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R Bernardini

Publications and source records attributed to R Bernardini.

At least 73 records · Page 4Linked to original sources

Eel calcitonin induces creatine kinase BB activity in the rat kidney medulla.

We have studied the effect of intravenous injection of eel calcitonin (ECT) on creatine kinase E.C.2.7.3.2. BB isozyme (CKBB) in the kidney of male Wistar rats. CKBB immunoreactivity was detected by the peroxidase-antiperoxidase method. Eel calcitonin increased CKBB immunoreactivity in the renal medulla in a dose-dependent fashion. Its effect peaked at 2 h and lasted up to 24 h. The distribution of activated CKBB in the kidney occurs in the same areas where highly specific CT-binding sites have been previously demonstrated, and is in agreement with the current concepts on renal actions of this hormone.

Animals↗

Chronic sodium or chloride depletion upregulates angiotensin II receptors in the anterior pituitary lobe of young rats.

The effect of chronic (35 days) and selective sodium or chloride depletion on the regulation of angiotensin II receptors in the anterior pituitary gland of young male rats was studied by quantitative autoradiography. Both chronic sodium or chloride depletion produced significant extracellular fluid volume contraction, stimulation of the circulating renin-angiotensin system and increased the number of angiotensin II receptors in the anterior pituitary gland. Changes in angiotensin II receptors in both sodium- and chloride-depleted animals were associated with increased plasma prolactin levels. Our results suggest a participation of the pituitary renin-angiotensin system in the physiological response and/or possible adaptation to chronic sodium or chloride depletion. Extracellular fluid volume contraction and profound chronic stimulation of the circulating renin-angiotensin system may contribute to regulate anterior pituitary angiotensin II receptors and may influence prolactin release.

Aldosterone↗

Rat hypothalamic corticotropin-releasing hormone secretion in vitro is stimulated by interleukin-1 in an eicosanoid-dependent manner.

We studied the effect of interleukin-1 alpha (IL-1) on corticotropin-releasing hormone (CRH) secretion by explanted rat hypothalami in vitro. We also assessed possible mediation of arachidonic acid metabolites on IL-1-stimulated CRH secretion, by preincubating hypothalami with the cyclooxygenase inhibitor indomethacin (INDO, 1 microM), the lipoxygenase and cyclooxygenase inhibitor eicosatetraynoic acid (ETYA, 10 microM), or the lipoxygenase inhibitor nordihydroguaiaretic acid (NDGA, up to 30 microM). In additional experiments, prostaglandins (PG) E2 and F2 alpha were added to the cultures treated with INDO or ETYA. Finally, we investigated the effect of dexamethasone (DEX) on IL-1-stimulated CRH secretion. IL-1 stimulated immunoreactive CRH (iCRH) secretion by explanted hypothalami in a concentration-dependent fashion. Both INDO and ETYA inhibited IL-1-(10nM)-stimulated iCRH secretion, whereas NDGA did not have any effect. The addition of PGF2 alpha (10 nM) restored the secretion of iCRH inhibited by INDO. DEX treatment significantly inhibited IL-1-stimulated iCRH release. Our results suggest that the stimulatory effect of IL-1 on the hypothalamic CRH neuron is mediated by the cyclooxygenase metabolites of arachidonic acid, and, among others, by PGF2 alpha.

5,8,11,14-Eicosatetraynoic Acid↗

Procaine and lidocaine stimulate corticotropin-releasing hormone secretion by explanted rat hypothalami through a sodium conductance-independent mechanism.

