Search PubMed⌕ Search

Biomedical subjects

R Landgraf

Publications and source records attributed to R Landgraf.

At least 127 records · Page 7Linked to original sources

The role of endogenous opioids in neurohypophysial and hypothalamo-pituitary-adrenal axis hormone secretory responses to stress in pregnant rats.

Endogenous opioid regulation of neurohypophysial and hypothalamo-pituitary-adrenal (HPA) axis hormone secretion in response to forced swimming (90 s in deep water at 19 degrees C) was investigated in virgin and 21-day-pregnant rats. There was no difference in basal plasma oxytocin concentrations between pregnant and virgin rats, but the opioid antagonist, naloxone, increased basal oxytocin secretion in the pregnant rats. Forced swimming increased oxytocin secretion similarly in pregnant and virgin rats, and this response was enhanced by naloxone. In pregnant rats naloxone had a greater effect (by 3.1-fold) than in virgins, showing stronger endogenous opioid restraint of an enhanced oxytocin secretory response to stress in pregnancy. Vasopressin secretion was not increased with forced swimming in virgin or pregnant rats, and naloxone had no effect. ACTH and corticosterone secretion in response to forced swimming was attenuated in pregnant rats compared to virgin rats, measured at 5 min. Naloxone had no effect on basal plasma ACTH or corticosterone concentration, but it reduced ACTH secretion in virgin rats 5 min after forced swimming; in pregnant rats naloxone had no such effect. Naloxone removed the pregnancy-related attenuation in corticosterone secretion measured at 5 min after forced swimming. Fifteen minutes after forced swimming, plasma corticosterone concentrations were not different between groups. In the late-pregnant rats, the increases in plasma ACTH and corticosterone induced by forced swimming were significantly prolonged compared to virgins. The results show that endogenous opioid inhibition emerges in pregnancy to restrict the responses of oxytocin neurones to a stressor. In contrast, the endogenous opioid enhancement of mechanisms regulating HPA axis secretory responses in virgin rats is not evident during pregnancy.

Adrenal Cortex Hormones↗

Impact of pancreas and kidney transplantation on determinants of blood and plasma viscosity.

Simultaneous pancreas and kidney transplantation (PKT) is associated with a deterioration of hemorheology. We investigated the determinants of plasma and blood viscosity (hct. 35%) after PKT (n = 49), in type 1 diabetes (n = 26) and in healthy controls (n = 24). Patients after PKT were subdivided due to their graft function (intact pancreas and kidney graft, n = 26; pancreas rejected, intact kidney graft, n = 23). We examined the correlations of total serum protein, albumin, fibrinogen, alpha 2-macroglobulin, total cholesterol, LDL cholesterol, HDL cholesterol and triglycerides with plasma and blood viscosity (hct. 35%) measured at a continuous shear range of 600-0.2 s-1 with a rotational viscometer (Haake, Germany). Total protein was strongly associated with plasma viscosity in all examined groups (r > 0.5, p < 0.03), it determined blood viscosity over the whole shear range in type 1 diabetic patients, but only at high shear rates after PKT (> or = 100 s-1). The strong association of albumin and blood viscosity in type 1 diabetes and in healthy controls (shear rates > or = 10 s-1) was not found after PKT. Fibrinogen correlated with plasma and blood viscosity (> or = 25 s-1) after PKT (p < 0.03) but no in type 1 diabetic patients or healthy controls. Alpha 2-macroglobulin correlated with plasma and high shear blood viscosity after PKT only after pancreas rejection, no correlation was found after successful PKT. It also correlated with plasma and blood viscosity at low and high shear rates in type 1 diabetes. Total cholesterol and low shear blood viscosity correlated positively in successfully transplanted patients (r > 0.44), but negatively after pancreas rejection (r > -0.44). No correlation was found in type 1 diabetic patients, a positive association was found in healthy controls for plasma and low shear blood viscosity. LDL cholesterol correlated negatively (after pancreas rejection) or positively (healthy controls) with low shear blood viscosity (p < 0.03) and positively with plasma viscosity. HDL cholesterol was negatively associated with high shear blood viscosity in all groups (p < 0.05), except after successful PKT, where no association was found. It did not correlate with plasma viscosity in any group. Triglycerides did not contribute significantly to blood viscosity in the examined groups. The metabolic alterations after PKT influence plasma proteins, lipids and corpuscular elements of blood with regard to their effect on rheology.

