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Biomedical subjects

R Dantzer

Publications and source records attributed to R Dantzer.

At least 145 records · Page 8Linked to original sources

Sickness behavior as a new target for drug development.

Sickness behavior refers to the nonspecific symptoms (anorexia, depressed activity, loss of interest in usual activities, disappearance of body-care activities) that accompany the response to infection. Increasing evidence suggests that these symptoms are part of an organized defense response to antigenic challenge and that they are mediated by the neural effects of cytokines such as interleukin 1. An understanding of the mechanisms involved in these effects should permit development of new drugs aimed at decreasing sickness or promoting recovery processes.

Cytokines↗

Chronic intracerebral infusions of vasopressin and vasopressin antagonist modulate behavioral effects of interleukin-1 in rat.

To assess the role of sex dependent brain vasopressinergic transmission in the modulation of the neural effects of interleukin-1, castrated male rats that are deficient in vasopressin were implanted intracerebroventricularly with an Accurel collodion mini device containing 10 micrograms AVP whereas intact male rats were implanted with a similar device containing 50 micrograms of dPTyr(Me)AVP, a specific antagonist of the vasopressor-like receptors of vasopressin. Control rats in each sex group were implanted with an Accurel device containing distilled water. Acute intracerebroventricular injection of 1.25-2.50 ng recombinant human interleukin-1 beta decreased in a dose and time-dependent manner social investigation of a juvenile conspecific. This effect was more intense in intact rats chronically infused with dPTyr(Me)AVP and less intense in castrates infused with AVP. These results confirm the modulatory role of sex-dependent vasopressinergic neurotransmission on the neural effects of interleukin-1.

Analysis of Variance↗

Modulation of the behavioural effects of interleukin-1 in mice by nitric oxide.

Interleukin-1 is a cytokine which mediates the host response to infection and inflammation and is responsible for sickness behaviour. Inhibition of nitric oxide synthase activity by N omega nitro-L-Arginine-Methyl-ester (30 mg kg-1, i.p.) potentiated the depressive effects of interleukin-1 (375 ng, i.p.) on social investigation in mice. This effect was attenuated by L-arginine (180 mg kg-1, i.p.) but not by D-arginine. The same treatment did not alter the body weight loss induced by interleukin-1. These results suggest that nitric oxide plays a protective role in the neural effects of interleukin-1.

Amino Acid Oxidoreductases↗

In vivo administration of recombinant growth hormone or gamma interferon activities macrophages: enhanced resistance to experimental Salmonella typhimurium infection is correlated with generation of reactive oxygen intermediates.

Purified and recombinant forms of growth hormone (GH) as well as of recombinant rat gamma interferon (IFN-gamma) enhance the survival of rats deprived of endogenous pituitary GH secretion by hypophysectomy (HX rats) and infected with virulent Salmonella typhimurium. Macrophages obtained from rats with intact pituitaries (pituitary-intact rats) or HX rats that were treated in vivo with either GH or the closely related hormone prolactin released elevated (P less than 0.05) levels of superoxide anion (O2-) after in vitro opsonized-zymosan stimulation compared with those from placebo-treated animals. These levels of O2- release were similar in magnitude to those of macrophages from rats treated in vivo with IFN-gamma. In time course in vivo macrophage activation studies, both IFN-gamma and GH significantly increased O2- secretion within 24 h, with maximal secretion occurring at day 3. Macrophages obtained from pituitary-intact and HX rats injected in vivo with GH also released elevated (P less than 0.05) levels of hydrogen peroxide (H2O2) and displayed enhanced (P less than 0.01) phagocytic activity toward opsonized Listeria monocytogenes in vitro. The mechanism of action of GH in vivo is likely to be a direct one because resident peritoneal macrophages from rats could be primed in vitro for enhanced secretion of O2- following triggering of these cells with opsonized zymosan. These data show that in vivo administration of two closely related pituitary hormones, GH and prolactin, can effectively prime macrophages, which is consistent with the hypothesis that GH mediates resistance to S. typhimurium by a direct stimulatory action on macrophages.

