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C Rivier

Publications and source records attributed to C Rivier.

At least 109 records · Page 6Linked to original sources

Synthesis and relative potencies of new constrained CRF antagonists.

Two series of CRF antagonists with N alpha- and C alpha-methylated alanine and leucines were evaluated for their biological activities in vitro and in vivo in several systems. The poly-N-methylated analogue of alpha-helical-CRF9-41, [N alpha MeLeu10,15,27,37,N alpha MeAla22,32,41]-alpha-Hel-CRF9-41, was found to be considerably less potent than the parent non-N-methylated analogue. This result was expected on the basis that alpha-helicity was thought to be required for biological activity and the prediction that backbone substitutions on the nitrogen have a tendency to break alpha-helices (a hypothesis that was confirmed by circular dichroism). Next, a series of constrained analogues of the potent CRF antagonist, [DPhe12,Nle21,38]h/rCRF12-41, was synthesized that contained C alpha-methylleucine and/or C alpha-methylalanine (Aib) residues at selected positions. Because C alpha-methylation is recognized to increase alpha-helicity, and because there is now strong NMR data suggesting that residues 6-36 assume a well-defined alpha-helix, it was expected that these analogues would be more potent. Although usual solid-phase peptide synthesis procedures were followed, success in coupling the C alpha-methyl amino acids was obtained only with a 1:1 mixture of BOP/HOBt. In vitro potencies of the synthesized compounds were measured in a collagenase-dispersed anterior pituitary cell culture bioassay. Monosubstituted analogues were shown to be twice to one fourth as potent as the parent compound; while the pluri-substituted peptides were slightly less potent. This decrease in potency might be correlated to an unexpected lower helical content of the pluri-substituted compounds (as determined by CD spectroscopy), as it was suggested that the bioactive conformation of the CRF was predominantly alpha-helical. Interestingly, one analogue, [DPhe12,Nle21,38,C alpha-MeLeu37]h/rCRF12-41, was found to be more potent and longer acting than the parent compound in two in vivo assays measuring ACTH release after intravenous administration to adrenalectomized rats and reversal of stress-induced delay in gastric emptying in the rat after intracisternal administration. The molecular basis for this increased duration of action and potency is being investigated.

Adrenalectomy↗

Interleukin-1 beta inhibits the endogenous expression of the early gene c-fos located within the nucleus of LH-RH neurons and interferes with hypothalamic LH-RH release during proestrus in the rat.

The ability of central interleukin-1 beta (IL-1 beta) administration to modulate the hypothalamic LH-RH release as well as the endogenous expression of the c-fos protein located within the nucleus of LH-RH neurons was examined during the afternoon of proestrus in rats. In a first series of experiments, 50 or 100 ng IL-1 beta were infused into the lateral ventricle of the rat brain at either 08.30, 12.00, 14.30, or 17.00 h of proestrus. The animals were then perfused transcardially with a solution of 4% paraformaldehyde from 17.30 and 18.00 h. In a second series of experiments, the rats were equipped with an intracerebroventricular (i.c.v.) cannula in the lateral ventricle and a push-pull cannula into the median eminence (ME), and LH-RH secretion was measured during the afternoon of proestrus. The third experiment investigated the putative role of corticotropin-releasing factor (CRF) in modulating the inhibitory effect of IL-1 beta on LH secretion by infusing CRF antagonists before the i.c.v. administration of the cytokine to gonadectomized male and female rats. The central infusion of 50 or 100 ng IL-1 beta at 12.00 h completely blocked the spontaneous expression of c-fos protein which normally occurs in the nucleus of LH-RH neurons between 17.30 and 18.00 h on proestrus. In contrast, 50 ng IL-1 beta was less effective (P < 0.05) when administered at 08.30 h, and totally without effect when infused at 14.30 h. Infusion of 50 ng IL-1 beta also markedly suppressed the hypothalamic release of LH-RH in proestrus rats bearing a push-pull cannula into the ME, and significantly decreased plasma LH levels in both gonadectomized male and female rats. Finally, we observed that the central administration of CRF antagonists did not modify the inhibitory effects of the cytokine on the activity of the hypothalamic-pituitary-gonadal (HPG) axis. These results provide the first direct evidence that IL-1 beta is a potent inhibitor of LH-RH neuronal activity during the proestrus LH surge in intact cycling rats. As central administration of this cytokine completely inhibited the endogenous expression of c-fos protein within the nucleus of LH-RH neurons, our findings also suggest that IL-1 beta acts at the level of LH-RH perikarya.

