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J Raber

Publications and source records attributed to J Raber.

At least 37 records · Page 2Linked to original sources

Increase of extracellular corticotropin-releasing factor-like immunoreactivity levels in the amygdala of awake rats during restraint stress and ethanol withdrawal as measured by microdialysis.

Previous research has suggested a role for corticotropin-releasing factor (CRF) in the anxiogenic effects of stressful stimuli and ethanol withdrawal. This hypothesis was explored in a series of experiments using intracranial microdialysis to monitor CRF-like immunoreactivity (CRF-IR) in the extracellular compartment of the rat amygdala. The synaptic origin of CRF-IR release in the amygdala was determined in vitro by assessing the Ca2+ dependency of 4-aminopyridine stimulated CRF-IR release from tissue preparations of rat amygdala. In vivo experiments were performed in awake rats after the placement of microdialysis probes in the amygdala. In the first experiment, transient restraint stress (20 min) produced an increase of CRF-IR release (basal levels, 1.19 +/- 0.15 fmol/50 microliters; stress levels, 4.54 +/- 1.33 fmol/50 microliters; p < 0.05) that returned to basal values within 1 hr. When 4-aminopyridine (5 mM) was added to the perfusion medium, it consistently increased CRF-IR release (4.83 +/- 0.92 fmol/50 microliters, p < 0.05). In the second experiment, CRF-IR release was measured during ethanol withdrawal in rats previously maintained for 2-3 weeks on a liquid diet containing ethanol (8.5%). Basal CRF-IR levels were 2.10 +/- 0.43 fmol/50 microliters in ethanol exposed rats and 1.30 +/- 0.19 fmol/50 microliters in control rats. During withdrawal, a progressive increase of CRF-IR levels over time was observed, reaching peak values at 10-12 hr after the onset of withdrawal (10.65 +/- 0.49 fmol/50 microliters vs 1.15 +/- 0.30 fmol/50 microliters of control rats, p < 0.01).(ABSTRACT TRUNCATED AT 250 WORDS)

Amygdala↗

Interleukin-2 (IL-2) induces corticotropin-releasing factor (CRF) release from the amygdala and involves a nitric oxide-mediated signaling; comparison with the hypothalamic response.

Interleukin-2 (IL-2)-like immunoreactivity and IL-2 receptor immunoreactivity have been reported in different brain regions, under normal and pathophysiological conditions. IL-2 stimulates hypothalamic corticotropin-releasing factor (CRF) and arginine vasopressin (AVP) release and that of pituitary adrenocorticotropin. The amygdala, known to contain high levels of CRF, is involved in stress-related reactions, including regulation of the hypothalamo-pituitary-adrenal axis. IL-2 will release AVP from both the hypothalamus and the amygdala, which further supports a role for cytokine effects in the amygdala in neuroimmune interactions. In the present study, we compared the effects of IL-2, acetylcholine and norepinephrine on the in vitro release of CRF from the amygdala or hypothalamus. In addition, we used these release systems to evaluate the possible involvement of nitric oxide (NO)-mediated signaling in CRF release. IL-2 stimulates CRF release in both regions, in a calcium- and dose-dependent manner. Nitroprusside, an NO generator, also induces CRF release. This IL-2-induced CRF release is antagonized by Ng-methyl-L-arginine and hemoglobin, known NO antagonists. Finally, norepinephrine and acetylcholine induce CRF release. The norepinephrine-induced CRF release is antagonized by phentolamine and propanolol and the acetylcholine-induced release by atropine and mecamylamine, which suggests the involvement of both alpha and beta adrenergic receptors and both muscarinic and nicotinic receptors. The acetylcholine-induced CRF release is antagonized by Ng-methyl-L-arginine, but the norepinephrine-induced response is not. These data support the suggestion that the amygdala may participate in communications between the neuroendocrine and immune systems.

Acetylcholine↗

IL-1 beta potentiates the acetylcholine-induced release of vasopressin from the hypothalamus in vitro, but not from the amygdala.