Adult↗

Long-term ethanol self-administration with repeated ethanol deprivation episodes changes ethanol drinking pattern and increases anxiety-related behaviour during ethanol deprivation in rats.

In order to study the dynamics of ethanol drinking behaviour, male Wistar rats were given the free choice between tap water, and 5, 10 and 20% ethanol solutions. After 8 weeks of continuous access, the animals were repeatedly deprived of the ethanol solutions for 3 days every 4 weeks. In the first experiment, drinking patterns were recorded for 24 h with an electronic drinkometer device, at different time-points of ethanol experience and after an ethanol deprivation episode. The preference for more highly concentrated ethanol solutions as well as ethanol consumption increased with continuing ethanol experience. Furthermore, after the ethanol deprivation episode, the animals immediately and preferentially drank from the 20% ethanol solution, the most highly concentrated ethanol solution offered. Additionally, the number of drinking bouts, particularly at the 10 and 20% ethanol solutions, was increased during the first hour after ethanol re-presentation. In a second experiment, the effects of repeated ethanol deprivation experience, inherent in this self-administration paradigm, on anxiety-related behaviour were tested on the elevated plus-maze. Repeated ethanol deprivation proved to be more anxiogenic than the first deprivation experience. Taken together, these findings suggest that ethanol deprivation is anxiogenic in long-term voluntarily ethanol-drinking rats, which is increased by repeated ethanol deprivation experience. The possibility that anxiety during ethanol deprivation might contribute to the 'relapse'-like drinking behaviour is discussed.

Alcohol Drinking↗

Oxytocin neurone autoexcitation during morphine withdrawal in anaesthetized rats.

We investigated whether release of oxytocin into the supraoptic nucleus is involved in morphine-withdrawal excitation of oxytocin neurones. Retrodialysis of naloxone into the supraoptic nucleus of morphine-dependent rats increased intranuclear oxytocin release by 56.5p +/- 12.7% whereas no change was seen in vehicle-treated dependent rats. In another experiment, in morphine-dependent rats given intravenous (i.v.) naloxone, intracerebroventricular (i.c.v.) oxytocin receptor antagonist injection reduced the increase of plasma oxytocin concentration (to 28-fold) compared with i.c.v. vehicle (62-fold increase). Finally, the increase in oxytocin neurone firing rate following morphine-withdrawal in the presence of i.c.v. oxytocin antagonist infusion was 28% of the steady state firing rate (15-20 min later) and this was lower (p < 0.05) than the percentage increase in i.c.v. vehicle-infused rats (89%). Thus, central endogenous oxytocin may be involved in withdrawal excitation of oxytocin neurones.

Action Potentials↗

Formation of plasma advanced glycosylation end products (AGEs) has no influence on plasma viscosity.

Plasma viscosity is mainly determined by large non-spherical proteins. In Type 1 diabetes mellitus, plasma viscosity increases with deterioration of diabetic control. Since protein glycation and formation of advanced glycosylation end products (AGEs) alter the structural and functional properties of proteins, AGEs might influence the rheological properties of plasma proteins. Therefore, we investigated the influence of plasma-AGEs on plasma viscosity in 34 normoalbuminuric diabetic patients (17 Type 1, 17 Type 2) with normal renal and liver function. In an additional experiment, 6 ml plasma of 9 healthy volunteers were incubated under sterile conditions for 14 days at 37.5 degrees C in the presence of 5.2 and 32.9 mmol l(-1) glucose. In diabetic patients, plasma-AGE levels were not correlated with plasma viscosity. Plasma-AGE levels in healthy controls (246 +/- 37 U ml[-1], mean +/- SD) were raised significantly (p<0.001) after the incubation at 37.5 degrees C (392 +/- 57 U ml[-1] and 552 +/- 58 U ml[-1], respectively). However, no difference was found in plasma viscosity pre- and post-incubation (pre-incubation: 1.25 +/- 0.04 mPas, post-incubation: 1.23 +/- 0.03 and 1.24 +/- 0.03, respectively). We conclude that there is no influence of plasma-AGEs on plasma viscosity.