We have previously shown that procaine and lidocaine stimulate corticotropin-releasing hormone (CRH) secretion by explanted rat hypothalami. This effect was of interest in light of the fact that both lidocaine and CRH administration to experimental animals can produce kindled seizures which cross-sensitize with electrically kindled seizures, and of recent data suggesting that limbic hyperexcitability, perhaps mediated through CRH, may be involved in the pathophysiology of affective illness. Because a prominent effect of the local anesthetics is to decrease neuronal firing by blocking sodium conductance, we were surprised by the capacity of these agents to cause CRH secretion and pituitary-adrenal activation and wished to further elucidate the possible mechanism(s) of these effects. To accomplish this, we first explored the effect of the sodium channel blocker tetrodotoxin (TTX) on basal and stimulated immunoreactive CRH (iCRH) secretion by explanted rat hypothalami. In contrast to procaine and lidocaine, TTX inhibited rather than stimulated iCRH secretion. Moreover, TTX inhibited lidocaine-induced iCRH secretion but had no influence on the response of the CRH neuron to procaine. To explore other potential mechanisms of action, we examined the effect of the calcium channels blocker verapamil and of pharmacologic antagonists to serotonergic, alpha-adrenergic and cholinergic receptors. The latter was particularly of interest because of structural similarities between procaine or lidocaine and acetylcholine (ACh) and because it has been shown that these anesthetic agents interact with the ACh receptor. Verapamil and blockade of serotonergic, alpha-adrenergic and cholinergic receptors did not inhibit the effects of procaine or lidocaine on iCRH secretion, whereas both GABA and dexamethasone exerted inhibitory effects.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Interactions between tumor necrosis factor-alpha, hypothalamic corticotropin-releasing hormone, and adrenocorticotropin secretion in the rat.

We studied the effects of tumor necrosis factor-alpha (TNF alpha), a macrophage-derived pleiotropic cytokine produced during the inflammatory/immune response, on the function of the hypothalamic-pituitary-adrenal (HPA) axis of the rat. Intravenous injections of TNF alpha stimulated plasma ACTH and corticosterone secretion in a dose-dependent fashion. This effect was inhibited by a rat CRH antiserum that was administered to the rats 1 h before the TNF alpha injections. This suggested that CRH is a major mediator of the HPA axis response to TNF alpha. We subsequently evaluated the ability of TNF alpha to influence CRH and ACTH secretion in vitro by explanted rat hypothalami in organ culture and by dispersed rat anterior pituicytes in primary culture respectively. Hypothalami were incubated for 40 min with graded concentrations of TNF alpha (10 pM to 1 microM). This cytokine stimulated CRH secretion in a dose-dependent fashion, with an EC50 of 6.7 x 10 pM (P less than 0.05). Preincubation of hypothalamic explants with dexamethasone, indomethacin (1 microM), eicosatetraynoic acid (10 microM), or nordihydroguaiaretic acid (30 microM) resulted in inhibition of TNF alpha-stimulated CRH secretion (P less than 0.05). Interestingly, 4-h incubation with TNF alpha had no effect on ACTH secretion from rat anterior pituicytes at a concentration of 10 nM. Higher concentrations of TNF alpha (100 nM and 1 microM), however, elicited a dose-dependent increase in the ACTH concentration in the medium. Our results suggest that TNF alpha represents one of the immune response mediators that directly or via stimulation of other cytokines act as activators of the HPA axis during immune/inflammatory reactions. This effect appears to be glucocorticoid suppressible and eicosanoid mediated. The primary site of action of TNF alpha appears to by the hypothalamic CRH-secreting neuron. Some pituitary and adrenal effects of TNF alpha, however, cannot be excluded.

5,8,11,14-Eicosatetraynoic Acid↗

Effects of peripheral benzodiazepine receptor ligands on hypothalamic-pituitary-adrenal axis function in the rat.

