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J Rabii

Publications and source records attributed to J Rabii.

At least 19 recordsLinked to original sources

Inhibition of tuberoinfundibular dopaminergic neural activity during suckling: involvement of mu and kappa opiate receptor subtypes.

Previous studies have shown that mu (mu) and kappa (kappa) opioid antagonists inhibit suckling-induced prolactin release. Prolactin responses elicited by pup suckling or opioid administration are mediated, at least in part, by suppression of dopamine (DA) release from tuberoinfundibular dopaminergic (TIDA) neurons in the hypothalamus. We examined the effects of the mu opiate receptor antagonist, beta-funaltrexamine (beta-FNA), and the kappa opiate receptor antagonist, nor-binaltorphimine (nor-BNI) on the activity of TIDA neurons in lactating rats. TIDA neuronal activity was determined by measuring DOPA accumulation in the caudate putamen (CP) and median eminence (ME). The effects of opioid antagonist treatment were determined in pup-deprived (low circulating prolactin levels) or pup-suckled rats (high circulating prolactin levels). The accumulation of 5-hydroxytryptophan (5-HTP) in the medial preoptic area (MPOA), the anterior hypothalamus (AH) and the median eminence (ME) was quantified as an index of serotonergic activity in the same animals for comparative purposes. In vehicle treated rats, suckling caused a significant and selective decrease in DOPA accumulation in the ME. beta-FNA (5 micrograms, i.c.v.) pretreatment significantly increased DOPA accumulation in the ME of pup-deprived and pup-suckled rats. beta-FNA pretreatment also prevented the suckling-induced suppression of DOPA accumulation in the ME. In contrast to the actions of beta-FNA, pretreatment with nor-BNI (8 micrograms, i.c.v.) did not significantly affect the activity of the TIDA neurons in pup-deprived or pup-suckled rats. Suckling alone did not alter 5-HTP accumulation in any of the brain regions examined, and neither opioid antagonist had appreciable effects on 5-HTP accumulation. These results demonstrate that the EOP tonically inhibit the TIDA neurons in both pup-deprived and pup-suckled, post-partum female rats by acting through the mu, but not the kappa, opiate receptor subtype. Furthermore, the suckling-induced inhibition of TIDA neurons is also mediated through the EOP acting at mu, but not kappa opioid receptors.

5-Hydroxytryptophan↗

Morphine induced analgesia is attenuated in post-partum lactating rats.

The analgesic effects of morphine administration were determined in post-partum, lactating female rats, as well as in intact, cycling females during the diestrous stage of the estrous cycle. All doses of morphine (2.5, 5 and 10 mg/kg, iv) produced a significant analgesic response in both post-partum and diestrous females using the hot water tail immersion latency test. However, the analgesic response in the post-partum females was significantly less than during diestrus at all doses tested. In addition, pretreatment with the mu 1 specific antagonist, Naloxonazine, significantly blunted the analgesic response in diestrous females, but did not significantly affect analgesia in post-partum females. These results indicate that morphine is less effective in producing analgesia in post-partum females. The mu 1 opiate receptor site does not appear to be involved in the analgesia produced during the post-partum period.

Analgesia↗

Serial long-term assessment of in vivo LHRH release from a discrete area of the ewe median eminence using multiple guide cannula assembly and removable push-pull cannulae.

Analysis of neuronal interactions at the median eminence (ME) that control anterior pituitary function requires sampling of in vivo release of specific hypophysiotropic components and of putative inputs that might regulate such a release. We developed a multiple guide cannula assembly (MGCA) to sample repetitively discrete areas of the ewe ME, using removable push-pull cannula (PPC) probes. The MGCA is attached to the skull over the ME using stereotaxic surgery. A specific guide cannula of the assembly (1 of 48 guides) located on the midline and directly on top of the central portion of the ME is selected based on roentgenograms obtained after infusion of radiopaque contrast material into the third ventricle. The MGCA and the large size of the ewe brain allows the simultaneous positioning of a PPC probe, an infusion cannula or another removable probe in additional discrete hypothalamic and extrahypothalamic areas. To determine the capabilities of this sampling technique, we assessed in vivo release of LHRH from the extracellular space at the posterior-lateral ME, under various reproductive conditions that have well-defined LH-secretory patterns. The pulsatile profile of both LHRH and LH was significantly lower in anestrus than during the follicular phase of cycling ewes. In vivo pulsatile release of LHRH was higher in the follicular than in the midluteal phase of ewes sampled repetitively from the same ME site during three consecutive estrous cycles. All ewes showed increased midluteal progesterone levels. In vivo LHRH release, as determined by PPC sampling of the extracellular fluid at the posterior-lateral ME, probably reflects a mix of hypophysiotropic and nonhypophysiotropic LHRH components. Histological analysis revealed a well-organized, pallisade-like array of astroglial processes along the track of chronically implanted cannulae. This glial scar is disrupted along the tracks of acutely reimplanted cannulae but without apparent difference in the yield of the method. Our method increases the efficiency and versatility of ME PPC sampling providing an additional tool to assess the role of the ME as the final neuroendocrine control site of anterior pituitary function.

