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Biomedical subjects

A Bertolini

Publications and source records attributed to A Bertolini.

At least 145 records · Page 8Linked to original sources

Effects of thyroid status on the characteristics of alpha 1-, alpha 2-, beta, imipramine and GABA receptors in the rat brain.

The effects of a chronic treatment with L-triiodothyronine (T3; 100 mg/rat/day s.c. for 7 days) or with propylthiouracil (PTU; 50 mg/rat/day for 35 days by stomach tube) on the characteristics of alpha 1, alpha 2, beta, imipramine and GABA binding sites in different brain areas of the adult rat have been studied. T3-treatment caused an increase in the number of [3H]dihydroalprenolol and a decrease in the number of [3H]muscimol binding sites in the cerebral cortex. PTU-treatment caused a decrease in the number of [3H]prazosin, [3H]yohimbine and [3H]dihydroalprenolol binding sites in the cerebral cortex, while the number of [3H]imipramine binding sites was reduced in the cerebral cortex and hypothalamus, and increased in the hippocampus. Affinity constants were never modified. Concurrent experiments showed that the "in vitro" addition of T3 and PTU did not influence the binding of any of the ligands employed to control rat brain membranes. The present data further support the view that neurotransmission in the CNS is influenced by the thyroid status.

Animals↗

Influence of TRH on regional blood flow and metabolic acidosis in a model of volume-controlled hemorrhagic shock in rats.

In anesthetized rats, massive bleeding to a severe condition of hemorrhagic shock (invariably leading to death within 30 min) was obviously associated with a dramatic decrease in tissue blood flow and with profound modifications of several blood parameters leading to metabolic acidosis: decrease in arterial and venous pH, bicarbonate and BE, decrease in arterial pCO2 and in venous pO2 and SO2, increase in arterial pO2, venous pCO2 and venous lactate. The i.v. bolus injection of protirelin tartrate (TRH-T, 4 mg/kg), which produces a prompt and sustained reversal of the shock condition, caused a rapid increase in venous pO2, pCO2 and SO2; on the other hand, arterial and venous pH, bicarbonate and BE continued to decrease--and venous lactate to increase during the first few minutes after treatment. However venous pCO2 and lactate, as well as arterial and venous pH, returned to the pre-bleeding values within 60 min after treatment. The data are in keeping with the TRH-T-induced improvement of circulatory and respiratory functions, with mobilization of the residual blood from its capillary pooling and consequent immission of acid metabolites into the blood stream.

Acidosis↗

Oxytocin-induced inhibition of feeding and drinking: no sexual dimorphism in rats.

The effect of oxytocin on feeding and drinking behaviours was compared in male and female rats. Dose-dependent feeding and drinking inhibition was observed in either sex to about the same degree, both following intracerebroventricular or intraperitoneal administration. The results were obtained whether in animals with free access to food and water or in schedule-fed animals fasting for 21h and in two different models of thirst (water deprivation for 16h, s.c. administration of hypertonic saline). These data show that there is no sexual dimorphism in oxytocin-induced inhibition of feeding and drinking.

Animals↗

Afferent vagal fibres and central cholinergic mechanisms are involved in the TRH-induced reversal of haemorrhagic shock.

In a model of haemorrhagic shock causing the death of all saline-treated rats within 25.8 +/- 2.7 min after treatment, the intravenous injection of thyrotropin-releasing hormone tartrate (TRH-T) at the dose of 4 mg/kg induces a prompt and sustained increase of arterial pressure and pulse amplitude, with survival of all rats. Bilateral vagotomy, atropine sulphate (2 mg/kg intraperitoneally) and hemicholinium-3 (20 micrograms/rat intracerebroventricularly) partially prevent the TRH-T-induced shock reversal, whereas atropine methylbromide has no effect. These data indicate that afferent vagal fibres, brain cholinergic neurons and central muscarinic receptors play a role in the mechanism of the anti-shock effect of TRH-T.

Animals↗

Antidiuretic and nephrotoxic effects of putrescine in rats.

Putrescine, intraperitoneally injected either into intact or into hypophysectomized rats, caused a reduction in urine volume at doses of 200-300 mg/kg. At doses of 100 mg/kg or more, there was also a significant loss of potassium. The highest dose (300 mg/kg) caused haemoglobinuria, proteinuria, increased natriuresis, increased urinary osmolarity, reduced aldosteronaemia, ectasis of glomerular capillaries and tubular damage. The underlying mechanism(s) are probably mostly linked to the strong cationic charge of putrescine and to its binding to fixed anions of tubular-cell membrane.