Animals↗

Mechanisms mediating the effects of cytokines on neuroendocrine functions in the rat.

Exposure to an antigen causes significant endocrine changes, some of which in turn affect immune functioning. Proteins produced by activated immune cells, cytokines, act as messengers between the immune and the endocrine systems, and convey to the brain the occurrence of immune activation. We have investigated the ability of interleukin 1 (IL-1) alpha and beta to alter endocrine functioning in the adult rat. Acute peripheral injection of IL-1 alpha or beta causes dose-dependent increases in plasma adrenocorticotropic hormone (ACTH) and corticosterone secretion. These changes are primarily dependent upon increased release of corticotropin-releasing factor (CRF) into the portal circulation, and recent studies have indicated that the paraventricular nucleus (PVN) of the hypothalamus is the main source of this CRF. This conclusion is based on our finding that intravenous injection of IL-1 increases CRF biosynthesis in the PVN, and that lesion of this hypothalamic area interferes with IL-1's stimulatory action on ACTH secretion. Indomethacin partially reverses the effect of IL-1, suggesting that increased prostaglandin synthesis plays some part in this activation. Administration of IL-1 beta into the brain, but not into the general circulation, interferes with secretion of luteinizing hormone (LH) and ovulation through mechanisms involving endogenous opiates. Because neither CRF antagonists, nor lesions of the PVN, alter the inhibitory effect of IL-1 on LH release, CRF perikarya in the PVN do not appear to be involved in this phenomenon. Central administration of IL-1 beta strongly increases c-Fos immunoreactivity in the PVN, mainly within CRF neurons. Infusion of IL-1 beta into the PVN does not induce measurable changes in release of gonadotropin-releasing hormone (GnRH), but infusion of IL-1 directly into the median preoptic area (MPOA), a region rich in GnRH perikarya, markedly decreases GnRH secretion in rats bearing a push-pull cannula in the median eminence. Furthermore, central administration of IL-1 beta during the critical phase of pro-oestrus (1600-1930) also inhibits the expression of c-fos in GnRH cell bodies in the MPOA. Thus, we suggest that IL-1 interferes with reproductive functioning through a direct action at the level of the MPOA. These results indicate that circulating cytokines can alter the activity of the hypothalamo-pituitary-adrenal axis by increasing CRF release, probably through both immediate stimulation of CRF terminals within the median eminence and stimulation of CRF synthesis in the PVN. In contrast, cytokine-induced changes in LH and GnRH secretion are mediated through pathways lying primarily beyond the blood-brain barrier.

Animals↗

Blockade of pituitary-adrenal axis activation induced by peripheral immunoneutralization of corticotropin-releasing factor does not affect the behavioral response to social defeat stress in rats.

Specific in vivo immunoneutralization of hypophysiotrophic corticotropin-releasing factor (CRF) and vasopressin (AVP) was used to investigate the respective roles of these circulating peptides in the hormonal response to a social stressor in Wistar rats. The effect of peripheral immunoneutralization on the behavioral response to the same social stressor was also studied. Stress was produced using social defeat in a resident-intruder paradigm, in which an intruder male rat, equipped with an indwelling IV catheter, was confronted with a dominant resident male rat. To minimize the physical component of the agonistic interaction, the intruder was protected immediately after the resident's first attack in a Plexiglas/wire-mesh enclosure. In the following time interval, the resident continued to threaten the protected intruder, which showed a significant increase in plasma immunoreactive adrenocorticotropic hormone (ACTH) and corticosterone levels compared to those measured in rats exposed to a control procedure. The hypothalamo-pituitary-adrenal (HPA) axis response to social defeat stress was totally abolished by pretreatment with an anti-CRF serum (0.3 ml IV) but not an anti-AVP serum (0.75 ml IV). An animal model for anxiety in rodents, the elevated plus-maze, was used to study the emotional response to social defeat stress in rats given anti-CRF serum or normal serum. A significant reduction of open-arm exploration was observed in defeated rats tested 10 min after the end of the agonistic interaction when compared with control animals for all antisera treatment group, indicating an "anxiogenic-like" emotional response to the social defeat stress. Pretreatment with anti-CRF serum did not affect the behavioral performance of defeated and control rats. These results suggest that: 1) social defeat stress produced an activation of the HPA axis in the rat which is mediated by hypophysiotrophic CRF but not AVP; and 2) the peripheral activation of the HPA axis induced by social defeat stress is not involved in the behavioral response to stress as measured in the elevated plus-maze.