High concentrations of the "peripheral" benzodiazepine (pBZD) binding site ("receptor") have been described in the hypothalamus, the pituitary and the adrenal glands. This study was undertaken to examine the effects of ligands of this binding site on the hypothalamic-pituitary-adrenal axis (HPA). To accomplish this we administered graded doses of the pBZD receptor agonist 4-chloro-diazepam (Ro5-4864) i.v. to catheterized, freely moving adult male Sprague-Dawley rats. Serial blood samples for plasma adrenocorticotropin hormone (ACTH) and corticosterone determinations were drawn from the catheter before and after the injection of the drug. Ro5-4864 significantly stimulated ACTH and corticosterone secretion in a dose-dependent fashion. To examine whether this effect could be antagonized by the pBZD binding site antagonist PK 11195, we treated rats with PK 11195 at doses 10- and 50-times higher than Ro5-4864 before administration of a maximally effective dose of Ro5-4864. Neither dose of PK 11195 antagonized Ro5-4864-induced plasma ACTH or corticosterone elevations. However, this agent, given alone, stimulated ACTH and corticosterone release. Similarly, carbamazepine (CBZ), which binds to the pBZD binding site with low affinity, stimulated weakly the HPA in vivo, reaching statistical significance only at the highest dose tested. To examine the site(s) of action of these compounds on the HPA, we evaluated their effects on hypothalamic corticotropin-releasing hormone (CRH) and pituitary ACTH secretion in vitro. Ro5-4864 stimulated hypothalamic CRH, but not pituitary ACTH secretion. Neither PK 11195 nor CBZ had any agonist effect on hypothalamic CRH secretion in vitro, whereas both antagonized Ro5-4864-induced CRH secretion.(ABSTRACT TRUNCATED AT 250 WORDS)

Adrenocorticotropic Hormone↗

A central nervous system defect in biosynthesis of corticotropin-releasing hormone is associated with susceptibility to streptococcal cell wall-induced arthritis in Lewis rats.

We have recently found that susceptibility to streptococcal cell wall (SCW)-induced arthritis in Lewis (LEW/N) rats is due, in part, to defective inflammatory and stress mediator-induced activation of the hypothalamic-pituitary-adrenal (HPA) axis. Conversely, the relative arthritis resistance of histocompatible Fischer (F344/N) rats is related to their intact responses to the same stimuli. Specifically, LEW/N rats, in contrast to F344/N rats, have markedly impaired plasma corticotropin and corticosterone responses to SCW, recombinant human interleukin 1 alpha, the serotonin agonist quipazine, or synthetic rat/human corticotropin-releasing hormone (CRH). To explore the mechanism of this defect, we examined the functional integrity of the hypothalamic CRH neuron in LEW/N rats compared to F344/N rats. LEW/N rats, in contrast to F344/N rats, showed profoundly deficient paraventricular nucleus CRH mRNA levels and hypothalamic CRH content in response to SCW. Compared to F344/N rats, there was no increase in LEW/N hypothalamic CRH content or CRH release from explanted LEW/N hypothalami in organ culture in response to recombinant interleukin 1 alpha. These data provide strong evidence that the defective LEW/N corticotropin and corticosterone responses to inflammatory and other stress mediators, and the LEW/N susceptibility to experimental arthritis, are due in part to a hypothalamic defect in the synthesis and secretion of CRH. The additional finding of deficient expression in LEW/N rats of the hypothalamic enkephalin gene, which is coordinately regulated with the CRH gene in response to stress, suggests that the primary defect is not in the CRH gene but is instead related to its inappropriate regulation.

Animals↗

Arachidonic acid metabolites modulate rat hypothalamic corticotropin-releasing hormone secretion in vitro.

Arachidonic acid metabolites have been shown to modulate the secretion of various hormones, including luteinizing hormone, growth hormone and adrenocorticotropin. In this paper we describe the effect of a series of eicosanoids on hypothalamic secretion of corticotropin-releasing hormone (CRH) in vitro. Explanted rat hypothalami in culture were exposed to prostaglandins (PG) F2 alpha or E2, thromboxane (TX) B2, the TXA2 receptor agonist U-49,619 and leukotrienes (LT) B4, C4 and D4 at concentrations ranging from 10(-15) to 10(-5) M. PGE2, LTD4 and TXB2 did not alter hypothalamic CRH secretion. On the other hand, the remaining eicosanoids tested induced a significant increase of hypothalamic CRH secretion (p less than 0.05). The concentration of 10(-11) M dexamethasone inhibited the effect of stimulatory eicosanoids on CRH secretion. The CRH response to U-49,619 was completely prevented by the TXA2 receptor antagonist SQ-29,548. The latter also inhibited serotonin (5-HT)-, acetylcholine (ACh)- and PGF2 alpha-induced CRH release. Indomethacin was capable of blocking the secretion of CRH induced by 5-HT and ACh. In addition, PGE2 inhibited the increase of CRH secretion induced by PGF2 alpha, 5-HT and ACh. These findings suggest that eicosanoids may be involved in the regulation of hypothalamic CRH secretion, either as autocrine/paracrine or as endocrine factors.