Animals↗

Influence of the selective cholecystokinin antagonist L-364,718 on pain threshold and morphine analgesia.

The intracerebroventricular injection of the cholecystokinin-A receptor antagonist L-364,718, at the doses of 0.5, 5, 10 or 20 micrograms/mouse, while having no effect on pain threshold (hot plate, 51 degrees C), antagonized the analgesic activity of morphine (10 mg/kg i.p.). This effect was obtained with a dose of 10 micrograms/mouse and was associated with a reduction of brainstem opiate-binding sites.

Analgesia↗

In vitro expansion of CD3/TCR- human thymocyte populations that selectively lack CD3 delta gene expression: a phenotypic and functional analysis.

Highly purified CD1-3-4-8- human thymocytes were obtained by panning techniques combined with cell depletion with antibody-coated magnetic beads. Most of these cells expressed cytoplasmic CD3 antigen, as assessed by mAbs known to react with the CD3 epsilon chain. After culture with low doses of PMA (0.5 ng/ml) and subsequent addition (at 24 h) of recombinant interleukin 2 (rIL-2; 100 U/ml) cells underwent extensive proliferation (40-60-fold of the initial cell input after 2 wk). The majority of the proliferating cells were CD3-TCR-. The remaining cells (5-40%) were represented by CD3+ TCR gamma/delta+ (BB3- A13+) cells. Further removal of CD3+ TCR-gamma/delta+ cells resulted in highly purified CD3- populations that further proliferated in culture with no substantial phenotypic changes. When CD3+ thymocytes were cultured under the same experimental conditions, only CD3+ TCR-alpha/beta+ cells could be detected, thus indicating that PMA did not affect the surface expression of the CD3/TCR complex, but rather induced preferential growth of CD3- thymocytes. Surface marker analysis of cultured CD3- thymocytes showed that they were homogeneously CD7+, whereas low proportions of cells expressed CD2 and CD8 antigens. Among the natural killer (NK) cell markers, CD56 was highly expressed by all cells, whereas CD16, CD57, CD11b, NKH2, and GL183 were absent. Importantly, these cells were different from peripheral NK cells, as 80-95% of them expressed cytoplasmic CD3 antigen. Functional analysis revealed a strong cytolytic activity against both NK-sensitive (K562) and NK-resistant (M14, Daudi) human target cells. In a redirected killing assay against the Fc gamma R+ P815 cells, mAbs specific for triggering molecules including CD3, CD2, and CD16 failed to augment target cell lysis, while a strong cytolytic effect was induced by PHA. In addition, PHA alone or in combination with PMA induced tumor necrosis factor alpha (TNF-alpha) and interferon gamma (IFN-gamma) (but not IL-2) production by CD3- thymocytes. Cloning of fresh CD1-3-4-8-thymocytes in the presence of PMA and rIL-2 resulted in CD3-CD56+ clones that displayed a pattern of cytolytic activity and lymphokine production similar to that of the polyclonal populations. Northern blot analysis of transcripts coding for CD3/TCR molecules revealed the presence of CD3 zeta, epsilon, and gamma transcripts, while CD3 delta was undetectable. Mature transcripts for both gamma and delta TCR chains could be detected, whereas no TCR-alpha mRNA and only a truncated (1.0 kb) form of TCR-beta mRNA were revealed.(ABSTRACT TRUNCATED AT 400 WORDS)

Antigens, CD↗

Influence of gonadotropin-releasing hormone on castration-induced 'depression' in mice: a behavioral and binding study.

Long-term (33-35 days) castration caused a significant increase in the duration of immobility of male and female mice in the tail suspension test (an animal model of depression), and a significant decrease in the maximum number (Bmax) of [3H]imipramine binding sites in the cerebral cortex of male mice. In the tail suspension test, gonadotropin-releasing hormone (GnRH), s.c. injected 3 times at 3-h intervals at doses of 0.2, 2 or 20 micrograms/kg, did not significantly modify the duration of immobility of castrated animals and did not reduce that of sham-operated ones, while desipramine (20 mg/kg s.c. 1 h before testing) restored immobility to normal in castrated animals and reduced it significantly in sham-operated ones. The same treatment schedule with GnRH produced an increase in the number of [3H]imipramine Bmax in cortical membranes that was statistically significant at the dose of 2 micrograms/kg. It is concluded that the castration-induced depression-like behavior in mice seems not to be due to the decreased levels and release of GnRH, and that GnRH has no antidepressant-like effect in mice, at least at our dose levels; however, GnRH seems to increase the number of cortical [3H]imipramine binding sites.