Adult↗

Direct hypertonic stimulation of the rat supraoptic nucleus increases c-fos expressionin glial cells rather than magnocellular neurones.

We investigated whether hypertonicity acts directly on supraoptic neurones to activate c-fos expression. Hypertonic artificial cerebrospinal fluid was infused into the supraoptic nucleus (SON) via a microdialysis probe implanted 24 h previously. The rats were decapitated after 90 min for immunohistochemistry with a Fos protein antibody. Direct hypertonic stimulation increased Fos protein expression in glial cells, identified by glial fibrillary acidic protein immunoreactivity, but not in magnocellular neurones. Similarly, with in situ hybridisation c-fos mRNA expression was predominantly seen in glial cells. Fos expression in SON neurones was stimulated by systemic hypertonicity even with a microdialysis probe in the SON, and magnocellular neurones expressed Fos after direct microinjection of cholecystokinin-8S into the SON. Thus, while direct hypertonic stimulation of SON neurones activates secretion of vasopressin and oxytocin, the c-fos gene is not activated, unlike following systemic hypertonic stimulation. This indicates that excitation of neuronal electrical and secretory activity does not necessarily lead to activation of the c-fos gene. Activation of c-fos expression in glial cells by direct hypertonic stimulation may reflect their role in regulating brain extracellular fluid composition.

Animals↗

Central administration of IL-1 reduces anxiety and induces sickness behaviour in rats.

In the present study, we examined the effects of various doses of recombinant human interleukin-1beta on anxiety-like behaviour, on body temperature, and on behavioural changes typical of sick animals. First, we assessed the behaviour of rats in the elevated plus-maze before and 20 min after intracerebroventricular injection of IL-1 at six doses ranging from 0.001 to 100 ng. After treatment with 0.1 and 100 ng IL-1, animals exhibited different anxiety levels. The dose effect on behavioural performance in the plus-maze appears to be nonlinear (parabolic function), with the highest effects near a 0.1-ng dose and the lowest near doses of 0.0 and 100 ng. In a second set of experiments, we examined the effects of doses of 0.1 and 100 ng IL-1 (which had the most pronounced effects on performance in the plus-maze) on physical parameters over a 24-h period. Using radiotelemetry we measured body temperature, locomotor activity, food intake, and water consumption: a) in animals kept under basal resting conditions, and b) in animals exposed to a novel environment prior to administration of IL-1. Both doses evoked a fever response and reduced locomotor activity, but the increase in body temperature did not correlate with the decrease in locomotor activity and both effects did not occur at the time of behavioural testing. Taken together, our data indicate that central administration of IL-1 has anxiolytic-like properties.

Animals↗

Glucose-induced fibronectin expression in endothelial cells is mediated by protein kinase C.

