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Biomedical subjects

A G Nasello

Publications and source records attributed to A G Nasello.

At least 19 recordsLinked to original sources

A comparative study of morphine treatment regimen prior to mating and during late pregnancy.

Pre-mating treatment of female rats with morphine may have long-term effects. In this study, we analyzed the effects of two types of morphine sulfate pre-treatment: during pre-mating (5.0 mg/kg on alternate days for a total of seven doses) and during pregnancy (3.5 mg/(kgday) for 5 days starting on day 17 of pregnancy during early lactation. In order to evaluate possible morphine-induced behavioral changes, dams were tested for maternal behavior and locomotor activity during early lactation, and striatal and hypothalamic concentrations of dopamine and their metabolites and serum levels of corticosterone were measured. Maternal behavior was disrupted only in animals treated with morphine sulfate during pregnancy and challenged acutely (1.5 mg/kg) during lactation. Pre-mating treatment with morphine sulfate-induced changes in responses with increased locomotor activity, striatal dopamine turnover and serum corticosterone levels. None of these parameters were affected by morphine sulfate pre-treatment during late pregnancy. These data suggest that morphine has specific long-term and sometimes addictive-like effects on actively reproductive female animals that vary with the pre-treatment period, late pregnancy being particularly sensitive for effects on maternal behavior.

3,4-Dihydroxyphenylacetic Acid↗

Prolactin induces adrenal hypertrophy.

Although adrenocorticotropic hormone is generally considered to play a major role in the regulation of adrenal glucocorticoid secretion, several reports have suggested that other pituitary hormones (e.g., prolactin) also play a significant role in the regulation of adrenal function. The aim of the present study was to measure the adrenocortical cell area and to determine the effects of the transition from the prepubertal to the postpubertal period on the hyperprolactinemic state induced by domperidone (4.0 mg kg-1 day-1, sc). In hyperprolactinemic adult and young rats, the adrenals were heavier, as determined at necropsy, than in the respective controls: adults (30 days: 0.16 +/- 0.008 and 0.11 +/- 0.007; 46 days: 0.17 +/- 0.006 and 0.12 +/- 0.008, and 61 days: 0.17 +/- 0.008 and 0.10 +/- 0.004 mg for treated and control animals, respectively; P < 0.05), and young rats (30 days: 0.19 +/- 0.003 and 0.16 +/- 0.007, and 60 days: 0.16 +/- 0.006 and 0.13 +/- 0.009 mg; P < 0.05). We selected randomly a circular area in which we counted the nuclei of adrenocortical cells. The area of zona fasciculata cells was increased in hyperprolactinemic adult and young rats compared to controls: adults: (61 days: 524.90 +/- 47.85 and 244.84 +/- 9.03 microm2 for treated and control animals, respectively; P < 0.05), and young rats: (15 days: 462.30 +/- 16.24 and 414.28 +/- 18.19; 60 days: 640.51 +/- 12.91 and 480.24 +/- 22.79 microm2 ; P < 0.05). Based on these data we conclude that the increase in adrenal weight observed in the hyperprolactinemic animals may be due to prolactin-induced adrenocortical cell hypertrophy.

Adrenal Cortex↗

Morphine pretreatment increases opioid inhibitory effects on maternal behavior.