Acetylcholine↗

The alkyl-ether phospholipid platelet-activating factor is a stimulator of the hypothalamic-pituitary-adrenal axis in the rat.

Platelet-activating factor (PAF) is a naturally occurring alkyl-ether phospholipid which serves as an extracellular mediator in various cellular processes. Here we examined the effects of PAF on the activity of the hypothalamic-pituitary-adrenal axis in vivo and in vitro. PAF injected iv to rats (125, 250, and 500 ng/100 g BW) caused significant stimulation of pituitary ACTH and adrenal corticosterone secretion. The peak of PAF effect was recorded 10 min after the injection. Intraperitoneal injection of the PAF receptor antagonist BN 52021 prevented the ACTH-releasing effect of PAF. In explanted rat hypothalami maintained viable in vitro, PAF stimulated immunoreactive CRH secretion in a bell-shaped dose-response fashion. The maximal stimulatory effect occurred at the concentration of 10 nM. Higher concentrations appeared to cause desensitization. Alprazolam (1 microM) and BN 52021 (1 microM), two structurally different PAF receptor antagonists, inhibited this effect. The inhibitors of arachidonic acid metabolism, indomethacin, eicosatetraynoic acid, and the calcium channel blocker verapamil, inhibited PAF-stimulated CRH secretion, suggesting mediation by Ca2+ influx and phospholipase-A2 activation. In addition, we found that 1 nM PAF weakly stimulated ACTH secretion by dispersed rat pituicytes. This stimulatory effect of PAF was also inhibited by the receptor antagonists alprazolam and BN 52021. Our data suggest that PAF plays a role in the activation of the hypothalamic-pituitary-adrenal axis and glucocorticoid secretion and can perhaps serve as a mediator in the interactions of the immune system with the central nervous system.

Adrenocorticotropic Hormone↗

[Importance of a particular formula of soybean milk without S2 globulin, in the treatment of allergy to cow's milk proteins].

Replacing cow's milk with a soybean milk is one of the first measures which are commonly taken with babies suffering from cow's milk protein allergy. Unfortunately soybean can induce sensitization, too, with a variable percentage (ranging from 12 to 80%) according to the different Authors, due to the presence of allergenic proteins, among which the most important one seems to be S2 globulin. An excellent tolerability has been reported in a study carried out with 20 babies suffering from cow's milk protein allergy besides a good palatability of the product with a solution of symptoms in 87.3% of the cases. Only in 16.7% of the treated babies intolerance has been reported and therefore we can conclude that soybean milk has proved to be an excellent substitute of cow's milk in babies suffering from cow's milk protein allergy.

Child, Preschool↗

Regulation of rat hypothalamic corticotropin-releasing hormone secretion in vitro: potential clinical implications.