Adrenocorticotropic Hormone↗

Cocaine-induced expression of striatal c-fos in the rat is inhibited by NMDA receptor antagonists.

To assess the possible involvement of NMDA receptors in mediating the expression of striatal c-fos by cocaine injection, we investigated the effects of the noncompetitive NMDA receptor antagonists, ketamine and (+)-5-methyl-10,11-dihydro-5H-dibenzo[a,d]cyclohepten-5,10-imine hydrogen maleate (MK-801), as well as the competitive NMDA receptor antagonist, 3-(2-carboxypiperazin-4-yl)-propyl-1-phosphonic acid (CPP), in the perikarya of cocaine-treated rat brains. As previously shown by our group, administration of 20 mg/kg cocaine (IP) resulted in the immunocytochemical expression of the protooncogene in numerous cells of the caudate putamen (dorsal/sensorimotor striatum). A ketamine mixture anesthetic (2 mg/kg), however, administered 30 min prior to cocaine exposure completely blocked such genomic expression. Pretreatment with MK-801 (1 mg/kg) or CPP (5 mg/kg) also interfered, albeit to a lesser extent, with the expression of c-fos by cocaine in awake animals. These results indicate that cocaine induction of cellular c-fos in the caudate putamen is mediated at least in part by NMDA-sensitive receptors.

Animals↗

Centrally injected interleukin-1 beta inhibits the hypothalamic LHRH secretion and circulating LH levels via prostaglandins in rats.

Intracerebroventricular (icv) infusion of interleukin-1 beta (IL-1 beta) significantly lowers plasma LH levels in castrated male rats, and interferes with LHRH release into the median eminence of proestrus female rats. We have investigated the potential role of arachidonic acid metabolites in mediating these inhibitory effects, by administering indomethacin (INDO, a cyclooxygenase inhibitor) or nor- dihydroguaiaretic acid (NDGA, a lipoxygenase inhibitor) 15 min prior to injection of the cytokine. While not measurably altering basal LH or LHRH secretion in castrated or proestrus rats, respectively, INDO completely reversed the action of IL-1 beta on the secretion of these 2 hormones. In contrast, NDGA did not alter IL-1-induced decreases in LH release. The peripheral administration of endotoxin (LPS) also interferes with LH release. Because the iv injection of IL-1 does not alter LH secretion, this effect is believed to be at least in part mediated by increased synthesis of cytokines within the CNS. We observed that in contrast to results obtained in rats injected with IL-1 icv, INDO did not reverse the inhibitory action of LPS. Our results thus suggest either that central IL-1 is not the primary modulator of LPS-induced decrease in LH values, or that pathways other than those involving arachidonic acid are important.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Female rats release more corticosterone than males in response to alcohol: influence of circulating sex steroids and possible consequences for blood alcohol levels.