Ongoing maternal behavior in rats is under the inhibitory influence of opiates. Exposure to drugs of abuse may result in a progressive and enduring enhancement of their reinforcing effects. Little attention has been paid to the possibility that puerperal treatment with morphine may lead to sensitization to this drug, ultimately influencing the effects of opiates on maternal behavior. The aim of the present study was to investigate if the abrupt withdrawal of repeated treatment with morphine chlorhydrate (MC) during late pregnancy and early lactation may influence maternal behavior in lactating rats. The premise that a possible change in sensitivity to the inhibitory effect of MC on maternal behavior would last at least until day 17 of lactation without any reinforcement was tested. In addition, the hypothesis that the MC-induced inhibition would be reversed by the opioid antagonist naloxone was also tested. In all experiments female Wistar rats were treated with MC (5.0 mg/kg/day, subcutaneous [s.c.]) or saline for 7 days starting on the 17th day of pregnancy. After the abrupt discontinuation of long-term treatment, animals were acutely challenged with MC (5.0 mg/kg, s.c.) or saline and tested for maternal behavior in three different experimental situations: first, on days 5, 10, and 17 postpartum (Experiment 1); second, on day 17 postpartum (Experiment 2); third, on day 6 postpartum following naloxone pretreatment (1.0 mg/kg; Experiment 3). In Experiment 1, animals were treated for 7 days with morphine and acutely challenged with MC (group MM). Experimental MM animals showed significantly longer latencies for all maternal behavior parameters than all other groups during all observation days. The other groups (treated with MC for 7 days and acutely challenged with saline, group MS; treated with saline for 7 days and acutely challenged with MC, group SM; and treated with saline for 7 days and acutely challenged with saline, group SS) did not differ significantly from one another. In Experiment 2, in which rats were submitted to a single test on day 17 of lactation, the MM group showed significantly longer latencies for all behavioral parameters as compared to group SM. Previous acute naloxone treatment (Experiment 3) reversed the inhibitory effects of MC on maternal behavior in lactating rats. These data suggest that repeated administration of MC to female rats during late pregnancy sensitizes the animals to the inhibitory effects of opioids on rat ongoing maternal behavior.

Analgesics, Opioid↗

Cholecystokinin modulation of apomorphine- or amphetamine-induced stereotypy in rats: opposite effects.

Stereotyped behavior can be induced by the dopamine agonist apomorphine or by the releasing agent amphetamine. Cholecystokinin influence on dopamine-mediated behaviors has been extensively studied but a real controversy remains. Our purpose was to further characterize the dopamine-cholecystokinin interaction in apomorphine- and amphetamine-induced stereotyped behavior using sulphated cholecystokinin octapeptide (CCK8) and cholecystokinin tetrapeptide (CCK4) treatments. The results showed that CCK8 decreases apomorphine-induced stereotyped behavior and CCK4 has no effect. CCK4 and CCK8 increased the amphetamine-induced stereotyped behavior; CCK4 was more effective. The results confirm the opposite modulation of apomorphine or amphetamine-induced stereotyped behavior by CCK. These data suggest that this modulation is mediated by both CCK receptors on apomorphine-induced and only by CCK(2) receptors on amphetamine-induced stereotyped behavior.

Amphetamines↗

Stimulation of either cholecystokinin receptor subtype reduces while antagonists potentiate or sensitize a morphine-induced excitatory response.

Cholecystokinin peptides (CCK) have been shown to antagonize many opioid-mediated effects. The present study was undertaken to determine whether peripheral injections of cholecystokinin sulphated octapeptide (CCK8), cholecystokinin tetrapeptide (CCK4), the CCK(1) (lorglumide) and the CCK(2) (PD-135,158 and LY-225910) receptor antagonists can influence a classic morphine excitatory effect, i.e. the display of Straub tail reaction in mice (STR). A total of 570 female Balb/C mice were tested. Experiment 1 was undertaken to determine whether i.p. injections of CCK8 or CCK4 can influence STR. Each animal was treated with i.p. injections of saline or CCK8 (10 and 20 nmol/kg) or CCK4 (20 and 40 nmol/kg). After 30 min all animals received an i.p. injection of morphine hydrochloride (10.0 mg/kg). The highest doses of both CCK8 (35% STR) and CCK4 (40% STR) significantly reduced STR as compared to saline (85% STR) treated mice (Fisher test; P < 0.01). In experiment 2 each animal was treated with ip injections of saline or 1.0 mg/kg lorglumide or PD-135,158 fifteen minutes before an injection of morphine at doses ranging from 1.0 to 50.0 mg/kg. In experiment 3 animals were treated with injections of saline, 0.1 or 10.0 mg/kg lorglumide or LY-225910 before an injection of a fixed MC dose (2.0 mg/kg). Both lorglumide and PD-135,158 induced a significant shift to the left in the morphine dose-response curves as well as a significant decrease in ED50 of the STR. ED50 for lorglumide was significantly lower than ED50 for PD-135,158. Both doses of lorglumide and the highest dose of LY-225910 significantly increased the percent of animals displaying STR. Experiment 4 was undertaken to determine whether repeated peripheral injections of morphine or the morphine-potentiating agents CCK(1) (lorglumide) and the CCK(2) (LY-225910) receptor antagonists can induce morphine sensitization. Each animal was treated with 5 daily i.p. injections of saline (control group), 1.5 mg/Kg morphine hydrochloride (group morphine), and 1.0 mg/Kg lorglumide (group LOR) or LY-225910 (group LY). One, two, three and four weeks after the last treatment day, all animals were challenged with one i.p. injection of morphine (1.5 mg/Kg). The morphine, LOR groups and group LY showed a significant increase in percentage of animals displaying STR. These data demonstrate that the blockade of endogenous CCK actions leads to morphine sensitization probably through both CCK receptors. The present data are consistent with the antagonistic effects of CCK and opioids in the control of morphine-induced STR. In addition, these results suggest that both CCK receptors are involved in the modulatory effects of CCK on this morphine effect.

