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R Weizman

Publications and source records attributed to R Weizman.

At least 19 recordsLinked to original sources

Effects of peripheral-type benzodiazepine receptor antisense knockout on MA-10 Leydig cell proliferation and steroidogenesis.

The peripheral-type benzodiazepine receptor (PBR) is not only widely expressed throughout the body, but it is also genetically conserved from bacteria to humans. Many functions have been attributed to it, but its primary role remains a puzzle. In the current study, we stably transfected cultures of MA-10 Leydig cells with either control or 18-kDa PBR antisense knockout plasmids. The antisense knockout vector was driven by the human enkephalin promoter, which contains two cAMP response elements, such that cAMP treatment of transfected cells could superinduce 18-kDa PBR antisense RNA transcription and, hence, down-regulate endogenous 18-kDa PBR mRNA levels. Control and knockout MA-10 cell lines were then compared at the level of receptor binding, thymidine incorporation, and steroid biosynthesis. Eighteen-kilodalton PBR knockout reduced the maximal binding capacity of tritium-labeled PBR ligands, and the affinity of receptors to the ligands remained unaltered. Additionally, 24-h accumulation of progesterone was lower in the knockout cells. Exposure of the two cell types to 8-bromo-cAMP resulted in a robust increase in steroid production. However, a complex pattern of steroid accumulation was observed, in which further progestin metabolism was indicated. The later decline in accumulated progesterone as well as the synthesis of androstenedione were different in the two cell types. At the level of cell proliferation, reduction of 18-kDa PBR mRNA showed no effect. Thus, we conclude that the 18-kDa PBR may have a more important role in steroidogenesis than in proliferation in this Leydig cell line.

Algestone

Peripheral-type benzodiazepine receptor ligands and serum steroid hormones.

The peripheral-type benzodiazepine receptors (PBR) are involved in various cellular functions, including steroidogenesis. The impact of these receptor ligands has been demonstrated mainly in steroidogenic cells. The aim of the present study was to assess in intact female rats the effect of chronic (21 days) administration of the PBR ligands PK 11195 (15 mg/kg) and Ro 5-4864 (5 mg/kg), the mixed ligand diazepam (5 mg/kg), and the central benzodiazepine receptor ligand clonazepam (1 mg/kg) on PBR binding characteristics in steroidogenic (ovary and adrenal) and non-steroidogenic (uterus and kidney) organs, as well as on serum hormonal steroids (estradiol, progesterone, and corticosterone). Selective and mixed PBR ligands up-regulated PBR density in the two steroidogenic organs, while Ro 5-4864 also induced elevation of the receptor density in the non-steroidogenic organs. In contrast to Ro 5-4864, PK 11195 treatment down-regulated renal PBR. Clonazepam elevated adrenal PBR. On the serum hormonal level, Ro 5-4864 suppressed estradiol secretion. The other ligands did not affect hormonal steroid levels. It appears that in female rats, at least at these doses and dosing schedules, there is no correlation between the impact of chronic in vivo exposure to these agents on PBR density and ovarian and adrenal hormone levels.

Adrenal Glands

Effect of the pregnane-related GABA-active steroid alphaxalone on mice performance in the staircase test.

We evaluated the modulatory effect of the GABA-active neurosteroid alphaxalone on the staircase test behavior of mice. Results were compared with the benzodiazepine alprazolam, the GABA(A) agonist muscimol and the peripheral steroids corticosterone and progesterone. Alphaxalone and alprazolam reduced rearing activity in a dose-dependent manner, at doses that did not suppress climbing. The rearing-suppression effect of alprazolam, but not of alphaxalone, was blocked by the benzodiazepine antagonist flumazenil. No such dissociation between the effect on rearing and climbing was obtained with muscimol, and both activities were suppressed, in a flumazenil-insensitive pattern, at high doses. Corticosterone and progesterone did not affect the behavior of the mice. The lack of sensitivity of both phenobarbital and alphaxalone to flumazenil indicates that neither agents act via the benzodiazepine recognition site at the GABA(A) receptor complex.

Alprazolam

Augmentation of opioid induced antinociception by the atypical antipsychotic drug risperidone in mice.