In addition to the magnocellular hypothalamic nuclei, arginine vasopressin (AVP)-containing neurons have also been identified in limbic structures, including the hippocampus and amygdala. In the present study, we compared the qualitative properties of the in vitro release of AVP from the dissected hypothalamus with the in vitro release from the dissected amygdala and used these release systems to evaluate the interactions with neurotransmitters and cytokines. The areas of the paraventricular nucleus and supraoptic nucleus that contain the AVP neurons and that receive cholinergic innervation are also interleukin (IL)-1 beta immunoreactive. Acetylcholine or high KCl (60 mM) induces AVP release in both regions, and the AVP release is calcium dependent. Acetylcholine-induced AVP release is antagonized by atropine or mecamylamine, indicating that both muscarinic and nicotinic receptors are mediating the cholinergic effect in these brain regions. IL-1 beta (100 U/ml) had no effect on the basal AVP release from the hypothalamus, but significantly potentiated the acetylcholine-induced AVP release, lowering the threshold from 500 to 100 nM. This effect was completely blocked in the presence of neutralizing antibodies to IL-1 beta, atropine (10 microM) or mecamylamine (10 microM). IL-6, like IL-1 beta, also potentiated acetylcholine-induced AVP release, but to a lesser extent. Neither tumor necrosis factor-alpha nor interferon-gamma had any effect on the basal or acetylcholine-induced AVP release from the hypothalamus. None of the cytokines tested had any effect on the basal or acetylcholine-induced AVP release from the amygdala. Our results suggest a hypothalamic site of action of IL-1 beta and IL-6 on the acetylcholine-induced AVP release. The stimulatory effects of IL-1 and IL-6 on adrenocorticotropin release have been ascribed to an increased release of corticotropin-releasing factor (CRF). These data further suggest that, in addition to CRF, AVP plays a role in the bidirectional communication between neuroendoc ine and immune systems. Understanding the mode of interaction between IL-1 beta and IL-6 with AVP could clarify pathophysiologic or toxic effects of high brain levels of these cytokines.

Acetylcholine↗

IL-2 induces vasopressin release from the hypothalamus and the amygdala: role of nitric oxide-mediated signaling.

The neuropeptide arginine vasopressin (AVP) can replace the cytokine interleukin 2 (IL-2) as a T-cell mitogen for the induction of interferon gamma (IFN gamma) expression in splenic cultures. IL-2-like and IL-2 receptor immunoreactivity have been reported in different brain regions, under normal and pathophysiological conditions. Regulatory functions for IL-2 in the CNS have been suggested. In addition to the spleen, AVP might also mediate some IL-2 effects centrally. In the present study, we evaluated the effect of IL-2 on the in vitro release of AVP from the hypothalamus and amygdala. In addition, we used these release systems to study the possible involvement of NO-mediated signaling in AVP release, based on the reported detection of nitric oxide synthase (NOS) in the hypothalamus and amygdala. IL-2 rapidly stimulates AVP release in both regions, in a calcium- and dose-dependent manner. In addition, nitroprusside also induces AVP release. Norepinephrine also induces AVP release from both the hypothalamus, as well as the amygdala. The norepinephrine-induced AVP release is antagonized by phentolamine, but not by propranolol, suggesting an alpha-adrenergic receptor-mediated AVP response in both brain regions. The IL-2- and acetylcholine-induced AVP release is antagonized by Ng-methyl-L-arginine, indicating a role for NO in this AVP release. Ng-methyl-L-arginine does not affect the norepinephrine-induced AVP release. A stimulatory effect of IL-2 on hypothalamic CRF release and plasma ACTH has already been reported. Our results suggest that in addition to CRF, AVP may also mediate the IL-2 stimulation of ACTH secretion. These data further suggest that in addition to the hypothalamus, the amygdala may also play a role in the bidirectional communication between neuroendocrine and immune systems. Understanding the mode of interaction between IL-2 with AVP could clarify the pathophysiologic or toxic effects of high brain levels of IL-2.

Acetylcholine↗

Experimental gingivitis during pregnancy and post-partum: immunohistochemical aspects.

The histoimmunological response of 8 individuals was studied longitudinally in relation to the development of experimental gingivitis during pregnancy and post-partum. At day 0 as well as at day 14 of experimental gingivitis the mean periodontal pocket bleeding index (PPBI) was higher during pregnancy than post-partum, whereas the amount of plaque that accumulated was similar. The number of CD1 positive cells (mainly Langerhans) in the oral epithelium was found to be higher during pregnancy. In the sulcular epithelium, however, the number of these cells tended to decrease during pregnancy as compared to post-partum. The number of CD4 positive cells in oral and sulcular epithelium was increased during pregnancy (P < 0.05). It was speculated that this increase in the number of CD4 positive cells is confined to the Th-1 subset, since the number of CD14 positive cells (mainly macrophages and granulocytes) together with the number of B cells was found to be decreased during pregnancy. Th-1 cells are known to be cytotoxic against these HLA class II antigen bearing cells. Consequently, cytotoxicity directed against B cells and macrophages may result in diminished immunoresponsiveness in pregnancy gingivitis.