Animals↗

Circulatory and respiratory consequences of massive hemorrhage are reversed by protoveratrines.

In a rat model of severe hypotension and respiratory depression induced by step-wise bleeding, protoveratrines cause a prompt and sustained improvement of cardiovascular and respiratory functions, both in anesthetized and in conscious animals, seemingly through a magnification of the reflex response originated by the chemoreceptors of aortic and carotid bodies. The restoration of cardiovascular function is attributable to an increase both in total peripheral resistance and cardiac output. The finding could provide the basis for a new approach to the first-aid management of massive blood losses.

Animals↗

Inhibition of feeding by ACTH-(1-24): behavioral and pharmacological aspects.

The time course of the behavior of rats fasted for 24 h was analyzed with observation starting either 10 or 60 min after the i.c.v. administration of ACTH-(1-24) (4 micrograms/animal). The anorectic effect of this peptide was direct and specific because it could be dissociated in time from the grooming-inducing effect. The effect is a central one, not linked either to an interaction with the peripheral feeding-regulatory system, or to the release of adrenal steroids. ACTH-(1-24), like corticotropin-releasing factor (CRF), is capable of antagonizing the stimulation of feeding seen during starvation, insulin (10 IU/kg s.c.)-induced hypoglycemia, stimulation of GABAergic (muscimol, 250 ng/rat i.c.v.), noradrenergic (norepinephrine, 20 micrograms/rat i.c.v.) or opioidergic systems. The data suggest that both CRF and ACTH may be considered as putative mediators in the production of stress-induced anorexia.

Adrenalectomy↗

Sexual behavior of aging male rats is stimulated by oxytocin.

The effect of oxytocin on male sexual behavior was investigated in sexually normal or sexually sluggish 20-month-old rats. Rats were tested seven times, at weekly intervals, for copulatory behavior in the presence of receptive females. Oxytocin (0.1 microgram), injected intraperitoneally 60 min before the eighth test, significantly shortened the mount, intromission and ejaculation latencies and post-ejaculation intervals, the effect being proportionately greater in the sexually sluggish rats. These data confirm that oxytocin plays a facilitatory role in mating behavior and suggest that it may prove useful in conditions of copulatory inadequacy.

Aging↗

Brain M3 muscarinic receptors are involved in the ACTH-induced reversal of hemorrhagic shock.

In an experimental model of bleeding-induced hemorrhagic shock causing the death of all saline-treated rats within 30 min, the intravenous injection of ACTH-(1-24) at the dose of 160 micrograms/kg induced a sustained reversal of the shock condition, with almost complete recovery of blood pressure, pulse amplitude, respiratory rate, heart rate, and 100% survival, at least for the 2 h of observation. This effect of ACTH-(1-24) was prevented by the intracerebroventricular injection of 4-DAMP (a highly selective antagonist for M1 and M3 muscarinic receptors), but unaffected by the intracerebroventricular injection of pirenzepine (a highly selective antagonist for M1 muscarinic receptors). These data indicate that an essential step in the complex mechanism of the ACTH-induced shock reversal may be the activation of brain M3 muscarinic receptors.

Adrenocorticotropic Hormone↗

Effect of clenbuterol on sexual behavior in male rats.

The intraperitoneal injection of clenbuterol, a beta-2 adrenoceptor agonist which readily penetrates into the brain, modified the copulatory pattern of male rats. In sexually vigorous rats, the acute administration of clenbuterol at the dose of 0.1 or 1 mg/kg reduced the number of mounts and/or intromissions and increased the postejaculation interval, while the repeated administration (7 days) of a dose of 0.1 mg/kg/day had no effect. In sexually sluggish rats, both the acute (0.01 or 0.1 mg/kg) and repeated (0.1 mg/kg/day x 7 days) administration of clenbuterol increased the percent of animals achieving ejaculation and succeeding in initiating a new copulatory series within the respective cutoff times, and reduced mount, intromission and ejaculation latencies, as well as the postejaculation interval. These data show that clenbuterol negatively affects the copulatory behavior of sexually vigorous male rats, but improves that of sexually sluggish ones, and provide further evidence that central beta-receptor activation produces behavioral effects.