Risperidone is a novel atypical neuroleptic with a favorable profile of side effects due to its unique pharmacological activity: it exhibits both potent dopamine D2 and 5-HT2 receptor blocking activity, as well as high affinity for alpha1 and alpha2 adrenergic receptors and histamine H1 receptor. We found that risperidone has a potent antinociceptive effect in the tailflick assay with an ED50 of 26.4 mg/kg. This effect of risperidone was antagonized by naloxone (P < 0.05). This sensitivity to naloxone indicates that at least some of the analgesic effects of risperidone are mediated by an opioid mechanism of action. beta-FNA (mu1 mu2-antagonist), naloxonazine (mu1-antagonist) and norbinaltorphamine (nor-BNI; kappa1-analgesia) reversed risperidone antinociceptive effect (P < 0.05). Naltrindole (delta-antagonist) only partially reversed risperidone antinociceptive effect. We found that the sensitivity of risperidone antinociceptive effect to selective antagonists implies involvement of mu1-, mu2- and kappa1-opioid and to a lesser extent delta-opioid mechanisms. These results suggest a possible role for risperidone both in the management of pain and in the management of opiate withdrawal and detoxification.

Animals

Impact of pregnancy and lactation on GABA(A) receptor and central-type and peripheral-type benzodiazepine receptors.

The effect of pregnancy and lactation on GABA(A) receptor and central- and peripheral-type benzodiazepine receptors (CBR and PBR, respectively) was studied in female Sprague-Dawley rats. Pregnancy was associated with increased CBR density (on day 19) in the hippocampus and with decreased [3H]Ro 15-1788-specific binding in the hypothalamus during pregnancy and lactation. A similar decrease in [3H]PK 11195-specific binding was observed in the hypothalamus and pituitary. An increase in PBR density in the ovary and uterus was observed during pregnancy, while adrenal PBR density was down-regulated during pregnancy and lactation. It seems that the hormonal changes occurring during pregnancy and lactation play a role in the regulation of CBR and PBR in discrete tissues.

Animals

Pharmacological characterization of buprenorphine, a mixed agonist-antagonist with kappa 3 analgesia.

Buprenorphine is a mixed opioid agonist/antagonist analgesic. This study was designed to determine the role of opioid receptor subtypes, especially kappa 3, in buprenorphine-induced analgesia in mice. Buprenorphine, when injected systemically, revealed a potent analgesic effect by tailflick assay, with a biphasic dose-response curve, which was reversed by naloxone. The presence of analgesic cross-tolerance between buprenorphine and naloxone benzoylhydrazone (NalBzoH) and morphine indicated a role for kappa 3 and mu receptor subtype in buprenorphine analgesia. Additional studies with selective opioid antagonists indicated kappa 1 mechanisms of action. We did not detect any involvement of the delta receptor subtype. Low doses of buprenorphine antagonized morphine analgesia, while high doses of buprenorphine coadministered with morphine elicited increasing analgesia in a dose-dependent manner. These findings suggest that buprenorphine elicits analgesia through an interaction with kappa 3 receptors and to a lesser extent with kappa 1 as well as its activity as partial mu receptor agonist.

3,4-Dichloro-N-methyl-N-(2-(1-pyrrolidinyl)-cycloh

Flunarizine analgesia is mediated by mu-opioid receptors.

We evaluated the opioid antinociceptive mechanism of the calcium channel blocker flunarizine. Flunarizine produced a dose-dependent analgesia in the hot plate test which was antagonized by general (naloxone) and mu [beta-fualtrexamine (beta-FNA)]-opioid antagonists, indicating a role for mu receptors in flunarizine analgesia. Naltrindole (delta1 antagonist) did not affect flunarizine analgesia. A fixed subthreshold dose of flunarizine augmented mu (morphine) analgesia and blocked delta1 [enkephalin, [D-Pen2,5] (DPDPE)] analgesia. Apparently, flunarizine has mu agonistic activity and delta1 antagonist or mixed agonistic-antagonistic activity.

Animals

Peripheral-type benzodiazepine receptor ligands modulate human natural killer cell activity.

Following our earlier work, we evaluated the in vitro effect of ligands active at the peripheral-type benzodiazepine receptors on human natural killer cell activity. Peripheral blood mononuclear cells were incubated with benzodiazepine receptor ligands. After 4 h we observed a nonspecific inhibition of natural killer cell activity induced by both peripheral (Ro5-4864 and PK 11195) and central (clonazepam) benzodiazepine receptor ligands; after 24 h, the suppressive activity was specific to peripheral and mixed (diazepam) ligands, and the central-type ligand had no effect. This significant, specific suppression of NK cell activity was completely reversed by the addition of human recombinant interleukin-2 or human leukocyte interferon. Our research provides additional information on the immunomodulatory effects of peripheral-type benzodiazepine ligands. Further studies are needed to clarify the underlying mechanism of natural killer cell inhibition and to determine the clinical implications of these findings.

Humans

Lack of effect of methylphenidate on serum growth hormone (GH), GH-binding protein, and insulin-like growth factor I.