Adult↗

Strychnine-insensitive glycine receptors in embryonic chick retina: characteristics and modulation of NMDA neurotoxicity.

In the mammalian brain, the N-methyl-D-aspartate (NMDA) subtype of glutamate receptor is coupled to a cation channel and a strychnine-insensitive glycine receptor. The present paper demonstrates the presence of NMDA receptor-coupled strychnine-insensitive glycine receptors in embryonic chick retina. Both glycine and 1-aminocyclopropanecarboxylic acid (ACPC) exhibited similar potencies (271 +/- 39 vs 247 +/- 39 nM, respectively) as inhibitors of strychnine-insensitive [3H]glycine binding to retinal membranes. Moreover, glycine and ACPC enhanced [3H]MK-801 binding to sites within the NMDA-coupled cation channel in retinal membranes with potencies comparable to those reported in rat brain. While the potency of ACPC was significantly higher than glycine (EC50 54 +/- 12 vs 256 +/- 57 nM, P < 0.02) in this measure, there were no significant differences in the maximum enhancement (efficacy) of [3H]MK-801 binding by these compounds. Since glycine appears to be required for the operation of NMDA-coupled cation channels, we examined the effects of glycine and ACPC on NMDA-induced acute excytotoxicity in the 14-day embryonic chick retina. Histological evaluation of retina revealed that either ACPC (10-100 microM) or glycine (200 microM) attenuated NMDA-induced (200 microM) retinal damage and a combination of these agents produced an enhanced protection against acute NMDA toxicity. ACPC (100 microM), but not MK-801 (1 microM) also afforded a modest protection against kainate-induced (25 microM) retinal damage. These findings demonstrate that while strychnine-insensitive glycine receptors are present in embryonic chick retina, occupation of these sites does not augment the cytotoxic actions of NMDA. Moreover, the ability of ACPC and glycine to attenuate NMDA-induced cytotoxicity does not appear to be mediated through occupation of these sites.

Amino Acids↗

Protein binding to the interferon response enhancer correlates with interferon induction of 2'-5'-oligoadenylate synthetase in normal and interferon-resistant Friend cells.

The induction of transcription of the 2'-5'-oligoadenylate (2-5A) synthetase gene by type I (alpha/beta) and type II (gamma) interferons (IFNs) has been studied in wild-type (w.t.) and IFN-resistant Friend leukemia cells (FLC). Following IFN treatment, new complexes are formed in vitro between the IFN-responsive sequence (IRS) of the 2-5A synthetase gene and cellular proteins. Within minutes after IFN-alpha/beta addition to w.t. FLC, an IRS-protein complex, designated F1, is detected, as already observed in several human cell lines. In response to IFN-gamma, a novel complex, designated Fg, is observed in w.t. FLC. The Fg complex appears within 3 h, while an F1-like complex is faintly visible 10 to 24 h later. In the IFN-alpha/beta-resistant FLC, IFN-gamma induces only the Fg complex and fails to induce F1. Fg formation is correlated with the IFN-gamma-induced transcription of the 2-5A synthetase gene and the appearance of the corresponding enzymatic activity in both w.t. and IFN-alpha/beta-resistant FLC. These findings suggest that F1 and Fg represent two distinct effector complexes by which type I and type II IFNs, respectively, induce 2-5A synthetase.

2',5'-Oligoadenylate Synthetase↗

Posttranscriptional regulation of beta interferon expression in erythroid Friend cells treated with gamma interferon.

Treatment of Friend erythroleukemia cells (FLC) with gamma interferon (IFN-gamma) in the presence of anti-IFN-beta antibodies reduces the effectiveness of the antiviral state and the induction of 2'-5'-oligoadenylate synthetase activity, indicating that the antiviral activity of IFN-gamma in FLC is in part mediated by the production of IFN-beta. Accordingly, IFN-gamma induces a less pronounced antiviral state in FLC resistant to IFN-alpha/beta than in wild-type cells. Moreover, while results of run-on assays indicate that both IFN-alpha and -beta genes are constitutively transcribed in these cells, FLC treatment with IFN-gamma induces only IFN-beta mRNA accumulation. These results indicate that posttranscriptional mechanisms are involved in the regulation of IFN-beta and -alpha expression by IFN-gamma. The low amounts of the induced IFN-beta synergize with IFN-gamma in mounting the potent antiviral effect.