Analgesics, Opioid↗

The brain decade in debate: VIII. Peptide hormones and behavior: cholecystokinin and prolactin.

This article is a transcription of an electronic symposium held on November 28, 2000 in which active researchers were invited by the Brazilian Society of Neuroscience and Behavior (SBNeC) to discuss the advances of the last decade in the peptide field with particular focus on central actions of prolactin and cholecystokinin. The comments in this symposium reflect the diversity of prolactin and cholecystokinin research and demonstrate how the field has matured. Since both peptides play a role in reproductive behaviors, particularly mother-infant interactions, this was the starting point of the discussion. Recent findings on the role of the receptor subtypes as well as interaction with other peptides in this context were also discussed. Another issue discussed was the possible role of these peptides in dopamine-mediated rewarding systems. Both prolactin and cholecystokinin are involved in mechanisms controlling food intake and somatic pain thresholds. The role of peripheral inputs through vagal afferents modulating behavior was stressed. The advent of knockout animals as potential generators of new knowledge in this field was also addressed. Finally, interactions with other neuropeptides and investigation of the role of these peptides in other fields such as immunology were mentioned. Knowledge about the central functions of prolactin and cholecystokinin has shown important advances. The role of these peptides in neurological and psychiatric syndromes such as anorexia, drug abuse and physiological disturbances that lead to a compromised maternal behavior seems relevant.

Brain↗

Opposite modulation of apomorphine- or amphetamine-induced stereotypy by antagonists of CCK receptors.

Stereotyped behavior is elicited by activation of dopaminergic systems with drugs such as apomorphine and amphetamine. In previous studies, we have reported that the sulfated cholecystokinin octapeptide (CCK-8) decreased apomorphine-induced stereotypy in animals with normal and supersensitive dopamine receptors. The aim of the present study was to evaluate the effects of CCK(1) and CCK(2) receptor antagonists on stereotyped behavior induced by apomorphine or amphetamine. Rats were pretreated with the CCK(1) (SR 27897B; 1-[[2-(4-(2-chlorophenyl) thiazol-2-yl) aminocarbonyl]indolyl]acetic acid; 500 microg/kg; i.p.) or CCK(2) (L-365,260; 3R-(+)-N-(2,3-dihydro-1-methyl-2-oxo-5 phenyl-1H-1, 4-benzodiazepine-3-yl)-N'-(3-methyl phenyl)-urea; 500 microg/kg; i.p. ) receptor antagonists or saline 15 min before apomorphine (0.6 mg/kg; s.c.) or amphetamine (9.0 mg/kg; i.p.) injection. Both CCK(1) and CCK(2) receptor antagonists significantly increased apomorphine-induced stereotypy. In contrast, only the blockade of CCK(2) receptors significantly decreased amphetamine-induced stereotypy. The results suggest a dual opposite mechanism for CCK-dopamine interactions. These data also suggest that both apomorphine- and amphetamine-induced stereotypy should be used whenever effects of drugs acting on dopaminergic systems are being assessed.

Amphetamine↗

Hydroalcoholic extract and fractions of Davilla rugosa Poiret: effects on spontaneous motor activity and elevated plus-maze behavior.