In summary, 5HT, ACh, NE, E and DA appear to stimulate hypothalamic CRH secretion whereas activation of the GABA/BZD system seems to decrease the responsivity of the CRH neuron to stimulatory neurotransmitters (Fig. 6). Hypothalamic CRH released from the hypothalamic neuron not only activates the HPA axis, but also stimulates the locus coeruleus-norepinephrine system (LC) and the central sympathetic system (CSS). CRH also induces secretion of hypothalamic POMC gene-derived peptides, such as ACTH, beta-EP, alpha-MSH and CLIP. These peptides as well as CRH itself, decrease the responsivity of the CRH neuron to stimulatory inputs. In addition, glucocorticoids restrain the activity of both the CRH neuron and the locus coeruleus and may also inhibit the secretion of POMC gene-derived peptides by the POMC neurons of the arcuate nucleus. Hypothalamic CRH secretion is regulated also by a number of mediators of the immune response, such as IL-1, IL-2, TNF-alpha and PGF2 alpha, PAF and EGF. Although the physiologic significance of this regulation is largely unknown, it is tempting to speculate that cytokines and mediators of inflammation released in vivo may activate the HPA axis to trigger a glucocorticoid-mediated counter-regulatory mechanism to restrain the immune system (Fig. 7). (Formula: see text). Fig. 7. Schematic representation of the interactions between the HPA axis and the immune system. Continuous lines represent stimulatory inputs and interrupted lines represent inhibitory inputs. In conclusion, our in vitro hypothalamic organ culture system allowed us to examine the regulation of CRH secretion in a direct and specific manner. Some of our observations may help with better understanding of the role played by CRH in the complex symptomatology of stress. In making extrapolations and interpretations from the in vitro data, however, we should try to keep in mind the words of Claude Bernard, "... If we break up a living organism by isolating its different parts it is only for the sake of ease in analysis and by no means in order to consider them separately. Indeed when we wish to ascribe to a physiological quality its value and true significance we must always refer it to this whole and draw our final conclusions only in relation to the effects in the whole".

Animals↗

Effect of cholinergic agonists and antagonists on rat hypothalamic corticotropin-releasing hormone secretion in vitro.

Several lines of experimental evidence suggest that acetylcholine (ACh) is excitatory to the hypothalamic-pituitary-adrenal (HPA) axis. Since previous experiments have shown that ACh does not affect pituitary adrenocorticotropin secretion in vitro, we hypothesized that ACh stimulates the HPA axis by causing hypothalamic corticotropin-releasing hormone (CRH) secretion. We examined this hypothesis using an organ culture system that measures the ability of single rat hypothalami to secrete immunoreactive CRH (IR-rCRH) in vitro. ACh stimulated hypothalamic IR-rCRH secretion in a dose-dependent fashion, at concentrations ranging from 3.3 x 10(-10) to 10(-5) M. This effect was antagonized by the simultaneous presence of atropine and hexamethonium, a muscarinic and a nicotinic receptor antagonist, respectively (p less than 0.05). Further evidence for the cholinergic regulation of the CRH neuron was provided by the findings that both carbachol, a muscarinic receptor agonist, and nicotine, a nicotinic receptor agonist, stimulated IR-rCRH secretion in a dose-dependent fashion. These effects were antagonized by atropine and hexamethonium, respectively, suggesting that both muscarinic and nicotinic receptors are involved in the process. ACh stimulated hypothalamic IR-rCRH secretion in the presence of phentolamine, an alpha-adrenergic antagonist, and ritanserin, a serotonin2 receptor antagonist, suggesting that the cholinergic stimulation of CRH secretion is not mediated by alpha-adrenergic or serotonergic interneurons. We conclude that ACh stimulates hypothalamic CRH secretion via both muscarinic and nicotinic receptor mechanisms.(ABSTRACT TRUNCATED AT 250 WORDS)

Acetylcholine↗

Effects of salmon calcitonin on plasma renin activity and systolic blood pressure in the rat.

Salmon calcitonin, centrally injected, increased plasma renin activity and blood pressure in rats. It is possible that the peptide through an action on the central serotonergic tone stimulated plasma renin activity with subsequent enhancement of blood pressure. Conversely, peripheral administration of the peptide increased plasma renin activity but did not cause changes in blood pressure. Probably, the enhancement of renin may be a physiological response to the renal activity of calcitonin; however, this activity does not seem to involve urinary prostaglandins.

Animals↗

Neuroendocrine and behavioral effects of flunarizine in young and old rats.