Animals↗

Feed restriction in prepubertal lambs: effect on puberty onset and on in vivo release of luteinizing-hormone-releasing hormone, neuropeptide Y and beta-endorphin from the posterior-lateral median eminence.

The exact nature of the interaction between energy balance and reproduction is still elusive. Theoretically, nutrition-related variables must reach the hypothalamic luteinizing-hormone-releasing hormone (LHRH) network and/or its neuronal inputs, to alter plasma luteinizing hormone (LH) and therefore reproductive activity. In an attempt to assess the potential mechanism of such interaction at the median eminence (ME) level, the area of hypophysiotropic LHRH neuronal terminals and release, we used a decreased caloric intake lamb model which delays the onset of puberty. Thus, we determined the in vivo release of neuropeptides, by push-pull cannula (PPC) sampling from the posterior-lateral ME, in feed-restricted (FR) ewe lambs and in full-fed (FF), age-matched, contemporary control animals. Specifically, we assessed: (1) serum LH and ME in vivo release of LHRH, beta-endorphin (beta-END) and neuropeptide Y (NPY); beta-END and NPY are two putative neuronal inputs to LHRH neuronal terminals at the ME, reported to be involved in the control of both reproduction and feed intake; (2) the effect that exogenous infusion of beta-END through the PPC might have on the release of ME LHRH and NPY, and on plasma LH. In contrast to other works, the present results were obtained in lambs with intact ovaries. Furthermore, FR lambs were always compared statistically with FF contemporary paired controls that had attained puberty. Feed restriction decreased ME LHRH release, lowered plasma LH and prevented the onset of puberty. The changes induced by feed restriction in both LHRH and LH release were associated predominantly with decreases in pulse amplitude, rather than alterations in pulse frequency. The decreased LHRH and LH release occurred in the presence of a decreased beta-END but unchanged NPY release from the ME. Exogenous infusion of beta-END into the posterior-lateral ME decreased both LHRH and NPY release from this site and decreased plasma LH. In conclusion, decreased caloric intake lowers LH release and prevents puberty onset by decreasing the amplitude of the LHRH output from the hypothalamic hypophysiotropic network. A compensatory but unsuccessful mechanism for the FR status might be a lower beta-END-inhibitory tone on ME LHRH neuronal terminals. The unchanged release of NPY at this site supports the specificity of the changes induced by feed restriction on LHRH and beta-END in vivo release.

Animals↗

Beta-endorphin regulation of luteinizing hormone-releasing hormone release at the median eminence in ewes: immunocytochemical and physiological evidence.

Beta-endorphin (beta-END) is an inhibitory factor in the neuroendocrine control of luteinizing hormone (LH) release and thus, presumably also of hypophysiotropic luteinizing hormone-releasing hormone (LHRH) release. In order to address if the median eminence (ME) is a site of beta-END action, we studied its functional role in ewes by assessing: (a) the hypothalamic distribution of beta-END using immunolabeling and by comparing this distribution with our data on the localization of LHRH; (b) the ME in vivo release of LHRH and beta-END during the luteal (day 12) and the follicular (day 15) phases of the estrous cycle; (c) the in vivo release of LHRH from the posterior-lateral ME, as assessed by push-pull cannula (PPC) sampling, before, during, and after infusion of increasing doses of beta-END or naloxone through the PPC, during the follicular phase; and (d) the in vivo release of ME-LHRH and serum LH, before, during, and after infusion of beta-END or naloxone in luteal and follicular ewes. In the ewe, beta-END-containing perikarya are located in and around the arcuate nucleus. Their processes are also present in the diagonal band, medial septal nucleus, and medial and lateral hypothalamic areas, including the preoptic region and posterior ME. Perikarya containing LHRH are located in the preoptic area and project also to the ME, providing opportunities for synaptic interactions between beta-END and LHRH-containing perikarya and processes at these levels. ME in vivo release of LHRH and beta-END increase from the luteal (low LH/high progesterone, P4) to the follicular phase (high LH/low P4). In follicular ewes, in vivo LHRH and LH release is decreased, in a dose-dependent manner, by beta-END infused through the PPC probe into the posterior-lateral ME. In contrast, infusion of naloxone under similar conditions increases LHRH and LH release, also in a dose-dependent fashion. The inhibitory effect of beta-END on LHRH and LH, as well as the stimulatory effect of naloxone on LHRH and LH, were only marginally apparent in luteal ewes. These results suggest that the ME is a major control site where beta-END exerts its influence on hypophysiotropic LHRH release. The strength of this inhibitory effect apparently increases throughout the follicular phase, and might prevent the premature onset of the preovulatory surge of LHRH and LH.