Davilla rugosa Poiret is commonly used in Brazilian folk medicine. The use as stimulant induced us to study the effects on motor activity and anxiety using an open-field and an elevated plus-maze, respectively. The hydroalcoholic extract of the stems (HE) was fractionated with chloroform (CF), chloroform/ethyl acetate (CAF), ethyl acetate (AF), ethyl acetate/ethanol (AEF), ethanol (EF) and ethanol/water (EWF). Rats were treated orally with HE (7.5, 15, 30 or 60 mg/kg) or fractions (15 mg/kg). In the open-field, HE (15 mg/kg), AEF, EF and EWF increased locomotion frequency and decreased immobility time; the contrary was observed with 30 and 60 mg/kg of HE. These doses also increased defecation. No effects were observed with 7.5 mg/kg of HE, CF, CAF or AF, except for an increase in defecation induced by AF. In the elevated plus-maze, total entries and number of entries into the open and closed arms and the time spent in the open arms and its percentage were increased only with 15 mg/kg of HE. The open-field results suggest that the drug increases motor activity (stimulant effect) and that the active components are in the three more polar fractions. An anxiolytic effect was observed only with the HE.

Acetates↗

Dual modulation of male sexual behavior in rats by central prolactin: relationship with in vivo striatal dopaminergic activity.

Prolactin (PRL) appears to be localized in several brain structures. Central, behaviorally meaningful, neural actions of this protein have been demonstrated in a large number of studies. The present report describes sexual behavioral and in vivo neurochemical data obtained from adult male rats injected intracerebroventricularly acutely (10 micrograms) or chronically (5 days; 10 micrograms/day) with ovine prolactin (oPRL). The extracellular striatal concentrations of dopamine and serotonin metabolites were estimated by HPLC measurements in microdialysis perfusates. A single (10 micrograms) administration of oPRL facilitated sexual activity and increased extracellular striatal DOPAC, HVA and 5HIAA levels, whereas five daily intracerebroventricular injections of oPRL, decreased the sexual behavior and reduced DOPAC and HVA striatal extracellular concentrations in response to a central oPRL injection. These results show that acute and chronic central oPRL treatments have stimulatory and inhibitory effects on male sexual behavior, respectively. In addition, the results suggest that striatal dopaminergic activity is increased and decreased by acute and 5-day central oPRL treatments. These data suggest that behavioral effects of PRL occur simultaneously with changes in striatal dopaminergic activity.

Animals↗

Sudden darkness induces a high activity-low anxiety state in male and female rats.

The effects of sudden darkness on spontaneous motor activity in an open field and performance in an elevated plus-maze (EPM) were assessed in adult male and female rats. In the open field test, sudden darkness increased total locomotion, locomotion in central squares, rearing frequency (RF), and diminished defecation units (DU). In the dark, total locomotion remained elevated during the 20-min test period, while in the light total locomotion decreased significantly after the fourth minute, in both sexes. All the effects of sudden darkness in the open field test were more pronounced in female rats. In the EPM, sudden darkness increased the number of entries into the open arms, total entries, percentages of entries into the open arms, and time spent in the open arms. The changes were more significant in female than in male rats. These results show that sudden darkness increases general motor activity and suggest it diminishes habituation, fear, and anxiety. The results also suggest that this behavioral shift is sexually differentiated. Sudden darkness emerges as an experimental tool to simultaneously test physiologically-induced increases in spontaneous motor activity and decreases in anxiety.

Animals↗

Histamine and spontaneous motor activity: biphasic changes, receptors involved and participation of the striatal dopamine system.

The time- and dose-related effects of exogenous histamine on spontaneous motor activity and receptors involved were evaluated in male rats. Intracerebroventricular administration of histamine (5.4 and 54.3 nmol) produced a biphasic effect with initial transitory hypoactivity and later hyperactivity expressed by locomotion frequency in an open-field. The rearing frequencies were only reduced by all doses of histamine used. The histamine-induced hypoactivity was inhibited by the H3-antagonist thioperamide and was also induced by the H3-agonist N-alpha-methylhistamine. The histamine-induced hyperactivity phase was blocked by the H1-antagonist mepyramine. The H2-antagonist ranitidine increased locomotion and rearing frequencies. The participation of other neurotransmitters in the persistent hypokinetic effect induced by 135.8 nmol of histamine was determined by HPLC in the striatum and hypothalamus as counter-proof. A decreased DOPAC/DA ratio was observed only in the striatum. In the hypothalamus, low levels of 5HT were detected, probably not correlated with motor activity. In conclusion, the present results suggest that the exogenous histamine-induced hypoactivity response is probably due to activation of H3-receptors as heteroreceptors reducing the activity of the striatal dopaminergic system. This effect can partially overlap with the expression of the hyperactivity induced by H1-receptor activation. The participation of H2-receptors requires further investigation.