The hypothalamic-pituitary-adrenal (HPA) axis of female rats is more responsive to a variety of stimuli than that of males. Proestrous females are also reported to release more ACTH and corticosterone in response to restraint stress than females at other stages of the estrous cycle. Finally, blood alcohol levels (BALs) reached in response to a standard dose of alcohol also indicate the presence of a gender specificity, with females exhibiting higher BALs than males. The aim of this study was therefore 2-fold: first, we investigated the influence of gender on the ability of alcohol to increase plasma ACTH and corticosterone secretion in the rat. Second, we tested the hypothesis that corticosterone alters alcohol metabolism and asked whether this might represent a mechanism underlying the sex difference in BALs. We observed that compared with intact males, intact females taken at random stages of the estrous cycle secreted significantly (p < 0.01) more ACTH and corticosterone in response to alcohol (0.2-1.8 g/kg). Within females, the intraperitoneal administration of alcohol was followed by higher plasma ACTH and corticosteroids levels during proestrus and estrus, compared with diestrus. Removal of circulating sex steroids abolished the gender difference in terms of ACTH secretion, but ovariectomized females still released more corticosterone than castrated males in response to 0.6 and 1.8 g alcohol/kg. This difference could not be explained by a sex-related component of pituitary responsiveness to corticotropin-releasing factor.(ABSTRACT TRUNCATED AT 250 WORDS)

Alcohol Drinking↗

Prenatal alcohol exposure blunts interleukin-1-induced ACTH and beta-endorphin secretion by immature rats.

The functional relationship between the immune and the hypothalamic-pituitary-adrenal (HPA) axis [and in particular the release of pro-opiomelanocortin (POMC)-related peptides and corticosteroids induced by interleukins (ILs)] is essential for coordinating the appropriate immune responses to pathogens. Exposure of pregnant mammalian females to alcohol results in abnormal immune functions in the offspring, as well as in altered HPA axis activity. We therefore tested the hypothesis that prenatal alcohol exposure might modify the stimulatory action of ILs on the HPA axis of the pups, thus providing a mechanisms through which this treatment results in increased rate of infectious or inflammatory processes. Pregnant dams were fed a liquid alcohol diet throughout gestation. Dams with free access to food (ad libitum group), or dams fed an isocaloric diet in which sucrose replaced alcohol (pair-feeding), were also included. At 22-24 days of age, the pups were injected intraperitoneally with IL-1 beta, corticotropin-releasing factor (CRF), or the vehicle. Blood samples obtained 1-2 hr later indicated that the alcohol diet resulted in significantly blunted adrenocorticotropic hormone (ACTH) and beta-endorphin, but not corticosterone release, in response to IL-1 beta. Pair-fed pups also showed some decrease in their pituitary response, although to a lesser degree. In contrast, there was no measurable difference in the ability of CRF to increase plasma ACTH levels. These results suggest that prenatal exposure to alcohol interferes with the stimulatory action of IL-1 beta on the secretion of POMC-related peptides, a phenomenon probably not caused by decreased pituitary responsiveness to CRF.(ABSTRACT TRUNCATED AT 250 WORDS)

Adrenocorticotropic Hormone↗

Acute interactions between cytokines and alcohol on ACTH and corticosterone secretion in the rat.

Possible interactions between alcohol (EtOH) and interleukins (ILs) were studied in intact and adrenalectomized (ADX) rats. In intact animals, administration of 0.3 or 0.65 g EtOH/kg 30 min to 4 hr earlier did not cause measurable changes in plasma adrenocorticotropic hormone (ACTH) levels measured immediately before acute intravenous injection of IL-1 beta or endotoxin [lipopolysaccharide (LPS)], and did not interfere with the ability of either treatments to increase ACTH secretion. Administration of 1.5 g EtOH/kg, on the other hand, resulted in elevated plasma ACTH and corticosterone 30 min later, and significantly decreased the magnitude of the ACTH response to IL-1 beta in both intact and ADX rats. When administered 4 hr before the cytokine, however, 1.5 g EtOH/kg did not alter the responsiveness of the hypothalamic-pituitary-adrenal (HPA) axis to IL-1 beta. Studies of the reverse paradigm were conducted in rats injected with LPS, a means of increasing endogenous IL-1 levels. Intraperitoneal administration of alcohol 4 hr later resulted in measurably blunted ACTH release by intact rats, but not ADX animals. We conclude that when prior alcohol administration does not result in elevated ACTH levels at the time of IL-1 injection, no alteration in the HPA axis' response to the cytokine is observed. As we have shown in other experiments that circulating levels of corticosterone were temporarily increased by all doses of alcohol used in the present study, these results suggest that steroid feedback did not play a major role in modulating the ability of IL-1 beta to activate the HPA axis.(ABSTRACT TRUNCATED AT 250 WORDS)

Adrenocorticotropic Hormone↗

Effect of exposure to an alcohol diet for 10 days on the ability of interleukin-1 beta to release ACTH and corticosterone in the adult ovariectomized female rat.