Animals↗

Growth hormone augments superoxide anion secretion of human neutrophils by binding to the prolactin receptor.

Recombinant human growth hormone (HuGH) and human prolactin (HuPRL), but not GH of bovine or porcine origin, prime human neutrophils for enhanced superoxide anion (O2-) secretion. Since HuGH, but not GH of other species, effectively binds to the HuPRL receptor (HuPRL-R), we used a group of HuGH variants created by site-directed mutagenesis to identify the receptor on human neutrophils responsible for HuGH priming. A monoclonal antibody (MAb) directed against the HuPRL-R completely abrogated O2- secretion by neutrophils incubated with either HuGH or HuPRL, whereas a MAb to the HuGH-R had no effect. The HuGH variant K172A/F176A, which has reduced affinity for both the HuGH-binding protein (BP) and the HuPRL-BP, was unable to prime human neutrophils. This indicates that priming is initiated by a ligand-receptor interaction, the affinity of which is near that defined for receptors for PRL and GH. Another HuGH variant, K168A/E174A, which has relatively low affinity for the HuPRL-BP but slightly increased affinity for the HuGH-BP, had much reduced ability to prime neutrophils. In contrast, HuGH variant E56D/R64M, which has a similar affinity as wild-type HuGH for the HuPRL-BP but a lower affinity for the HuGH-BP, primed neutrophils as effectively as the wild-type HuGH. Finally, binding of HuGH to the HuPRL-BP but not to the HuGH-BP has been shown to be zinc dependent, and priming of neutrophils by HuGH was also responsive to zinc. Collectively, these data directly couple the binding of HuGH to the HuPRL-R with one aspect of functional activation of human target cells.

Adult↗

Pituitary epithelial cell implants reverse the accumulation of CD4-CD8- lymphocytes in thymus glands of aged rats.

Although implantation of GH3 pituitary epithelial cells has been shown to reverse thymic aging in rats, the differentiation pattern of T-lymphocytes within the reconstituted thymus glands has not been investigated. Syngeneic GH3 cells were implanted into 22-month-old female (old) Wistar-Furth rats. Eight weeks later, thymus glands and thymocyte subpopulations were compared to those in aged (24-month-old) and young (3-month-old) female Wistar Furth rats. We confirmed that implantation of GH3 cells increased (P less than 0.05) not only thymus size but also the number of thymocytes isolated from aged rats. Flow cytometric analysis using dual color direct immunofluorescence with fluorescein isothiocyanate-labeled anti-CD4 (W3/25) and phycoerythrin-labeled anti-CD8 (OX 8) monoclonal antibodies revealed that thymus glands from young rats had approximately 20% CD4-CD8- and 30% CD4+CD8+ cells. Thymus glands from old rats contained greater than 50% more CD4-CD8- cells and a reduced percentage of CD4+CD8+ lymphocytes compared to those of young rats (P less than 0.05). Moreover, both of these age-associated changes were reversed (P less than 0.05) by implanting GH3 cells. GH3-treated aged rats also had a significantly (P less than 0.05) greater proportion of CD4+CD8- thymocytes compared to aged control rats. There were no differences among the three groups of rats in the percentage of CD4-CD8+ thymocytes or in the percentage or intensity of cells expressing the T-cell markers CD3, T-cell receptor, or OX19. These results show that in aged rats, intrathymic maturation is inhibited at the key transitional stage where double negative cells differentiate into double positive cells, which may limit the diversity of the T-cell repertoire. The data also extend earlier results by demonstrating that GH3 epithelial cells promote not only growth, but also the differentiation of T-lymphocytes in the aging rat thymus.

Aging↗

Vasopressin involvement in antipyresis, social communication, and social recognition: a synthesis.