Animals↗

Perinatal treatment with picrotoxin induces sexual, behavioral, and neuroendocrine changes in male rats.

The effects of maternal exposure to picrotoxin (PT) during the prenatal and postnatal periods of sexual brain differentiation were studied. Behavioral (sexual behavior), physical (sexual maturation, body, and organ weights) and neurochemical (striatal and hypothalamic monoamine and respective metabolite levels) data were assessed in the offspring of PT-treated dams. The following results were obtained: 1) sexual maturation as measured by the day of testis descent and testis weight comparison was unchanged; 2) a decrease in male sexual behavior occurred, as well as a decrease in body, ductus deferens, and seminal vesicle weights and in plasma testosterone levels of adult male offspring; 3) striatal dopamine (DA) and homovanillic acid (HVA) levels were decreased and hypothalamic norepinephrine (NE) levels were increased. These results indicate that perinatal exposure to PT during the critical periods of male brain sexual differentiation has long-term effects on the reproductive physiology and behavior of male rats.

Animals↗

Effects of acute and long-term domperidone treatment on prolactin and gonadal hormone levels and sexual behavior of male and female rats.

Domperidone (DOMP), a dopamine D2 blocker that is unable to cross the blood-brain barrier, is an experimental tool used to induce hyperprolactinemia. Acute and long-term DOMP administration was tested in male and female rats for its effects on sexual behavior and plasma gonadal hormone levels. DOMP (4.0 mg/kg) was injected I.P. either acutely or daily for 30 days. Acute treatment failed to modify any behavioral parameter observed. The 5-day treatment stimulated and the 30-day treatment failed to inhibit sexual behavior of male rats. Serum testosterone levels were significantly reduced after 30 days of treatment in male rats. The 30-day treatment also inhibited sexual behavior and enhanced plasma progesterone levels in ovariectomized and intact female rats, respectively. The present results may be due to DOMP-induced long-term hyperprolactinemia. Alternatively, blockade of dopamine peripheral receptors induced by this treatment may also be responsible for the behavioral changes reported here. Moreover, these data suggest that female rats are more susceptible than males to the behavioral effects of long-term hyperprolactinemia.

Animals↗

Modulation of apomorphine-induced stereotyped behavior by cholecystokinin.

1. The goal was to verify if central or peripheral sulphated cholecystokinin octapeptide (CCK8) injections can modulate apomorphine (APO)-induced stereotyped behavior. Experiments were designed to determine the involvement of cholecystokinin receptor subtypes as well. 2. Animals which received CCK8 (0.0725, 0.145 and 14.5 nmol, icv) showed a significant (p < 0.05) decrease in APO (0.6 mg/kg, sc)-induced stereotyped behavior. 3. No other statistically significant difference was observed among groups. Since ip CCK8 (1.16 or 2.32 nmol/kg) injections did not interfere with APO-induced stereotypy, the results suggest that the CCK8 modulatory effects have a central action. 4. The results also suggest that the effects of icv CCK8 were not due to the stimulation of CCK8 receptors alone since central CCK4 (14.5 or 29.0 nmol) injections did not interfere with the expression of stereotypy.

Animals↗

Influence of lactation on motor activity and elevated plus maze behavior.