Adult ovariectomized female rats were fed an alcohol diet for 10 days. Animals fed ad libitum, or fed an isocaloric diet (pair-fed), were also included in all experiments. The intravenous injection of interleukin-1 beta caused dose-related increases in plasma adrenocorticotropic hormone (ACTH) levels in all three groups of rats. However, alcohol-fed animals showed a significant blunting of their ACTH, but not corticosterone response, in comparison with rats fed ad libitum or pair-fed. In contrast, corticotropin-releasing factor (CRF) injection caused overall statistically comparable ACTH secretory rates in all animals, although small differences were observed in some cases. Exposure to mild electroshocks for 30 min significantly increased ACTH values in all animals, but alcohol-fed rats again showed blunted release. In this paradigm, pair-fed animals exhibited a response that was intermediate between that of the ad libitum and alcohol-fed groups. We conclude that chronic alcohol consumption decreases the response of the hypothalamic-pituitary axis to cytokines and mild footshocks. This suggests that the activity of both CRF nerve terminals in the median eminence, and of CRF perikarya in the hypothalamus, is inhibited by this treatment, although pituitary responsiveness to CRF appears unchanged.

Adrenocorticotropic Hormone↗

CRF alters the infundibular LHRH secretory system from the medial preoptic area of female rats: possible involvement of opioid receptors.

Corticotropin-releasing factor (CRF) is a potent factor involved in the antireproductive effects of various stressors. However, the central mechanisms by which CRF modulates the hypothalamic-pituitary-gonadal (HPG) axis are not well understood. In order to verify whether CRF is able to directly influence luteinizing hormone-releasing hormone (LHRH) secretory activity at the level of the medial preoptic area (MPOA), CRF was chronically or acutely injected bilaterally into this hypothalamic area. Ten days before the experiments, female rats were implanted with a permanent double-guide cannula which was stereotaxically positioned close to the MPOA. Chronic administration of rat CRF (rCRF) was accomplished by means of two miniosmotic pumps connected to double internal cannula. Acute bilateral infusion of rCRF into the MPOA was performed in unrestrained ovariectomized (OVX) rats and during the afternoon of proestrus. Ten minutes before rCRF treatment, antagonists of opioid receptors (mu, mu 1, or kappa) were infused bilaterally into the MPOA. Hypothalamic LHRH release as well as circulating gonadotropins were determined using a push-pull cannula implanted into the median eminence (ME), and a catheter connected to the jugular vein, respectively. Chronic rCRF treatment in the MPOA decreased (p < 0.05) plasma LH levels but did not modify follicle-stimulating hormone release in OVX rats. A significant inhibition of LH secretion was first observed 80 min after the acute rCRF infusion into the MPOA; pretreatment with nor-Binaltorphimine (antagonist of kappa-receptors) did not measurably attenuate this effect. In contrast, bilateral administration of beta-Funaltrexamine (antagonist of mu-opioid receptors) or naloxonazine (mu 1-antagonist) partially attenuated the inhibitory effect of rCRF on plasma LH levels. Similarly, injections of rCRF bilaterally into the MPOA suppressed hypothalamic LHRH release into the ME and this effect was partially reversed by a previous administration of opioid mu- or mu 1-receptor antagonists. In contrast to rCRF injection into the MPOA, administration of rCRF into the paraventricular nucleus the arcuate nucleus of the hypothalamus and directly into the ME were without significant effect on hypothalamic LHRH release in proestrus rats. In conclusion, the present data show that from among the hypothalamic sites tested, only the MPOA proved susceptible to CRF-induced alteration of LHRH neuronal activity during proestrus afternoon in rats. The release of opioids from nerve terminals located in the MPOA, which in turn binds and activates mainly type mu 1-receptors, might contribute to this inhibitory influence of CRF on LHRH release in the infundibular system.

Animals↗

Relationship between antigen-induced immune stimulation and activation of the hypothalamic-pituitary-adrenal axis in the rat.

