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Biomedical subjects

M Allix

Publications and source records attributed to M Allix.

23 records · Page 2Linked to original sources

Effect on cerebral blood flow of orally administered indomethacin-loaded poly(isobutylcyanoacrylate) and poly(DL-lactide) nanocapsules.

Nanocapsules, containing indomethacin, were prepared either by interfacial polymerization of isobutylcyanoacrylate monomers or by interfacial deposition of a performed (DL-lactide) polymer. In-vitro release of indomethacin from nanocapsules was dependent on the pH of the sink solution and was enhanced by addition of albumin. A decrease in cerebral blood flow was noted 15 min after oral administration to rats of indomethacin nanocapsules (5 mg kg-1) and lasted over 3 h. Empty nanocapsules had no effect. Since release of indomethacin from nanocapsules is unlikely to occur in the lumen of the stomach, due to unsuitable pH conditions, and nanocapsules have been previously shown to be able to cross the intestinal barrier, to reach the villi vessels intact and to protect against the ulcerating effect of the free drug, it is suggested that the rapid onset of the pharmacological effect was sufficiently induced by free indomethacin released in the plasma following absorption of the intact nanocapsules.

Administration, Oral↗

Naloxone effect on the neurological deficit induced by forebrain ischemia in rats.

The effect of naloxone upon neurologic deficit was evaluated in a model of transient forebrain ischemia in rats. Awake male Wistar rats were subjected to a 30 minute ischemia by occluding both common carotid arteries 8 days after cauterizing vertebral arteries. Administration of naloxone 1 or 5 mg/kg iv 10 minutes after carotid occlusion or 1 mg/kg iv one hour after clamp removal failed to reduce immediate and tardive neurologic postischemic deficits. On the other hand, in rats treated by a dose of 1 mg/kg naloxone 10 minutes after carotid occlusion and perfused with an additional dose of 2 mg/kg/h for 80 minutes, neurologic score was improved one hour after ischemia. However mortality was not decreased whatever was the modality of naloxone administration. This result confirms previous data showing that naloxone exerts a protective effect when given at sufficiently high dosage.

Animals↗

Possible non-involvement of lipoxygenase pathway in the cerebral blood flow decrease due to indomethacin.

Indomethacin (10n mg/kg i.p.) induced a marked decrease in local cerebral blood flow (l.CBF), which was measured in the frontal cortex of unanesthetized rats by the hydrogen clearance technique. Brain prostaglandins (PGD2, PGE2, PGF2 alpha,) and 6kPGF1 alpha the stable metabolite of prostacyclin, were significantly decreased. Treatments with inhibitors of lipoxygenase (BW 755C and nordihydroguaiaretic acid) and with FPL 55712, a leukotriene receptor antagonist, did not influence the effect of indomethacin on 1.CBF. The results suggest that the release of vasoconstrictory leukotrienes does not play a major role in the lowering of 1.CBF by indomethacin.

4,5-Dihydro-1-(3-(trifluoromethyl)phenyl)-1H-pyraz↗

Model of global forebrain ischemia in the unanesthetized rat.

Global forebrain ischemia was induced in unanesthetized rats by electrocauterization of the vertebral arteries and transient occlusion of the common carotid arteries for 30 minutes. Local cerebral blood flow (l-CBF), cortical tissular pO2 (tpO2), electrocorticogram (ECoG), mean arterial pressure, pH and blood gas determinations and neurologic deficit were evaluated during and after ischemia. Cerebral ischemia induced a substantial decrease in l-CBF and tpO2 and the ECoG was flattened. One hour after ischemia, the neurologic deficit was at its maximum, l-CBF was still decreased and ECoG depressed. Twenty-four hours later, the neurologic deficit was still present but ECoG, l-CBF and tpO2 had returned to their preischemic values. Treatments with naloxone were performed during, after or during and after ischemia. When naloxone was administered during or after ischemia, postischemic neurologic deficit was not influenced by the treatment. A slight but significant improvement of the neurologic score was observed when naloxone was injected during ischemia and infused thereafter. Our results show that this experimental model of cerebral ischemia is suitable for quantification of neurologic alterations during the postischemic period. The slight improvement observed with naloxone suggests that endogenous opioids may have a minor role in the neurologic consequences of ischemia.

Animals↗

Effect of indomethacin on the coupling of cerebral blood flow to brain metabolism.

The effect of indomethacin (10 mg.kg-1 i.p.) on frontal cerebral blood flow has been investigated in male Sprague Dawley rats using the hydrogen clearance technique. Indomethacin elicited a marked reduction in cerebral blood flow in awake free-moving animals. The response to indomethacin was prevented by pretreatment with pentobarbital (50 mg X kg-1, i.p.). On the other hand, indomethacin was able to antagonize the cerebral vasodilation due to apomorphine chlorhydrate (2 mg X kg-1, i.p.), dexamphetamine tartrate (3 mg X kg-1, i.p.) or immobilization stress. Taken together, the above results lead to the suggestion that indomethacin can suppress the coupling of cerebral blood flow to brain metabolism. Further investigations are needed to ascertain whether this uncoupling influence is related to brain cyclooxygenase inhibition.

Anesthesia↗