Animals↗

Inhibition of suckling-induced prolactin release by mu- and kappa-opioid antagonists.

Evidence suggests that endogenous opioid peptides (EOP) are involved in the hyperprolactinemia and suppression of luteinizing hormone (LH) release associated with lactation. To address this hypothesis, we investigated the effects of various opioid receptor antagonists on suckling-induced prolactin (PRL) and LH responses in primiparous, lactating rats. All animals were fitted with indwelling jugular catheters to allow serial blood sampling, and some rats received intracerebroventricular (i.c.v.) cannulae for central drug injection. Naloxone (2.0 mg/kg, i.v.) was employed as a broad spectrum opioid antagonist, whereas beta-funaltrexamine (beta-FNA, 1.0-5.0 micrograms, i.c.v.), naloxonazine (NAZ, 20 mg/kg, i.v.) and nor-binaltorphimine (nor-BNI, 4.0-16.0 micrograms, i.c.v.) were used to block mu, mu 1 and kappa receptor sites, respectively. In vehicle-treated rats, pup suckling evoked a dramatic increase in plasma PRL and a concurrent decrease in circulating LH. Naloxone caused a modest, though significant, attenuation of the PRL surge during nursing. beta-FNA and nor-BNI inhibited suckling-induced PRL release in a dose-related fashion, and at sufficient doses, both antagonists abolished the PRL response. Conversely, the suckling-induced rise in plasma PRL was not affected by NAZ. Naloxone, beta-FNA, and NAZ did not alter the profile of circulating LH in suckled rats, but the highest dose nor-BNI (16 micrograms, i.c.v.) produced a significant elevation in plasma LH. However, even in rats treated with 16.0 micrograms of nor-BNI, plasma LH levels declined in response to the nursing stimulus.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Morphine does not stimulate prolactin release during lactation.

The ability of morphine to stimulate prolactin and growth hormone (GH) release was investigated in male rats and in female rats during diestrus, proestrus and lactation. In agreement with previous reports, acute morphine administration produced an increase in circulating levels of prolactin in male and in diestrous and proestrous female rats. In contrast to these results, morphine administration (10 or 15 mg/kg, s.c.; 5 mg/kg, i.v.; 5 or 10 micrograms, i.c.v.) did not produce an increase in prolactin levels in lactating dams. Morphine stimulates prolactin release in part by decreasing dopamine turnover in the tuberoinfundibular neurons in the median eminence. In order to assess the functional activity of these neurons during lactation, haloperidol (0.1 or 0.5 mg/kg, i.v.) was given to lactating dams. There was a significant increase in prolactin levels following haloperidol administration, suggesting that these dopaminergic neurons are participating in the modulation of prolactin release during lactation. In contrast to the insensitivity of the lactating rat to morphine stimulation of prolactin release, the intraventricular administration of two other opiate receptor agonists, beta-endorphin (10 or 20 micrograms) and [D-Ala-D-Leu]enkephalin (DADLE; 5 or 10 micrograms), produced significant increases in circulating levels of this hormone. The GH response to morphine, beta-endorphin and DADLE was also measured in these same rats. All these opiate receptor agonists stimulated GH release in male rats and in female rats during diestrus and proestrus as well as during lactation. These observations suggest that the suckling stimulus during lactation renders the rat refractory to morphine stimulation of prolactin release, possibly as a result of down-regulation of the mu-opiate receptor subtype.

Animals↗

Time course of the insensitivity of prolactin release to morphine administration in the lactating female rat.