Lactating rats show less noise-induced freezing and fewer inhibitory responses on the 6th day post-delivery when submitted to water and food deprivation in a classical conflict paradigm. Lactating mice go more often to the illuminated chamber in a light-dark cage and stay longer in it than virgin females. The present study was designed to assess the influence of this physiological state, i.e. lactation, on the elevated plus maze (EPM) and open-field behavior in adult female rats. Total (TL) and central (CL) locomotion and rearing (RF) frequencies were measured in an open-field. Number of entries into the open and closed arms as well as the time spent in each of these arms were measured in the EPM. percent time spent and number of entries into the open arms were calculated and compared. In the open-field, TL was significantly decreased (115 +/- 10.6 vs 150 +/- 11.6) while CL and RF did not differ from those presented by virgin rats. In the EPM, lactating rats displayed a significant reduction in percent time spent (10.9 +/- 1.5 vs 17.4 +/- 2.3) in the open arms as well as a tendency to a reduction in percent entries into the open arms (35.7 +/- 4.7 vs 45.7 +/- 4.3). These results show that the physiological state of lactation modulates the open-field and EPM behaviors in rats.

Animals↗

Differential effects of bromopride and domperidone on cholinesterase activity in rat tissues.

Bromopride (BRO) and domperidone (DOMP) are dopamine D2 blocking agents used in gastroenterology clinics because of their anti emetic effect as well as their central and peripheral actions of increasing gastrointestinal motor activity. The rationale for these experiments was to compare BRO- and DOMP-effects on plasma, brain, and intestinal cholinesterase activity in vitro. BRO and DOMP effects on cholinesterase activity in plasma, striatum, duodenum and ileum of adult male rats were measured for drug concentrations ranging from 0.006 to 3.134 microM for BRO and from 0.006 to 125 microM for DOMP. The results demonstrate that both BRO and DOMP can inhibit cholinesterase activity in all tissues studied, with DOMP being more potent than BRO in plasma and intestinal tissues. These data suggest the existence of a cholinergic mechanism of action for these dopamine blocking agents.

Animals↗

Apomorphine-induced yawning in the rat: influence of fasting and time of day.

Yawning behavior is an experimental tool to study physiological responses, to elucidate the mechanisms of action of some drugs and hormones, and it is also a paradigm for some diseases and for dopamine (DA) agonists' clinical use. In this study, the effects of 24- and 48-h fasting as well as the influence of the light-dark cycle on apomorphine (APO)-induced yawning were evaluated. Initially, control and 48-h-fasted adult male rats were tested for yawning induced by APO (50, 100, 150 micrograms/kg, SC). The most effective dose tested was 100 micrograms/kg. Fasting significantly lowered yawning in all doses tested. Comparison between 24- and 48-h-fasted rats for APO (100 micrograms/kg)-induced yawning showed no significant difference between groups. Ad lib-fed groups were tested for APO (100 micrograms/kg)-induced yawning in both the light and in the dark phases of the cycle. Total number of yawnings increased significantly in the dark period. The present data show that fasting reduces and dark period increases APO-induced yawning in rats, suggesting that these conditions modulate the expression of this behavior.

Animals↗

Intracerebroventricular administration of cholecystokinin reduces stereotypy in dopamine-supersensitive rats.

Cholecystokinin (CCK-8) coexists with dopamine in some neurons and modulates dopaminergic neurotransmission. In the present study we determined the effect of CCK-8 on stereotyped behavior in supersensitive dopaminergic system. Adult male Wistar rats, weighing 200-250 g, were used. Dopaminergic supersensitivity was induced by long-term haloperidol (HAL) treatment (30 days: 1.0 mg/kg twice a day). Seventy-two hours after HAL withdrawal animals received CCK-8 (14.5 nmol/5 microliters) or saline intracerebroventricularly (icv) before being tested for apomorphine (APO, 0.6 mg/kg, sc)-induced stereotyped behavior. Experimental groups were: long-term HAL-treated rats that received saline (HSAL, N = 9) or CCK-8 (HCCK, N = 11) icv and long-term saline-treated rats that received CCK-8 (SCCK, N = 9) or saline (SSAL, N = 8) icv. As expected, HSAL rats showed statistically significant higher stereotypy scores than SSAL rats (42 +/- 1.7 vs 31 +/- 1.6; P < 0.05) and CCK-8 significantly reduced stereotyped behavior in supersensitive rats (42 +/- 1.7 vs 37 +/- 1.5; P < 0.05). These results show that CCK-8 icv reduces stereotypy in dopaminergic-supersensitive rats, and suggest that the dopamine supersensitivity phenomenon can be modulated by CCK-8.

Analysis of Variance↗