This review concentrates on the sexually dimorphic neuronal cells and fibers that contain arginine-vasopressin (AVP) and are present in several extrahypothalamic brain areas besides the neurohypophyseal system. Of particular interest are the vasopressinergic neurons that project from the bed nucleus of the stria terminalis and the medial amygdala to the lateral septum because their content of vasopressin is a positive function of circulating levels of testosterone. Physiological and behavioral data suggest that androgen-dependent vasopressin plays an important role in antipyresis and social recognition. In addition, there is evidence that extrahypothalamic AVP-sensitive neurons and hypothalamic AVP-containing neurons control scent marking, a form of social communication in hamsters, in a sex-dependent manner. The interrelationships of these different functions of brain vasopressin are discussed.

Androgens↗

Interleukin-1 mediates behavioural but not metabolic effects of tumor necrosis factor alpha in mice.

Recombinant human tumor necrosis factor alpha (TNF alpha) decreases social exploration and induces weight loss in mice in a dose- and time-dependent manner (2.5-40 micrograms/mouse). To assess the role of interleukin-1 (IL-1) in these effects, mice pretreated with IL-1 receptor antagonist (IL-1ra, 500 micrograms/mouse, i.p.) were injected with 25 micrograms TNF alpha. Pretreatment with IL-1ra antagonized the depressive effects of TNF alpha on behaviour but only partially attenuated the weight loss induced by this cytokine. These results suggest that TNF alpha-induced sickness behaviour is mediated mainly by endogenously released IL-1 whereas metabolic changes are dependent on the release of other additional cytokines.

Animals↗

Androgen-dependent vasopressinergic neurotransmission attenuates interleukin-1-induced sickness behavior.

Castrated male rats were found to be more sensitive than intact male rats to the depressing effects of recombinant human interleukin-1 beta (Il-1) on social exploration. This was the case whether Il-1 was injected acutely (1-5 micrograms/rat, i.p.) or continuously, via an implanted osmotic mini-pump (2 micrograms Il-1 per day). In this latter case, tolerance developed more rapidly to the behavioral effects of Il-1 than to its effects on body weight. Since there is evidence that extrahypothalamic arginine vasopressin (AVP) acts as an endogenous antipyretic in the brain and the local concentration of AVP is dependent on circulating androgens, we tested the hypothesis that the enhanced sensitivity of male rats to the behavioral effects of Il-1 was caused by a reduced brain concentration of vasopressin. Central injection of AVP (2.5 ng, i.c.v.) attenuated the behavioral effects of Il-1 (5 ng, i.c.v.) and this effect was more marked in castrated than in intact male rats. Conversely, central injection of an antagonist of the vasopressor receptors of AVP, dPTyr(Me)AVP (15 ng, i.c.v.) potentiated the behavioral effects of Il-1 (1 ng, i.c.v.) in intact but not in castrated male rats. These results are consistent with the possibility that androgen-dependent vasopressinergic neurons oppose the neural effects of Il-1.

Androgens↗

The pituitary gland is required for protection against lethal effects of Salmonella typhimurium.

One-half of pituitary-intact or sham-operated rats survive infection with 10(9) colony-forming units of Salmonella typhimurium, whereas rats without a pituitary gland all die within a few days. When the dose of S. typhimurium is reduced 600-fold, 15-25% of the hypophysectomized rats survive, and the survival rate is significantly enhanced by administration of tetracycline, recombinant interferon gamma (IFN-gamma), or recombinant growth hormone (GH). The protective effect of GH is abolished by heat inactivation or with an antibody to GH. Spleens from normal and hypophysectomized rats treated with tetracycline, IFN-gamma, or GH have 59-99% fewer bacteria 5 days after infection as compared to control rats. Peritoneal macrophages from hypophysectomized rats that are infected in vitro with S. typhimurium kill half as many extracellular bacteria as compared to pituitary-intact rats, and this bactericidal capacity is significantly augmented 75-95% by either GH or IFN-gamma. These data establish that the pituitary gland is essential for homeostasis during an infectious episode and that GH plays an important role in host resistance by augmenting the ability of macrophages to kill S. typhimurium.

Animals↗

Behavioural effects of peripherally injected interleukin-1: role of prostaglandins.