One of the crucial pathophysiological changes in diabetic angiopathy might be the glucose-induced synthesis of components of the extracellular matrix-like fibronectin. This effect has been described for endothelial and mesangial cells. In order to gain further insight into the mechanisms how glucose-induced fibronectin expression is regulated, confluent monolayers of human umbilical vein endothelial cells (HUVEC) were incubated with varying concentrations of D-glucose (5-30 mM) in a time-dependent manner. Using Westernblotting techniques with a monoclonal antibody, a 3 +/- 0.2-fold increase of the 220 kDa-signal corresponding to human fibronectin was visible after an incubation time of 6 h indicating de-novo synthesis. Using incubation times of 6 or 10 days, glucose-mediated fibronectin overexpression was still visible, reaching a maximum at 15 mM D-glucose. The corresponding maximum values were 2.4 +/- 0.3 (6 d) and 2.3 +/- 0.2 (10 d). There was a concomitant glucose-dependent onset of expression of Protein Kinase C (PKC)-isoforms PKC-delta (2.5 +/- 0.3-fold), PKC-epsilon (2 +/- 0.2-fold) and PKC-zeta (1.8 +/- 0.2-fold), which reached a maximum after 12 h and was still visible during long-term culture. Induction of fibronectin expression was also obtained using the PKC-activating phorbolester Phorbol-12-myristat-13-acetat (PMA) which mimicks glucose-induced PKC activation. Glucose-induced fibronectin expression was decreased by the PKC-inhibitor H-7 (1- [5-isoquinolinylsulfonyl]-2-methylpiperazine). These experiments suggest that: 1. Short-term induction of fibronectin expression mediated by glucose is probably PKC-triggered since concomitant induction of PKC-isoforms PKC-delta, PKC-epsilon and PKC-zeta was observed. 2. Long-term incubation with D-glucose leads to an ongoing concentration-dependent coexpression of fibronection and various PKC-isoforms. If glucose-induced, PKC-mediated de-novo synthesis of components of the connective tissue or the extracellular matrix may be important in the pathomechanism of diabetic angiopathy, has to be proven.

1-(5-Isoquinolinesulfonyl)-2-Methylpiperazine↗

Comparison of a new anti-glutamic acid decarboxylase (GAD) enzyme-linked immunosorbent assay (ELISA) with radioimmunoassay methods: a multicenter study.

Several methods are available for the measurement of antibodies to glutamic acid decarboxylase (anti GAD). These antibodies are valuable tools for the immunodiagnosis of insulin-dependent (type 1) diabetes mellitus (IDDM) and for the assessment of risk for the future development of IDDM. We here describe a new enzyme-linked immunosorbent assay (ELISA) for the detection of anti-GAD which was tested in a multicenter study. The results of the new anti-GAD ELISA correlate well with those obtained by radioimmunoassays (RIA) and they have a higher sensitivity (69%) and specificity (98%) compared to other anti-GAD enzyme immunoassays as determined in the IDW Proficiency Test Program for the detection of GAD antibodies. The new ELISA is simple and easy to perform, with convenient handling of the reagents. Quantitative and reproducible test results are available within approximately four hours. The new anti-GAD ELISA can be used for large scale population screening to indicate a prediabetic state as well as to diagnose autoimmune diabetes in adults (LADA) and the risk for IDDM in pregnant women with gestational diabetes.

Adult↗

Expression of the trefoil polypeptide ITF in PC12 cells.

Trefoil polypeptides are expressed mainly in the amphibian skin and the gastrointestinal tract of mammals, usually coexpressed with mucin-glycoproteins. Recently, the trefoil polypeptides were shown to be expressed also in different areas of the human and murine brain. To investigate the expression and possible functions of ITF in rat pheochromocytoma (PC12) cells were employed. PC12 cells show a low basal expression of this polypeptide as determined by reverse transcriptase-polymerase chain reaction. After treatment with the synthetic glucocorticoid dexamethasone, the second messenger cyclic adenosine monophosphate and the neurotrophic factor nerve growth factor the expression of the trefoil polypeptide ITF was increased as shown by reverse transcriptase-polymerase chain reaction and by immunocytochemistry. Since these various stimuli can directly can directly alter the expression level of this peptide we conclude that the presented results may from the basis for further investigations of possible functions of this novel gut-brain polypeptide in neurons using PC12 cells.

Animals↗

Differential ventral septal vasopressin release is associated with sexual dimorphism in PGE2 fever.

