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R Ferrari

Publications and source records attributed to R Ferrari.

At least 415 records · Page 23Linked to original sources

Oxygen-mediated myocardial damage during ischaemia and reperfusion: role of the cellular defences against oxygen toxicity.

The possibility that myocardial ischaemia alters the defence mechanisms against oxygen toxicity has been investigated. Ischaemia was induced in isolated, perfused rabbit hearts by reducing coronary flow from 25 ml/min to 1 ml/min for 90 min. Two different degrees of ischaemic damage have been achieved using either spontaneously beating or electrically stimulated hearts. The effects of post-ischaemic reperfusion were also followed for 30 min. Tissue activity of superoxide dismutase (SOD), glutathione peroxidase and reductase (GPD and GRD) have been determined together with tissue content of reduced and oxidized glutathione (GSH and GSSG) and of protein SH groups. The changes in myocardial ATP and CP content and release of CPK and of GSH and GSSG were also determined. Systolic and diastolic pressures were continuously monitored. In the spontaneously beating hearts ischaemia induced a reduction of tissue GSH and protein SH groups. On reperfusion there was a recovery of mechanical function, a transient release of GSH into the coronary effluent and an increase of tissue GSH. In the paced hearts, ischaemia resulted in 50% reduction of mitochondrial SOD activity together with a reduction of tissue GSH and protein SH groups. Reperfusion induced a massive release of CPK and of GSH and GSSG, a further reduction of tissue GSH concomitant with an increase of GSSG and no recovery of mechanical function. GPD and GRD activity were not affected by ischaemia and reperfusion. These data indicate that severe ischaemia induces a reduction of the protective mechanisms against oxygen toxicity.

Adenosine Triphosphate↗

Pharmacological analysis of alpha-2 adrenergic mechanisms in nociception and ataxia.

In order to assess the involvement of alpha-2 adrenergic receptors in nociception, the in vitro potencies of seven alpha-2 adrenergic agonists (clonidine, guanabenz, guanfacine, BHT-920, ICI 106270, xylazine and lofexidine) were compared with their ability to prevent the writhing response elicited by i.p. administration of phenyl-p-guinone. Administration of each compound elicited antinociception, and this effect was attenuated by pretreatment with the alpha-2 adrenergic antagonists, yohimbine. The potency of these compounds to cause antinociception was correlated with their potency to displace [3H]clonidine from its binding site on brain membranes and with their ability to inhibit the twitch of the electrically stimulated vas deferens, suggesting an alpha-2 involvement in the antinociceptive action. In addition to causing antinociception, administration of these agonists also impaired rotorod performance in mice. These agonists were 2.5 to 72 times more potent in inhibiting writhing than in impairing rotorod performance, and, except for ICI 106270, there was a correlation between antinociceptive and ataxic potency. ICI 106270 was a notable exception to this correlation, however, producing only minimal ataxia, which unlike the other agonists was not reversed by yohimbine. These results indicate that alpha-2 adrenergic agonists can produce antinociception and further suggest that this may be dissociable from the ataxia.

Adrenergic alpha-Agonists↗

Role of oxygen in myocardial ischaemic and reperfusion damage: effect of alpha-tocopherol.

There is evidence that oxygen-derived free radicals may play a role in myocardial ischaemic and reperfusion injury. Major sources of O2 free radicals formation during ischaemia and reperfusion are: the enzyme xanthine oxidase, activated neutrophils and the myocardial mitochondria. However, in the heart there are defense mechanisms against the toxic oxygen metabolites. They include the enzyme superoxide dismutase, catalase and glutathione peroxidase plus endogenous antioxidants like vitamin E, ascorbic acid and cysteine. We have investigated in the isolated rabbit hearts the effects of ischaemia and reperfusion on these defence mechanisms. 90 min of ischaemia and/or hypoxia induced a significant reduction of mitochondrial superoxide dismutase, and of reduced glutathione/oxidized glutathione ratio which was further declined after reperfusion indicating that an oxidative stress has occurred. These alterations are associated with massive tissue and mitochondrial calcium accumulation, loss of mitochondrial function and severe membrane damage. The effects of vitamin E on these parameters have been investigated. Administration of 1.1 mg of dl-alpha-tocopherol acetate showed a protective effect on mitochondrial function but it failed to improve the recovery of mechanical function during reperfusion.

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↗

[14C]deoxyglucose uptake of the rat visual centres under monocular optokinetic stimulation.

Monocular optokinetic stimulation ( OKS ) in Long-Evans rats enhances the uptake of [14C]2-deoxy-D-glucose (2-DG) in the pretectal nucleus of the optic tract (NOT) and superior colliculus (SC) contralaterally to the open eye regardless of the movement direction. Metabolic increases in NOT and SC are therefore found to be unrelated to the ocular nystagmus that in monocularly viewing rats follows only to OKS nasalward for the seeing eye. Since the oculomotor asymmetry has been attributed to the directional selective properties of NOT neurons responding to nasalward movement in the contralateral visual field but being inhibited by opposite ( temporalward ) movement, the enhanced 2-DG uptakes observed in the present experiments seem to represent the NOT excitatory metabolic work in the case of nasalward movement and the NOT inhibitory metabolic expenditure in the case of temporalward movement.

Animals↗

The metabolical effects of L-carnitine in angina pectoris.

We determined the effects of L-carnitine on myocardial metabolism in 18 patients with angiographically-proven coronary artery disease, subjected to two rapid coronary sinus pacing evaluations. L-Carnitine converted lactate production to extraction and increased the percentage of free fatty acid extraction. These results suggest that L-carnitine may be of use to improve the metabolism of coronary artery disease patients.

Angina Pectoris↗

The effect of antiserum quality on strain specificity assessment of foot and mouth disease virus by the neutralization reaction.

The factors affecting the virus strain specificity of antibody to foot an mouth disease virus prepared by a variety of protocols in several species were evaluated by neutralization tests. The time at which the serum was taken, the antigen dose given, whether or not revaccination had occurred and the animal species in which the sera were prepared, did not appear to affect the strain specificity of serum prepared to inactivated antigens when measured in neutralization tests, probably because of the restricted nature of the antigenic site involved. However, variation was observed with convalescent animal sera or sera from animals which had received trypsin cleaved virus were used. For these reasons banks of reference antisera are prepared as pooled sera using one or two inoculations of inactivated antigen.

Animals↗