To investigate the possible mediation by prostaglandins of changes in behaviour induced by peripheral injection of interleukin-1 (IL-1), two types of behavioural tests were chosen, social exploration in mice and schedule-controlled behaviour in rats. Mice treated with 1 and 2.5 micrograms recombinant human IL-1 beta showed a time- and dose-dependent decrease in exploration of a juvenile conspecific. This effect was completely blocked by pretreatment with 10 mg/kg indomethacin or 10 mg/kg piroxicam, but not with 50 mg/kg aspirin. The disruption of operant responding induced by 5 micrograms IL-1 in rats was also suppressed by pretreatment with 5 mg/kg indomethacin or 10 mg/kg piroxicam. These results indicate that prostaglandins mediate the behavioural effects of peripherally injected IL-1.

Animals↗

Hypophysectomy inhibits the synthesis of tumor necrosis factor alpha by rat macrophages: partial restoration by exogenous growth hormone or interferon gamma.

We recently demonstrated that GH and interferon-gamma (IFN gamma) act in a similar manner to prime macrophages in vitro and in vivo for enhanced superoxide anion release. In this report we investigated the physiological role of the pituitary gland and GH in in vivo priming of resident peritoneal macrophages for the synthesis of tumor necrosis factor-alpha (TNF alpha) in vitro. Compared to normal rats, hypophysectomized animals had an 83% reduction in macrophage production of TNF alpha after in vitro stimulation with lipopolysaccharide. Sham operation had no significant effect on the ability of macrophages to secrete TNF alpha in response to lipopolysaccharide. Both native pituitary-derived porcine GH (48 micrograms/rat.9 days) and native pituitary-derived rat GH (96 micrograms/rat.9 days) more than tripled the in vitro production of TNF alpha by macrophages from hypophysectomized rats (342 and 358 vs. 112 U/mg protein for placebo-treated rats, respectively). Each of these preparations of GH also increased growth more than 6-fold in hypophysectomized rats (32 and 30 g vs. 5 g in placebo controls). Heat inactivation of native pituitary-derived porcine GH significantly reduced its in vivo ability to augment both TNF alpha synthesis by macrophages and body growth. Recombinant rat IFN gamma (2000 U/rat.9 days) more than tripled the production of TNF alpha by macrophages from hypophysectomized rats (343 vs. 112 U/mg protein). In contrast to its in vivo effects, addition of GH in vitro to macrophages from hypophysectomized rats did not prime these cells for the synthesis of TNF alpha, indicating an indirect mechanism of action for GH. To further test the biological relevancy of GH with respect to synthesis of TNF alpha, hemorrhagic necrosis of TNF alpha-sensitive murine methyl-cholanthrene-induced tumors was assessed in pituitary-intact mice. Native porcine GH (133 micrograms/mouse.7 days) significantly augmented both the necrosis to tumor ratio and the hemorrhage to tumor ratio. These findings establish the physiological relevance of the pituitary gland and GH in the priming of macrophages for TNF alpha synthesis.

Animals↗

[Dissociation between peripheral and central components of tolerance to behavior effects of interleukin-1 in rats].

Interleukin-1 (Il-1) is an endogenous pyrogen which is released by accessory immune cells and which has potent neural effects. Rats implanted subcutaneously with an osmotic mini-pump delivering 2 micrograms Il-1 per day rapidly became tolerant to the behavioral and toxic effects of this cytokine. Acute challenge with Il-1 reversed this tolerance when the cytokine was injected intraperitoneally (3 micrograms/rat) but not when it was injected into the lateral cerebral ventricle (3 ng/rat). These results suggest a differential regulation of the peripheral and central receptors mediating the effects of Il-1.

Animals↗

Social recognition does not involve vasopressinergic neurotransmission in female rats.

