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D Rotiroti

Publications and source records attributed to D Rotiroti.

85 records · Page 5Linked to original sources

Effects of interleukin-2 on various models of experimental epilepsy in DBA/2 mice.

The effects of interleukin-2 (IL-2) on various models of experimental epilepsy were studied after intracerebroventricular administration in DBA/2 mice, a strain genetically susceptible to sound-induced seizures. Convulsions were induced by physical stimulus (sound of 109 dB. 12-16 kHz) or by chemical compounds (bicuculline, cephazolin or kainate). The present study demonstrated that human recombinant IL-2 (hr-IL-2) and mouse recombinant IL-2 (mr-IL-2) not only did not antagonize audiogenic seizures in DBA/2 mice but increased the incidence of seizures after the highest doses studied. In addition, hr-IL-2 and mr-IL-2 dose dependently facilitated sound-induced seizures at subthreshold sound exposure (83 dB). Pretreatment with monoclonal rat-antimouse IL-2 antibodies significantly affected the changes of occurrence of audiogenic seizures in DBA/2 mice induced by mr-IL-2. In addition, pretreatment with anti-IL-2 receptor monoclonal antibodies (anti-Tac) was able to completely antagonize or reduce the effects of IL-2 on audiogenic seizures. The effects of mr-IL-2 were also studied in two different models of epilepsy: the bicuculline and cephazolin models, due to impairment of GABAergic transmission, and the kainate model, due to an increase in excitatory amino acid transmission. In all models, mr-IL-2 demonstrated to facilitate the seizures induced by these chemoconvulsants. Since the proconvulsant properties of IL-2 were antagonized by specific monoclonal antibodies, we suggest that some epileptic phenomena may be linked to stimulation of IL-2 receptors.(ABSTRACT TRUNCATED AT 250 WORDS)

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Distribution of paraquat into the brain after its systemic injection in rats.

Paraquat concentrations were determined in specific brain areas of rats systemically treated with different doses of the herbicide and sacrificed at different time periods following the acute administration. The systemic treatment with paraquat gave rise to a regional differential distribution of the herbicide into the rat brain, the highest levels being detected in the prefrontal cortex and hypothalamus. The rate of paraquat elimination showed time-dependency in the prefrontal cortex and hypothalamus; by contrast, in the other regions studied the initial drop observed at 3 h was followed by a second phase of significant accumulation. The concentrations detected into the cortex may account for the neuronal cell death reported in rats following systemic injection of this herbicide.

Animals↗

Ribavirin-induced behavioral, body temperature and electrocortical spectra effects in the rat.

Behavioral, electrocortical spectra and body temperature effects, following a single intracerebroventricular (i.c.v.) or intraperitoneal (i.p.) injection of ribavirin, were studied in male adult rats. Ribavirin, when administered i.p., induced squatting posture, sedation, electrocortical synchronization, piloerection and a slight decrease of tactile and/or auditory stimuli/responses lasting from 45 min to 16 hr, as well as a longer lasting hypothermic effect. Following i.c.v. administration, ribavirin (50, 100 and 200 micrograms) elicited a soporific effect and produced changes in the electrocortical spectra. Pretreatment, 15 min before, with either prazosin (10 mg/kg, i.p.), an alpha 1-adrenoceptor blocker, or piperoxan (20 mg/kg, i.p.) and yohimbine (1 mg/kg, i.p.), two alpha 2-adrenoceptor blockers, or naloxone (1 mg/kg, i.p.), an opioid antagonist, did not prevent the hypothermic and behavioral effects induced by i.p. or i.c.v. administration of ribavirin. The present findings exclude an involvement of alpha-adrenergic and opioid neurotransmission in mediating the hypothermic, electrocortical and behavioral effects induced by ribavirin.

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Stimulatory effects on lactotrophs and crop-sac of interleukin-1 and interleukin-2 in pigeons (Columba livia).

The ultrastructural effects of human-recombinant interleukin-1 beta (IL-1 beta) and human-recombinant interleukin-2 (IL-2) on the crop-sac (the target organ for prolactin secretion in birds) and the anterior pituitary lactotrophs, were studied in pigeons (Columba livia). The intraventricular microinfusion of the two interleukins produced maximal crop-sac stimulation with milk-like secretion, as demonstrated by the observation of ultrastructural changes in the lactiferous areas through scanning and transmission electron microscopy of crop-sac mucosa. A marked activation of the anterior pituitary lactotrophs was also observed. Crop-sac and pituitary lactotrophs stimulatory effects were prevented by a previous intraventricular treatment with monoclonal antibodies for IL-1 beta and IL-2 receptors, but not by an intraperitoneal administration of naloxone. The present results show that interleukins possess in pigeons marked stimulatory effects on prolactin secretion and that these are mediated by specific receptors.

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