The effect of morphine on circulating levels of prolactin and growth hormone (GH) in the lactating female model was determined at various time intervals following the termination of suckling. Morphine administration did not produce an increase in prolactin levels when dams remained suckling. Four days after suckling was terminated, 50% of the dams tested showed a morphine induced prolactin increase. The prolactin secretory response to morphine gradually returned in dams, so that after 8 days of non-suckling, all animals tested showed a morphine induced prolactin increase. Consistent with the lack of prolactin stimulation, the tuberoinfundibular dopaminergic (TIDA) neurons, were insensitive to the morphine induced inhibition of activity during lactation. In contrast, circulating levels of GH were increased in these dams following morphine administration. These results suggest that the lactating female rat is insensitive to the mu mediated stimulation of prolactin release while suckling. However, sensitivity begins to return following at least 4 days of non-suckling.

Animals↗

Prolactin release and tuberoinfundibular dopaminergic neuronal activity following single and double injections of morphine.

It is well established that opiate agonists alter tuberoinfundibular dopaminergic activity and consequently prolactin release. The purpose of this study was to characterize the effects of morphine on prolactin secretion and tuberoinfundibular dopaminergic neuronal activity with respect to time after administration. Additionally, the effect of an initial morphine injection on the response produced by a second injection of morphine was determined. The rate of depletion of median eminence dopamine content following synthesis inhibition by alpha-methyl-p-tyrosine was used as an index of dopaminergic neuronal activity. Male rats given a single injection of morphine sulfate (15 mg/kg, s.c.) showed a significant increase in circulating prolactin levels and had a lower rate of median eminence dopamine turnover 1 h after injection. Four hours after injection, circulating prolactin levels were similar to those in vehicle treated rats, while dopamine turnover was significantly higher than controls. When two injections of morphine sulfate (15 mg/kg, s.c.) were given 4 h apart, the stimulation of prolactin release produced by the second injection was significantly attenuated. Although this second injection caused a significant decrease in dopamine turnover, the turnover rate following this injection was significantly greater than that following the initial injection. The combination of fluoxetine and 5-hydroxytryptophan (FLX/5-HTP) caused an initial increase in prolactin secretion with plasma values returning to basal levels by 4 h. When rats were pretreated with FLX/5-HTP instead of morphine, the prolactin response to an injection of morphine 4 h later was not attenuated. Similarly a FLX/5-HTP pretreatment had no influence on a second injection of FLX/5-HTP administered 4 h later.(ABSTRACT TRUNCATED AT 250 WORDS)

5-Hydroxytryptophan↗

The effects of prenatal morphine on the responsiveness to morphine and amphetamine.

The effects of morphine administered to pregnant Sprague-Dawley rats on the schedule-controlled behavior of the offspring were examined. It was observed that both male and female adult rats exposed prenatally to morphine were tolerant to the disruptive effects of morphine on fixed-interval responding compared to age-matched controls. These morphine-treated rats, however, were neither tolerant nor supersensitive to the disruptive effects of the catecholaminergic agonist, amphetamine, and did not exhibit any alteration in their steady state levels of central monoamines. These observations are discussed in relation to the effects of prenatal morphine exposure on unconditioned behaviors.

Amphetamine↗

Do pup ultrasonic cries provoke prolactin secretion in lactating rats?

Marked prolactin (PRL) secretion in response to the ultrasonic distress vocalizations of rat pups in lactating dams deprived of their pups for 6 hr was reported by others. In two experiments, this phenomenon could not be confirmed under our testing conditions at either 1 or 2 weeks postpartum, although behavioral responses to the ultrasounds were noted. In addition, suckling-induced PRL secretion did not differ consistently as a function of the tape recording (pup ultrasounds, 45 kHz artificially produced ultrasounds, or blank tape) heard prior to the return of pups. The functional significance of rat pup ultrasounds is considered.

Animals↗

Brain sites involved in the regulation of growth hormone secretion in the young male domestic fowl.