2',5'-Oligoadenylate Synthetase↗

FK506 treatment of S-antigen induced uveitis in primates.

FK506 is a new immunosuppressive agent which has been found more potent than cyclosporine based on the dosage. FK506 was examined here for its effect on the development of uveitis in primates immunized with S-antigen. FK506 successfully inhibited uveitis in monkeys, even when administered three weeks after the first immunization, at the time when the immunopathogenic mechanism of uveitis is assumed to be developed. All four monkeys injected with 0.5 mg/kg/day of FK506 did not develop uveitis, 2 out of 4 treated with the 0.25 mg and 3 out of 4 of those receiving the 0.125 mg also did not develop disease. FK506 suppressed to some extent the cellular and humoral immune responses to S-antigen. The main side effect of FK506 was weight loss. We consider that this drug may be considered as a new potential therapeutic agent for immune-mediated ocular disease in humans.

Animals↗

Terminal differentiation of myeloleukemic M1 cells induced by IL-6: role of endogenous interferon.

During terminal differentiation of myeloleukemic M1 cells triggered by IL-6, an induction of IFN-activated genes, such as IRF-1, class I MHC, and (2'-5')-A synthetase, is observed. Antibodies to murine type I IFN, inhibit most (2'-5')-A synthetase induction but do not inhibit IL-6-induced growth-arrest and differentiation. IL-6 induction of (2'-5')-A synthetase subforms, however, differs from that of IFN. IL-6 in fact induces a cell surface form of (2'-5')-A synthetase that is not induced by IFN.

2',5'-Oligoadenylate Synthetase↗

Induction of an ATP-polymerizing enzyme in TMV-infected tobacco and its homology to the human 2'-5' A synthetase.

Several reports have indicated that tobacco carries an enzyme (APE) that, in the presence of poly (rI):(rC), polymerizes ATP to oligoadenylates. This paper demonstrates that the tobacco APE system comprises several proteins (estimated sizes: 32, 42, 67, and 84 +/- 10% kD). Only one of these proteins (the "67-kD" form) binds to poly (rI):(rC). This APE form has been purified by affinity chromatography on a synthetic ds-RNA column. Four tobacco proteins, including the purified one, crossreact with antibodies against the human enzyme, 2'-5' A synthetase. The ATP-binding capacity of some of these proteins has also been demonstrated. The amount of plant oligoadenylates obtained by polymerizing ATP with the purified APE form allows, for the first time, their direct analysis by TLC. The TLC analysis indicated that the oligomer produced by APE is not identical to the 2'-5' oligoadenylate. The appearance of the 2'-5' A-related proteins correlates with the build up of TMV infection, and the pattern of their stimulation and turnover was established. Nucleic acid hybridization indicates homology of tobacco DNA and RNA sequences with cloned cDNA of the human 2'-5' A synthetase gene. The stimulation in tobacco, upon TMV infection, of mRNA species homologous to the above human cDNA has been demonstrated. The analogy between the plant and the human system is discussed.

Adenine Nucleotides↗

Enzyme-replacement therapy: problems and prospects.

Several diseases can, at least in theory, be treated by the administration of an enzyme, the deficiency of which is the cause of the disease. Various attempts have been made to correct enzymatic deficiencies responsible for the clinical manifestation of diseases for which prevention cannot be achieved by modification of the diet or by supportive therapy with drugs. Except for treating certain digestive disorders, enzyme-replacement therapy has not yet found a broad application. In this review article a compilation is given of the problems and prospects of enzyme-replacement therapy in diseases caused by the deficiency of an enzyme.

Enzyme Therapy↗

Changes in receptor response by the effect of disease on membrane fluidity.

Currently, changes that occur in receptor function under (patho-) physiological conditions are being investigated. The molecular mechanisms causing the observed variations are largely unknown. It is suggested that the pivotal role of the fluidity of the membrane has been neglected in the literature. It is hypothesized that aberrations in receptor function in diseases that are associated with a concomitant mild oxidative stress can be explained by membrane wavering.

Humans↗

The use of sodium sulfide to separate mercury from tissues preserved in Cialit and Merthiolate solutions.