The vasopressinergic innervation of the ventral septal area (VSA) has been shown to be implicated in antipyresis. Because this system is less well developed in female rats, we hypothesized that female rats would display exaggerated febrile responses. We therefore examined the temperature responses of conscious and urethan-anesthetized rats of both sexes to centrally administered prostaglandin E2 (PGE2) and correlated these responses with the release and action of endogenous arginine vasopressin (AVP) in the VSA. Both conscious [25 ng/5 microliters PGE2 intracerebroventricularly (i.c.v.)] and anesthetized (VSA microdialyzed, 50 ng/5 microliters PGE2 i.c.v.) female rats had higher fevers than did males. Infusion of an AVP V1a receptor antagonist {1 nmol [d(CH2)5Tyr(Me)]AVP} plus PGE2 gave rise to higher fevers in males but not in females. Measurements of AVP in microdialysates of the VSA showed that the release of endogenous AVP was increased in response to PGE2 in males only. Baseline AVP release in both sexes was similar. The results suggest that there is a sex-related difference in PGE2 fever, which may be accounted for by the differential AVP release in the VSA.

Animals↗

Increased stress-induced adrenocorticotropin response after long-term intracerebroventricular treatment of rats with antisense mineralocorticoid receptor oligodeoxynucleotides.

Brain corticosteroid receptors, the type 1 mineralocorticoid receptor (MR) and the type 2 glucocorticoid receptor (GR), are involved in the regulation of neuroendocrine and behavioral responses during ongoing and stressful conditions. To further investigate the role of MR in these responses, we treated male Wistar rats intracerebroventricularly (icv) for 1 week with an 18-base end-capped phosphorothioate-protected antisense oligodeoxynucleotide (ODN) directed against MR mRNA (MR-AS). A mixed bases sequence (MR-MB) and vehicle (0.9% saline) served as controls. The ODN solution was administered by continuous infusion (1 microgram/0.5 microliter/h) via an icv cannula connected with polyethylene tubing to a subcutaneously implanted Alzet miniosmotic pump. No nonspecific effects of the ODNs, such as signs of sickness behavior or loss of body weight, were observed at any time during the treatment. The MR-AS treatment produced a 21% decline in hippocampal MR concentrations. Hippocampal GR levels were not affected by the treatment. MR and GR levels after MR-MB treatment were similar to those found after treatment with the vehicle. In situ hybridization experiments using an [35S]-labeled antisense MR probe showed that hippocampal MR mRNA levels were increased in MR-AS-treated rats. No changes were found in basal early morning levels of plasma ACTH and corticosterone which is consistent with the lack of any changes in adrenal and thymus weight. When rats were socially defeated for 10 min by a male and female resident and then placed for 5 min in the elevated plus-maze, no changes in the anxiety-like behavior were observed in MR-AS-treated animals. However, MR-AS-treated rats killed immediately after the behavioral test had markedly higher plasma ACTH, but not corticosterone, levels than the MR-MB and saline controls. In conclusion, down-regulation of the brain MR produces an enhanced responsiveness of ACTH to stressful situations which appears to be accompanied by a reduced sensitivity of the adrenal gland to ACTH.

Adrenocorticotropic Hormone↗

Central and peripheral administration of atriopeptin is anxiolytic in rats.

The effects of the central and peripheral administration of atriopeptin II, a 23-amino acid residue peptide of atrial natriuretic peptide (Ser103-Arg125) on anxiety-related behavior and on locomotor activity, was studied in male Wistar rats. Their behavior on the elevated plus-maze after social defeat stress indicated that intracerebroventricular (2.5 and 5 micrograms) and intraperitoneal (50 micrograms) administration of atriopeptin II produced anxiolysis. A low dose of 0.25 micrograms atriopeptin II administered bilaterally into the central nucleus of the amygdala was also found to be anxiolytic. Because intracerebroventricular administration of 5 micrograms atriopeptin II did not affect locomotor activity in the open-field test, the possibility that the anxiolytic effect was secondary to sedation could be ruled out. The anxiolytic effects observed after central and peripheral administration support the idea that atrial natriuretic peptide, which is increased in panic-anxiety, may be involved in the tapering of anxiety-related behavior.