Animals↗

Oxytocin inhibits food and fluid intake in rats.

Increasing evidence indirectly suggests a role for oxytocinergic neurons in the control of ingestive behaviors. The present study was aimed at directly investigating a possible effect of oxytocin on food and water intake in rats. Oxytocin, whether administered intracerebroventricularly (ICV) (1-10 micrograms/rat) or intraperitoneally (IP) (375-3,000 micrograms/kg) dose dependently inhibited food intake in freely feeding animals; in schedule-fed animals fasting for 21 h, oxytocin not only reduced food intake but also reduced the time spent eating and increased the latency to first meal. On the other hand, oxytocin antagonist d(CH2)5Tyr(Me)-[Orn8]-vasotocin, ICV injected at the dose of 10 micrograms/rat, increased food intake and time spent eating and reduced the latency to first meal; moreover, it completely prevented the effect of oxytocin. Water intake was studied both in freely drinking animals and in three different models of thirst (water deprivation, hypertonic saline administration, angiotensin II injection). In all cases, oxytocin dose dependently inhibited water intake, in a dose range of 0.1-10 micrograms/rat (ICV) or 93-750 micrograms/kg (IP). In the water deprivation model, ICV pretreatment with d(CH2)5Tyr(Me)-[Orn8]-vasotocin completely prevented the antidipsogenic effect of oxytocin. In conclusion, these data show that oxytocin directly inhibits food and water intake in rats, the effect being specifically mediated by brain oxytocin receptors. This may support the idea that the brain oxytocinergic system plays an important role in the regulation of ingestive behaviors.

Animals↗

NPY-induced inhibition of male copulatory activity is a direct behavioural effect.

In adult, sexually-experienced male rats, the intracerebroventricular injection of NPY caused a dose-related inhibition of copulatory behaviour, all parameters (mount, intromission and ejaculation latencies, mount and intromission frequencies, mean inter-intromission interval, post-ejaculatory interval) being significantly worsened at the dose of 8 micrograms/rat. Since rats were deprived of food during the behavioural test, it is concluded that inhibition of sexual behaviour is a 'true', direct behavioural effect of NPY, not due to a shift towards increased feeding.

Animals↗

Early treatment with ACTH-(1-24) in a rat model of hemorrhagic shock prolongs survival and extends the time-limit for blood reinfusion to be effective.

The ability of ACTH-(1-24) to prolong survival and to extend the deadline for effective blood reinfusion has been studied in a model of lethal hypovolemic shock in the rat. Anesthetized rats were bled to a mean arterial pressure of 18 to 25 mm Hg and then subjected to one of the following iv treatments: a) saline; b) ACTH-(1-24), 160 micrograms/kg; c) blood reinfusion; d) ACTH-(1-24), 160 micrograms/kg; c) blood reinfusion; d) ACTH-(1-24), with saline 5 min after bleeding died within 0.05 h. On the other hand, the treatment with ACTH-(1-24) induced an almost complete and sustained recovery of cardiovascular and respiratory functions associated with a survival time of 44 +/- 18 h, while four of six rats reinfused with the withdrawn blood were still alive 15 days later. The time-lapse between bleeding and treatment was of crucial importance, and neither ACTH-(1-24) injection nor blood reinfusion had any effect if performed 25 min after bleeding. However, treatment with ACTH-(1-24) shortly after bleeding (5 min) greatly improved the effect of a later blood reinfusion. These data indicate that ACTH-(1-24) can prolong survival and permit the time-lapse between blood loss and blood reinfusion to be extended.

Animals↗

Intracerebroventricular injection of hemicholinium-3 prevents the ACTH-induced, but not the physostigmine-induced, reversal of hemorrhagic shock in rats.

In rats bled to hypovolemic shock, the intracerebroventricular injection of hemicholinium-3 (20 micrograms/rat) completely prevented the shock reversal induced by the intravenous injection of ACTH (1-24) (160 micrograms/kg), but had no influence on the shock reversal induced by the intravenous injection of physostigmine (70 micrograms/kg). These data indicate that brain cholinergic neurons are involved in the anti-shock effect of ACTH-peptides, but not in that of centrally acting cholinergic drugs.

Adrenocorticotropic Hormone↗

[Hereditary spherocytosis and splenectomy].

The case of a sixteen year old girl with hereditary spherocytosis, submitted to splenectomy, is presented. After operation the patient had four serious infections; for this reason she is now treated by antibiotic prophylaxis.

Adolescent↗