This study investigates acute (12 h) and long-term (13 days) effects of antigen challenge on hypothalamic-pituitary-adrenal (HPA) axis activation. Male rats were injected with phosphocholine-keyhole limpet hemocyanin (PC-KLH); immunoglobulin M levels were followed as an indication of lymphocyte stimulation, whereas changes in the activity of the HPA axis were examined by measuring plasma ACTH and corticosterone levels. Our results indicated that a moderate dose of PC-KLH antigen (75 micrograms) yielded a robust anti-PC-KLH antibody response (peaking at days 5-7) in the absence of changes in ACTH and corticosterone secretion. A 3-fold increase in antigen dose (225 micrograms) induced a small increase in corticosterone on day 5 that appeared to correlate with the peak anti-PC-KLH response. In contrast, injection of interleukin-1 beta, lipopolysaccharides, or Newcastle disease virus caused acute increases in ACTH and corticosterone levels. As moderate doses of the antigen, PC-KLH, failed to induce detectable changes in the HPA axis while causing a strong antibody response, our results support the idea that HPA activation is not an obligatory step in the neuroimmune cascade after immune challenge. We conclude that HPA stimulation via immune modulation depends, in part, upon the form and strength of immune challenge. Certain antigen-driven responses may bypass HPA stimulation which could play an important role in B and T lymphocyte immunity to foreign antigens.

Adrenocorticotropic Hormone↗

The chronic intracerebroventricular infusion of interleukin-1 beta alters the activity of the hypothalamic-pituitary-gonadal axis of cycling rats. I. Effect on LHRH and gonadotropin biosynthesis and secretion.

We have previously reported that the acute injection of interleukin-1 beta (IL-1 beta) into the brain ventricles of intact female rats promptly decreases LHRH release and inhibits gene expression of this peptide in the medial preoptic area (MPOA). The present studies were therefore designed to determine whether continuous exposure to the cytokine would disrupt the estrous cycle. IL-1 beta was injected intracerebroventricularly for 4-6 days at a rate of 4 ng/h. Daily vaginal smears were obtained to follow the cycle; pituitary LH and FSH secretion were measured at regular intervals. Steady state levels of LH and FSH messenger RNA (mRNA) in the pituitary, and LHRH gene expression in the MPOA, were measured at the end of the treatment. Infusion of IL-1 beta caused a total disruption of the estrous cycle, characterized by persistent smears indicative of the diestrus stage. When compared to animals treated with the vehicle, rats infused with IL-1 beta showed a significant decrease in circulating LH concentrations, which was accompanied by lowered mRNA levels in the pituitary. This statistical difference (P < 0.01) persisted even when treated rats were compared to control in a similar stage of the cycle (i.e. diestrus). Plasma FSH levels remained low at all times after IL-1 beta infusion but showed the expected cyclic changes in control animals. At the end of treatment, LHRH gene expression was also markedly suppressed in LHRH neurons distributed between the rostral preoptic area/organum vasculosum of the lamina terminalis and the MPOA of these animals. These results indicate that prolonged infusion of IL-1 beta into brain ventricles disrupts the estrous cycle, an event accompanied by decreased biosynthesis/release of LHRH and gonadotropins. We report in a related study that IL-1-treated rats also show increased plasma progesterone levels. However, it is improbable that this change was responsible for the interruption of the cycle described here; indeed we have previously observed that the central administration of IL-1 beta to intact rats resulted in an immediate blockade of the spontaneous activity of LHRH perikarya during the afternoon of proestrus and significantly decreased LHRH mRNA levels in gonadectomized animals. Taken together, these data suggest that the primary effect of IL-1 beta is at the level of LHRH perikarya, and that the resulting interruption of the cycle is caused by altered LHRH neuronal activity and blunted gonadotropin secretion.

Animals↗

The chronic intracerebroventricular infusion of interleukin-1 beta alters the activity of the hypothalamic-pituitary-gonadal axis of cycling rats. II. Induction of pseudopregnant-like corpora lutea.

