence of a cholinergic system depression to be hypothesized.

Animals↗

Positron emission tomography in a case of experimental focal epilepsy in the baboon.

Repetitive limbic status epilepticus was produced in one baboon by intraamygdaloid microinjection of kainic acid. Brain metabolism was analysed by positron emission tomography (PET) after intravenous administration 18fluorodeoxyglucose (18FDG). In a control examination the distribution of 18FDG was symmetric in homologous parts of the brain. In contrast, during the epileptic state a restricted zone, the fronto-temporal region, showed increased 18FDG incorporation. This region corresponded to the side of kainic acid injection and to the limbic epileptogenic focus as demonstrated by EEG recording. The use of the non-invasive PET technique is suggested as an adjunct to classical EEG and clinical observation for the localization of an epileptic focus generating a status epilepticus.

Animals↗

The kinetics and displacement of [11C]flunitrazepam in the brain of the living baboon.

The distribution and kinetics of [11C]flunitrazepam in the brain were studied by positron emission tomography in the living baboon. Flunitrazepam was labelled on the methyl group with the 20 min positron emitter carbon 11. Fifteen to 25 mCi corresponding to 15-30 nmol were injected i.v. and sequential tomographic pictures of the brain were obtained. In some experiments, therapeutic doses of various benzodiazepines were injected i.v. subsequently in order to study the displacement of the radioactive ligand from brain structures. Lorazepam was shown to displace [11C]flunitrazepam from brain tissue, although other benzodiazepines (chlordiazepoxide, Ro 116896 and Ro 116893) led to a redistribution of the radioactive ligand in the body accompanied by an increase of brain radioactivity.

Animals↗

Cerebral and extracerebral blood volume in generalized seizures in the baboon Papio papio.

Relative variations of the cerebral and extracerebral blood volume (CBV) were measured continuously by a novel atraumatic method in baboons to explore the relationship between changes in the systemic circulation and in the cerebral (and extracerebral) vascular responses, before, during and after generalized seizures induced by photic stimulation. Major bursts of generalized spikes and waves are accompanied by an increase of the mean arterial pressure and of the cerebral blood volume and a decrease of the nasal blood volume. During the seizure discharge a substantial increase in CBV occurs, associated with a dramatic increase in arterial pressure. However, the greatest increase in CBV occurs after the peak mean arterial pressure. The results show that the CBV does not passively follow the blood pressure and demonstrate the dramatic responsiveness of the nasal region to seizure discharge.

Animals↗

Absence of seizure activity following focal cerebral injection of enkephalins in a primate.

Baboons (Papio papio) with photosensitive have been chronically prepared with guide cannulae and deep electrodes to study the effects of focal injections of opioids. In the hippocampus, amygdala and thalamus (centre median) 50--100 micrograms morphine, 20--100 micrograms Met-enkephalin or 2--10 micrograms FK 33,824 do not induce local or general electrographic or motor signs of epilepsy. The acute epileptogenic effect of morphine and enkephalins observed in rats is not a general phenomenon whereas the anticonvulsant action of opioids acting on mu-receptors is seen in rodents and primates.

Amygdala↗

[Modification of frontal and occipital cortical excitability provoked by trains of flashes in Papio papio (author's transl)].

The experimental conditions necessary for obtaining an evoked paroxysmal response from the frontal cortex were studied in the baboon Papio papio. The trigger stimulus was comprised of an isolated flash preceded by a train of intermittent light stimulation (SLI). Two conditions were necessary for the appearance of paroxysmal responses: a subconvulsant dose of DL-allylglycine had to be injected at least 3 h previous to recording, and a sufficient number of SLI trains had to be presented to the animal. The paroxysmal responses disappeared as soon as SLI trains were stopped. At the same time, modifications in the evoked occipital potential continue, although these do not become paroxysmal. These modifications appear either simultaneously with or previous to the paroxysmal frontal response.

Allylglycine↗

Sustained limbic seizures induced by intraamygdaloid kainic acid in the baboon: Symptomatology and neuropathological consequences.

In Papio papio baboons chronically prepared for cortical and deep electroencephalographic recording, injection of kainic acid into the amygdala (7 animals) or temporal pole (2 animals) gave rise to focal epileptic discharges lasting 15 to 150 hours. Electrographically, the seizure activity spread ipsilaterally and contralaterally within the limbic system but did not become generalized. The principal associated motor signs were arrest of movement and oral automatisms. Histological examination after two to ten days demonstrated lesions (neuron loss and gliosis) at the injection site that varied according to the amount of kainic acid injected (2 to 68 microgram). "Remote" lesions occurred in the ipsilateral hippocampus (end-folium and Sommer sector) and neocortex (occipital and frontal regions). The hippocampal lesions were comparable to those previously described as consequent to status epilepticus.

Amygdala↗