The purpose of the present experiment was to look at the dissolution time in physiological sodium chloride (0.9% NaCl) and sodium sulfide (Na2S) of any mercury (Hg) contained in human auditory ossicles and cartilage after preservation in Cialit and Merthiolate. Both homograft tissues produced almost identical graph complexes. Under static conditions 10 micrograms Hg could be found in NaCl after 15 min, whereas there was complete demercurization after 3 min in Na2S. The dissolution time in NaCl subjected to constant stirring was about 10 min and was less than 1 min in Na2S. For the rapid elimination of Hg from auditory ossicles stored in preservatives containing Hg, our studies show that the use of a flowing solvent is advisable. Further, the extraction of Hg is quicker in sodium sulfide than in an isotonic solution of sodium chloride.

Cartilage↗

[Aspergillus mycoses of the paranasal sinuses. Detection and analysis of roentgen opaque structures in fungal concretions].

Out of 59 patients with aspergillosis of the paranasal sinuses 25 showed almost metal-dense X-ray-shadows in Highmore's sinus, resembling foreign bodies at first. It can be demonstrated, that these areas are equivalent to local enrichment of calcium phosphate mainly in the center of the fungal masses in the sinuses. Technique and methods of investigation and analysis are described. X-ray findings like these should be looked upon as a sign reading: "aspergillosis of the paranasal sinuses ahead."

Adult↗

[On the evaluation of health factors in high-rise buildings 1. Behaviour of some environmental factors (author's transl)].

None of the test series carried out with completely different parameters (summation measurements of different type for SO2, fluorine, chlorides as well as germ counts for air) have indicated that the people living on the higher floors of tower blocks are exposed to a greater burden than those living on lower floors. On the contrary, the chloride analyses and also ther germ counts made on the balconies showed that such tower blocks are exposed to dust and dirt swirling up from the streets from the second up to the sixth floor (max. pollution on the third floor). In the stairwell, the highest germ count was made on the ground floor, as was to be expected. Needless to say, these results apply only to the conditions prevailing here. Somewhat different results may be obtained in other places, under different conditions regarding location and building structure. However, the results clearly show that the assumption that the upper storeys of high-rise buildings are exposed to a higher burden cannot be generally valid with respect to the parameters used. This is the least that our results indicate.

Air Microbiology↗

[Influence of a highly purified D-thyroxine medication on thyroid iodine uptake and in vitro tests of thyroid function (author's transl)].

25 euthyroidal patients with elevated serum cholesterol levels were treated with 4 mg of D-thyroxine daily for 4 weeks; controls were made after this period and after a withdrawal period of another 4 weeks. At the end of the treatment period there was a significant decrease of the serum cholesterol level, of the basal and TRH-stimulated serum TSH and of the thyroidal radioiodine uptake. The radioimmunologically determined values of total T 3 and Free Thyroxine index and of the serum iodine level rose significantly without being accompanied by clinical hyperthyroid symptoms. These changes can be explained on one hand by the well known cholesterol lowering effect of D T-4 and by the inclusion of D-isomeres of thyroid hormones in the radioimmunoassay, and, on the other hand, by the fact that the above-mentioned medication causes an uptake of iodine, and, possibly, by a direct inhibitory effect of D T-4 on the pituitary gland.

Adult↗

Interferon-alpha and transforming growth factor-beta 1 regulate corticotropin-releasing factor release from the amygdala: comparison with the hypothalamic response.

Interferon-alpha (IFN-alpha) and transforming growth factor-beta 1 (TGF-beta 1) have been reported in different brain regions. The amygdala contains high levels of corticotropin releasing factor (CRF) and has been implicated as a central site for its stress-related autonomic and behavioral response. IFN-alpha will release arginine vasopressin (AVP) from both amygdala and hypothalamus, which further supports a role for the amygdala in neuroimmune interactions. In the present study, we compared the effects of these cytokines on the in vitro release of CRF from the amygdala and hypothalamus. In addition, we evaluated the possible involvement of guanylate cyclase-mediated signaling in CRF release. IFN-alpha stimulates CRF release from both amygdala and hypothalamus. The CRF release by IFN-alpha, Interleukin-2 (IL-2) and acetylcholine is blocked by guanylate cyclase inhibitors, indicating a role for cGMP accumulation in this CRF release. TGF-beta 1 had no effect on basal release of CRF, nor on the CRF-release induced by IL-2, but selectively blocked the acetylcholine-induced release in both amygdala and hypothalamus. Taken with a previous report that TGF-beta 1 specifically inhibits AVP release by acetylcholine, these results suggest that TGF-beta 1 may modulate HPA axis activation, by antagonizing (acetylcholine-evoked) CRF and AVP release. These data further support a role for the amygdala in the bidirectional communication between neuroendocrine and immune system.

Acetylcholine↗