Social recognition is the ability to recognize a previously investigated conspecific. This phenomenon has been shown to be modulated by androgen-dependent vasopressinergic transmission in intact but not in castrated male rats. The dependence of social recognition on vasopressinergic transmission was studied in female rats. In comparison to intact males, females showed less persistence in investigating juvenile conspecifics and held social memories for longer intervals. Social recognition was enhanced by peripheral injections of vasopressin (6 micrograms/kg) in both sexes. However, in contrast to what had been observed in males, social recognition in females was insensitive to the blocking effects of a vasopressor antagonist of vasopressin, dPTyr(Me)AVP (30 micrograms/kg, s.c.). These results suggest that social recognition is not mediated by vasopressinergic transmission in female rats.

Animals↗

Cerebral lateralization of olfactory-mediated affective processes in rats.

To determine whether processing of information is lateralized in the brain of non-human mammalian species, rats that had undergone ablation of the left or right olfactory bulb were compared to sham-operated animals and to bilaterally bulbectomized animals in their response to emotionally positive or negative social odours. Left-bulbectomized rats were impaired in their behavioural reaction but not in their hormonal response to an odour from a stressed conspecific. They fully retained, however, their ability to recognize a nonstressed juvenile conspecific on the basis of its olfactory characteristics. These results suggest that hemispheric asymmetries develop in mammals not for recognition of emotional stimuli but for association of emotional experiences with appropriate adaptive behaviour.

Affect↗

Androgen-dependent vasopressinergic neurons are involved in social recognition in rats.

Socal recognition of juvenile conspecifics by adult male rats has been shown to be modulated by vasopressin. Because part of the extrahypothalamic vasopressinergic innervation of the brain is androgen-dependent, the present experiments were undertaken to assess possible interactions between androgens and vasopressin in social recognition. Castrated male rats displayed a temporary disruption of social recognition when they were tested 1 week after surgery. There was no impairment, however, when they were tested every other day following surgery. The peripheral injection of a vasopressor antagonist of vasopressin, dPTyr(Me)AVP (30 micrograms/kg) impaired social recognition in normal male rats but was ineffective in castrated ones. This was not due to an effect of castration on the basic pharmacological properties of dPTyr(Me)AVP since the antagonist peptide was still able to block the facilitating effects of vasopressin on social recognition in castrated male rats. Implantation of a testosterone-filled capsule in castrated male rats restored sensitivity of social recognition to the action of the vasopressin antagonist. These results suggest that androgen-dependent vasopressinergic neurons are physiologically involved in the modulation of social recognition in male rats.

2-Amino-5-phosphonovalerate↗

Role of interferon-gamma in counteracting the suppressive effects of transforming growth factor-beta 2 and glucocorticoids on the production of tumor necrosis factor-alpha.

The multipotential cytokine, transforming growth factor-beta 2 (TGF-beta 2), is as effective as glucocorticoids in suppressing the production of tumor necrosis factor-alpha (TNF-alpha) by lipopolysaccharide (LPS)-stimulated macrophages, and this inhibition can be abrogated by exogenous interferon-gamma (IFN-gamma). Porcine alveolar macrophages triggered with LPS produce TNF-alpha as identified by complete blocking of cytotoxicity on WEHI 164 clone 13 cells in macrophage supernatants by a monoclonal antibody to human TNF-alpha. Platelet-derived porcine TGF-beta 2, at a concentration of 4 nM, inhibited LPS-induced production of TNF-alpha by 93%. Dexamethasone was as effective as TGF-beta 2, suppressing TNF-alpha production by 86% at a concentration of 4 nM. The natural but less potent glucocorticoid cortisol inhibited TNF-alpha production by 100% at a 100-fold higher concentration (400 nM). Recombinant PoIFN-gamma consistently primed LPS-triggered macrophages for increased production of TNF-alpha by 50-100%, and this priming was totally blocked by a polyclonal antibody to rPoIFN-gamma. Furthermore, the suppression in LPS-induced production of TNF-alpha caused by TGF-beta 2, dexamethasone, and cortisol could be reversed by addition of rPoIFN-gamma. These data show that alveolar macrophages can be effectively primed by rPoIFN-gamma even in the presence of moderately suppressive doses of TGF-beta 2 and antiinflammatory steroids.

Animals↗