Neuroendocrine and behavioral effects following an acute or chronic treatment with the calcium antagonist, flunarizine, have been studied in young and old rats. Both in young and old rats, acute administration of flunarizine (2 mg/kg) failed to modify plasma prolactin (PRL) levels, as measured at 8.00 a.m., 4.00 p.m. and 12.00 p.m. A chronic treatment with flunarizine (0.5 mg/kg/day, for 20 days) in young rats was followed by a relevant, albeit statistically not significant, increase in plasma PRL levels, as measured at 8.00 a.m. and 4.00 p.m., and by a significant decrease at 12.00 p.m. A shift of nocturnal peak of plasma PRL levels from 12.00 p.m. to 4.00 a.m. was observed in these animals. A chronic treatment with flunarizine in old rats was followed by a significant increase in plasma PRL levels, as measured at 12.00 p.m. The acquisition of active avoidance behavior was studied in a shuttle-box test. Acute administration of flunarizine failed to change the performance of young and old rats in acquiring the behavioral response, as measured by the total number of conditioned avoidance responses (CARs) and the percentage of learners. When flunarizine was administered chronically, a decrease in CARs and learners was observed both in young and old rats. This was accompanied by a significant increase in the percentage of animals that froze during the acquisition session. No significant effect was found in young and old rats tested in a "despair" test after a chronic treatment with flunarizine.

Age Factors↗

Pharmacodynamic properties of adrenal cortical extracts in comparison to synthetic corticosteroid mixture in the rat.

The effects of a total extract of adrenal cortex on corticosterone and ACTH plasma levels have been studied in the rat, either during circadian rhythms or in conditions of stress, in comparison to the effects of a synthetic corticosteroid mixture. A total extract of adrenal cortex, acutely and chronically administered at low and high doses, showed an inhibitory effect on plasma steroids and ACTH, whereas a synthetic corticosteroid mixture was more effective in producing such an inhibition. On the other hand, rats treated with a total extract of adrenal cortex responded better to stress than animals treated with a synthetic corticosteroid mixture. This difference may be due to the presence in the total extract of the adrenal cortex of certain substances having stimulatory properties on the steroidogenesis and/or on the activity of the hypothalamus-hypophysis-adrenal axis.

Adrenal Cortex↗

Transglutaminase activity in Yoshida ascites tumor cells.

Transglutaminase may be an important intracellular regulator of protein function through its ability to catalyze the calcium-dependent covalent linkage of primary amines to glutamine residues in peptide linkage with the generation of ammonia. This study provides further evidence that a major alteration in tumor cells is the marked decline in the expression of transglutaminase activity. This may alter its known protein cross-linking activity and favor lack of differentiation and proliferation.

Acyltransferases↗

[Neuroendocrine modulation of haloperidol-induced catalepsy].

Evidence has been accumulated implicating sex hormones as possible modulators of extrapyramidal motor function. In the present study we have investigated the effects of estrogens, progesterone, testosterone, prolactin and calcitonin on behavioral parameters related to nigro-striatal dopaminergic system, such as haloperidol-induced catalepsy in male rats. It was found that 7-days estradiol benzoate treatment (5 micrograms/rat/day) significantly increases haloperidol-induced catalepsy, suggesting a possible antidopaminergic activity of estrogens. On the other hand, prolactin facilitates nigro-striatal dopaminergic transmission. Interestingly, 7 day treatment with medroxy-acetate progesterone (MAP, 5 mg/Kg, i.p.) brings about a trend to a decrease in haloperidol-induced catalepsy, while no significantly effect was observed following acute MAP administration at the same dose. So, it is tempting to speculate that chronic progestinic treatment may result in an increase in dopaminergic tonus. Testosterone, acutely administered (5mg/kg.s.c.) induces changes similar to those observed following progesterone administration. Finally, also calcitonin is able to influence haloperidol-induced catalepsy by markedly increasing it.

Androgens↗