To study brain sites involved in the regulation of GH secretion in the domestic fowl, lesions were placed in and around the hypothalamus of 1-week-old cockerels. Circulating concentrations of GH were then measured at weekly intervals for 4 weeks after the placement of lesions. At the termination of the experiment, histological procedures were used to determine the exact site of the lesion in each bird. Although a fair degree of overlap existed between the lesion sites leading to stimulation and those causing an inhibition of GH secretion, a clear distinction could be made in the overall distribution of stimulatory and inhibitory sites of GH control. A high concentration of lesion sites resulting in GH decline (presumed GH-releasing factor-rich areas) appeared to reside in the general area of the ventromedial and the arcuate nucleus of the hypothalamus. Lesion sites causing a GH rise (presumed somatostatin-rich areas), on the other hand, seemed to have a more caudal distribution. In addition, some evidence of an anterior hypothalamic distribution of these presumed 'somatostatin' neurones was observed. These agree with the existing immunohistochemical data on the distribution of somatostatin and constitute experimental evidence for localization of presumed GH-releasing factor sites within the avian brain.

Animals↗

Effects of prenatal exposure to morphine sulfate on reproductive function of female rats.

The purpose of this study was to investigate the effect of prenatal exposure to morphine sulfate on the development of reproductive function in female rats. Female rats exposed to morphine sulfate in utero (5-10 mg/kg on days 5-12 of gestation) exhibited varying dates of vaginal opening and a partial inhibition in adult feminine sexual behavior when compared to controls. However, the estrogen binding capacity of hypothalamic cytosols from morphine- and saline-treated females was identical. While we cannot rule out the possibility that the observed changes in reproductive function were an indirect result of morphine-induced alterations in maternal physiology or behavior, these results suggest that the development of feminine sexual behavior can be influenced during the early prenatal period and that morphine sulfate can affect the process of feminization.

Animals↗

Role of serotonin in estrogen-progesterone induced luteinizing hormone release in ovariectomized rats.

Pharmacological agents were used to manipulate the surge of luteinizing hormone (LH) induced by progesterone in ovariectomized rats primed with estradiol benzoate. The LH surge was abolished with p-chlorophenylalanine (PCPA), an inhibitor of tryptophan hydroxylase, and restored by 5-hydroxytryptophan, a serotonin precursor. Serotonin receptor agonists, quipazine and N-N-dimethyl-5-methoxytryptamine, were also capable of inducing an LH surge in rats pretreated with PCPA. The serotonin reuptake blocker chlorimipramine was ineffective in stimulating LH release in PCPA blocked animals. Another reuptake blocker, zimelidine was only partially effective in this regard. These two reuptake blockers, as well as amitriptyline, when injected to non-PCPA treated rats led to the reduction or inhibition of the expected LH surge. Four serotonin receptor antagonists, cyproheptadine, methysergide, cinanserin and SQ-10,631, were each able to reduce or abolish the progesterone induced surge of LH. These results suggest that some of the reuptake blockers of serotonin are also capable of inhibiting receptor binding for this neurotransmitter and strongly indicate that serotonin has a stimulatory role in the steroid induced release of LH in castrated rats.

5-Hydroxytryptophan↗

Influence of morphine during pregnancy on neuroendocrine regulation of pituitary hormone secretion.

The effects of exposure to morphine during pregnancy on postnatal neuroendocrine systems were investigated. Rats received morphine sulphate or 0.9% (w/v) NaCl twice daily on days 5-12 of pregnancy. A dose of 5 mg morphine sulphate/kg was administered for the first three injections while 10 mg/kg was used for each of the remaining 13. This treatment regimen led to a significant delay in the onset of vaginal opening in the female offspring. Mothers treated with morphine sulphate showed a marked attenuation of their prolactin response to the suckling stimulus, although they still released significant amounts of the hormone. Both male and female offspring of the opiate-treated dams showed a major reduction in the sensitivity of their hypothalamic-pituitary axis to gonadal steroids at 15 days of age. No significant differences were found in the acute thyrotrophin response to single injection of morphine sulphate of prepuberal male and female pups of morphine- and saline-treated dams. These data show that exposure to opiates during critical periods of prenatal development lead to long-lasting alterations in the neuroendocrine control systems of the animal. These alterations may then have significant consequences on the physiological maturation and adult behaviour of the animal.

Animals↗

Distribution of blood flow in the ovary of domestic fowl (Gallus domesticus) and changes after prostaglandin F-2 alpha treatment.

Radioactive microspheres (14Ce- and 46Sc-labelled) were used to show that the 5 major pre-ovulatory follicles receive about half of the ovarian blood flow. A progressive increase in the blood flow to these pre-ovulatory follicles during their maturation was observed. Blood flow to the post-ovulatory follicles was low. The administration of PGF-2 alpha was followed by a consistent decrease in blood flow to the major pre-ovulatory follicles.

Animals↗