Adrenocorticotropic Hormone↗

Time course of acamprosate action on operant ethanol self-administration after ethanol deprivation.

The effects of the new alcohol anticraving compound acamprosate on the alcohol deprivation effect were tested in an operant two-lever free choice paradigm with concurrent water. Two groups of rats were tested after long-term voluntary ethanol self-administration: the "continuous access" group consisting of animals that had continuous access to ethanol before operant testing; and the "limited access" group that was tested only after ethanol deprivation. The limited access group exhibited a strong alcohol deprivation effect with immediate high ethanol consumption and preference. Acamprosate (100, 200, or 400 mg/kg) dose-dependently reduced lever pressing for ethanol and, accordingly, ethanol consumption in both groups in a 23-hr session. The consumption-reducing effect was still evident at the end of the session. Ethanol preference was dose-dependently reduced during the first hour of the session, but returned to basal levels before the end of the 23-hr session in both groups. Thus, the time course of preference reduction was not identical with that of the reduction of ethanol consumption. Surprisingly, preference reduction was observed only after a considerable amount of ethanol had been consumed. These results suggest that the specific effect of preference reduction depended on the simultaneous presence of sufficient levels of acamprosate and ethanol, and that the longer-lasting reduction of ethanol consumption was the consequence of this experience.

Acamprosate↗

Release of vasopressin within the rat paraventricular nucleus in response to emotional stress: a novel mechanism of regulating adrenocorticotropic hormone secretion?

The effects of emotional stressors on the release of arginine vasopressin (AVP) and oxytocin (OXT) within the rat hypothalamus and the origin and physiological significance of AVP released within the hypothalamic paraventricular nucleus (PVN) were investigated. First, adult male Wistar rats with a microdialysis probe aimed at the PVN or the supraoptic nucleus were exposed to either a dominant male rat (social defeat) or a novel cage. Release of AVP within the PVN was significantly increased in response to social defeat but not to novelty. In contrast to an activation of the hypothalamic-pituitary-adrenal (HPA) system, neither stressor stimulated the hypothalamic-neurohypophysial system (unchanged plasma AVP and OXT and unchanged release within the supraoptic nucleus [AVP] and the PVN [OXT]). Next, we demonstrated by simultaneous microdialysis of the suprachiasmatic nucleus and the PVN that AVP measured in PVN dialysates during social defeat was probably of intranuclear origin. Finally, a mixture of a V1 AVP and the alpha-helical corticotropin-releasing hormone (CRH) receptor antagonists administered via inverse microdialysis into the PVN caused a significant increase in the plasma adrenocorticotropic hormone (ACTH) concentration compared with vehicle-treated controls both under basal conditions and during social defeat, indicating inhibitory effects of intra-PVN-released AVP and/or CRH on HPA system activity. The antagonists failed to affect anxiety-related behavior of the animals as assessed with the elevated plus-maze. Taken together, our results show for the first time that AVP is released within the PVN in response to an emotional stressor. We hypothesize that this intranuclear release provides a negative tonus on ACTH secretion.

Adrenocorticotropic Hormone↗

Septal vasopressin modulates anxiety-related behaviour in rats.

Arginine vasopressin (AVP) or its V1 receptor antagonist d(CH2)5Tyr(Me)AVP was administered directly into the septal brain area of adult male rats by means of inverse microdialysis. Immediately after a 30-min dialysis period, during which either approximately 0.25 ng AVP or 5 ng of the V1 antagonist were delivered into the brain tissue, anxiety-related behaviour of the animals was measured on an elevated plus-maze apparatus. While synthetic AVP failed to alter plus-maze behaviour compared to vehicle-treated controls, animals treated with the V1 receptor antagonist made more entries into (P < 0.01) and spent more time on the open arms (P < 0.05), indicating reduced anxiety. Since administration of neither AVP nor the V1 antagonist significantly influenced general locomotor activity of the rats on the plus-maze and in an open field, these data point towards a critical involvement of intraseptally released AVP in the emotional evaluation of novel situations.

Animals↗