The acute administration of interleukin-1 beta (IL-1 beta) into the brain ventricles of rats has been shown to cause a significant decrease in plasma LH levels, a phenomenon primarily mediated through inhibition of LHRH release. However, there are no studies of the long-term consequences of IL-1 beta injected intracerebroventricularly on the hypothalamic-pituitary-gonadal axis. In particular, we became interested in determining whether IL-1 beta exerts deleterious effects on reproductive parameters, and to what extent they might be caused by a lowering of circulating gonadotropins. In the present experiments, we therefore investigated the effects of the infusion of IL-1 beta to intact cycling female rats and compared them to those observed in rats injected with a potent LHRH antagonist. Although blockade of LHRH receptors caused a modest and delayed inhibition of progesterone secretion, infusion of IL-1 beta (4 ng/h for 4-6 days) was accompanied by persistent and significant increases in plasma P4 levels. In these rats, the PRL release was erratic, with low values during the morning and generally extremely elevated values during the night. The volume of the corpora lutea-I (CL-I) of rats exposed to IL-1 beta, but not to the vehicle or the LHRH antagonist, was significantly increased, and the lutein cells showed extensive hypertrophy. These results indicate that prolonged infusion of IL-1 beta into the brain of cycling rats blocks luteolysis in newly formed CL. These changes were not present in rats injected with the LHRH antagonist, suggesting that they were not primarily related to decreases in gonadotropin secretion. We propose that the high plasma PRL levels may play a role in the changes in ovarian activity which we observed, through other mechanisms, such as sustained increases in adrenal epinephrine and/or glucocorticoids, may also be involved. These findings indicate a novel role for central IL-1 beta in the prevention of luteolysis and the transformation of the CL of the cycle into a CL of pseudopregnancy.

Animals↗

Corticotropin-releasing factor activates c-fos, NGFI-B, and corticotropin-releasing factor gene expression within the paraventricular nucleus of the rat hypothalamus.

Studies examining the regulation of hypothalamic CRF biosynthesis have provided substantial information regarding the relevance of this peptide in neuroendocrine homeostasis. However, the consequences of elevated CRF levels within the mammalian central nervous system on regulation of CRF production within the paraventricular nucleus (PVN) of the hypothalamus remain unclear. The expression of the immediate early gene c-fos has been used and validated as a marker for neural systems activated by a variety of extracellular stimuli and has been especially useful when examining activation of central neuroendocrine systems such as those involved in the response to stressful stimuli. The present study investigates the effects of injecting CRF into the lateral ventricle of conscious rats, firstly on the expression of two separate immediate early genes, c-fos and NGFI-B within the hypothalamic PVN, and secondly on the expression of CRF mRNA itself, as determined by quantitative in situ hybridization. Expression of Fos protein was also examined by immunohistochemical techniques. Intracerebroventricular (icv) injection of CRF increased the gene expression of both c-fos and NGFI-B in the parvocellular division of the PVN 30 min after injection. Fos immunoreactivity increased in this same region between 30-60 min, whereas expression of the CRF gene itself increased 2-fold 60 min after injection and remained elevated 2 h after treatment. A positive hybridization signal for CRF was observed over Fos-immunoreactive neurons within the parvocellular division of the PVN. Finally, we observed that all CRF-induced changes in gene expression were abolished by pretreatment with the competitive CRF antagonist alpha-helical CRF-(9-41). The time-related changes in expression of the genes measured imply that the expression of both c-fos and NGFI-B occurs before a significant increase in the expression of CRF. The results also suggest that CRF may act in a positive manner to regulate its own biosynthesis.

Animals↗

Immunocytochemical and in situ hybridization detection of hypothalamic neuropeptides from postmortem unfixed rat brains.

The effects of postmortem delay on neuropeptide-containing perikarya was studied in the paraventricular nucleus (PVN) of the rat hypothalamus. Serial sections from brains kept in the skull after death for 6 h and immunocytochemically processed for oxytocin (OT), vasopressin (AVP) and corticotropin releasing factor (CRF) or hybridized in situ for CRF resulted in the well preserved phenotypic expression and stability of mRNA of the aforementioned neuropeptides. Furthermore in most cases, AVP and CRF expression was discernibly enhanced relative to prefixed immunopositive tissue. Results of this study suggest that postmortem variables do not significantly alter the neurochemical coding of magnocellular or parvocellular neurosecretory systems, and support the view that rat and human brain topography can be investigated from tissue left in situ after death for a relatively long period of time.

Adrenalectomy↗

The 5-hydroxytryptamine agonist fenfluramine increases Fos-like immunoreactivity in the brain.

This study was designed to assess the effects of the 5-hydroxytryptamine (5-HT) indirect agonist fenfluramine on the brain distribution of Fos- and corticotropin-releasing factor-like immunoreactivity (F-LI and CRF-LI). A single intraperitoneal injection of either DL-fenfluramine (25 mg/kg) or saline was given to resting Sprague-Dawley rats housed on a 12-12 h light-dark cycle and fed libitum. Sixty min following injections, rats were killed and brains removed and sliced (40 microns thick) in a coronal plane from the anterior olfactory bulb to the brainstem. Brain slices were then stored at -40 degrees C pending the tissue localization of F-LI and CRF-LI. F-LI and CRF-LI were determined by means of a double immunostaining procedure using the peroxidase-avidin:biotin complex (ABC) method. Fenfluramine injection led to a marked increase in F-LI in the caudate-putamen (CPu), the parvocellular division of the hypothalamic paraventricular nucleus (PVN), and the central amygdaloid nucleus (CeA). In the PVN, most of the F-LI was co-localized with CRF-LI. There was no attempt to identify which types of neurons displayed F-LI in CPu and CeA. While F-LI was readily observable in all rats treated with fenfluramine, it was not discernible in the control animals. This study provides evidence for an involvement of the immediate-early genes c-fos in the central action of fenfluramine.

Amygdala↗

Differential effects of central and peripheral injection of interleukin-1 beta on brain c-fos expression and neuroendocrine functions.

Cytokines such as interleukin-1 beta (IL-1 beta) alter the activity of the hypothalamic-pituitary-adrenal (HPA) and hypothalamic-pituitary-gonadal (HPG) axes in the rat. However, the brain sites at which IL-1 beta exerts these effects have not been well identified. The present study sought to identify some of these sites, using c-fos protein expression as an index of cellular activation. We also attempted to determine possible differences between the effects of peripheral and central injection of IL-1 beta on the activation of specific brain areas. Castrated male rats received intravenous (i.v.) or intracerebroventricular (i.c.v.) injections of IL-1 beta through a jugular catheter or a permanent cannula implanted in the right lateral ventricle, respectively. Blood samples were taken before, as well as 30 and 120 min after i.v. or i.c.v. IL-1 beta infusion in order to measure plasma ACTH and LH levels. Immediately thereafter, the rats were anesthetized with pentobarbital, then perfused. Their brains were removed and postfixed for one hour. Thirty-microns frozen sections were cut and approximately every fourth tissue section was processed for c-fos expression by an avidin-biotin-peroxidase method. Both i.v. (1 microgram) and i.c.v. (100 ng) injection of IL-1 beta significantly increased plasma ACTH levels, but only i.c.v. treatment measurably inhibited LH secretion. I.c.v. infusion of the cytokine markedly augmented c-fos expression in the paraventricular nucleus (PVN) and the arcuate nucleus (ARC) of the hypothalamus. A large amount of CRF cells in the PVN contained labelled c-fos protein (as measured by a double labelling technique), which indicates that CRF perikarya in this hypothalamic region are activated by the central administration of IL-1 beta. In contrast, i.v. injection of IL-1 beta did not significantly alter c-fos expression in the PVN or the ARC of the hypothalamus. These results suggest that the increased HPA axis activity which follows the peripheral IL-1 beta administration, a phenomenon previously shown to depend on endogenous CRF, does not require immediate activation of hypothalamic CRF perikarya. Thus our results indicate that the stimulatory effect of blood-born cytokine may be exerted at the level of nerve terminals in the median eminence. In contrast, i.c.v.-injected IL-1 beta appears to activate the HPA axis through a stimulation of CRF neurons within the parvocellular part of PVN.(ABSTRACT TRUNCATED AT 400 WORDS)

Adrenocorticotropic Hormone↗