The aim of this study was to assess the growth hormone (GH) axis in methylphenidate (MPH)-treated and untreated boys with attention-deficit and hyperactivity disorder (ADHD), by evaluating serum GH, GH-binding protein (GHBP) activity, and insulin-like growth factor I (IGF-I) levels as compared to age-matched normal controls. Blood samples were taken from 42 boys (aged 6-16 years) diagnosed as having ADHD according to DSM-III-R criteria and confirmed by using the Schedule for Affective Disorder and Schizophrenia for school-age children (K[Kiddle]-SADS). A total of 21 patients were treated with MPH (5-20 mg/day; 0.15-0.77 mg/kg/day), on a drug holiday protocol, for 1-36 months, and 21 were drug naive. A total of 46 age-matched normal boys at height and weight within normal range served as controls. No significant differences were detected between the MPH-treated ADHD children, the untreated ADHD children, and the control children on fasting serum GH levels, GHBP activity, or IGF-I levels. Active treatment with MPH, in ADHD children on a drug holiday protocol, does not cause changes in GH axis as manifested by normal values of GH, GHBP, and IGF-I.

Adolescent

Role of peripheral-type benzodiazepine receptors in steroidogenesis.

Peripheral-type benzodiazepine (BZ) receptors (PBRs) have been identified in various peripheral tissues as well as in glial cells in in the brain. PBRs are located mainly on the outer mitochondrial membrane and bind with high affinity the BZ Ro 5-4864 (4'-cholorodiazepam) and the non-BZ PK 11195 (an isoquinoline carboxamide derivative), but bind with very low affinity the BZ clonazepam. PBRs have been cloned from various species. PBRs are multimeric receptors composed of the 18-kDa binding site for isoquinolines, the 32-kDa voltage-dependent anion channel, and the 30-kDa adenine nucleotide carrier (which binds BZs). The expression of PBRs is especially high in steroidogenic organs. Steroid administration affects PBR density, whereas depletion of hormones by hypophysectomy in female rats, or castration (surgical or chemical) in male rats, decreases PBR density in endocrine organs, which can be elevated to normal values after administration of the appropriate hormone. PBRs are probably involved in several functions, including cell proliferation, respiration, and steroidogenesis. It has been suggested that PBRs are involved in the translocation of cholesterol from the outer to the inner membrane of the mitochondria and have an effect on the biosynthesis of steroids.

Animals

Israeli preschool children under Scuds: a 30-month follow-up.

OBJECTIVE: Longitudinal studies of children exposed to traumatic events show contrasting findings regarding their symptomatic change over time. The present study reports on a 30-month follow-up of preschool children and their mothers who had been exposed to Scud missile attacks. METHOD: Families displaced during the Gulf War after their homes had been damaged by the missile attack and a control group whose homes remained intact were interviewed about posttraumatic and general symptomatology, the mothers' capacity to control images, and the children's adaptive behavior. RESULTS: Stress symptoms decreased in the displaced children but not in their mothers. Both reported more posttraumatic symptoms than did the control group. No differences in the children's adaptive behavior were observed. Posttraumatic symptoms of the displaced children correlated with the mothers' avoidant symptoms. The mothers' avoidant symptoms at follow-up were statistically explained by the mothers' symptoms during the war and their capacity for image control, the duration of displacement, and the cohesion of the family. CONCLUSIONS: The maternal stress-buffering capacity constitutes a central element in children's protective matrix and is crucial in minimizing long-term internal suffering of traumatized preschool children.

Adaptation, Psychological

Cytokine production in obsessive-compulsive disorder.

Cytokine production was previously demonstrated to be reduced in untreated major affective patients. In addition, recovery from depression following clomipramine (CMI) treatment was accompanied by the restoration of interleukin-1 beta (IL-1 beta) and interleukin-3-like activity (IL-3-LA) to normal range. In the present study we assessed the in vitro production of IL-1 beta IL-2, and IL-3-LA by peripheral blood mononuclear cells (PBMC) in 11 nondepressed patients with obsessive compulsive disorder (OCD) before and after 8 weeks of CMI treatment. Results were compared with those of 11 healthy subjects. CMI treatment induced a significant improvement in OCD symptoms. No alteration was observed in cytokine production in OCD patients before treatment as compared to control subjects. Moreover, 8 weeks of drug treatment had no effect on cytokine production. In conclusion, OCD per se, as well as CMI treatment, have no effect on interleukin production as measured in this study.

Adult

Platelet imipramine binding in patients with posttraumatic stress disorder before and after phenelzine treatment.

Posttraumatic stress disorder (PTSD) is frequently associated with major depressive disorder, and antidepressants have been reported to ameliorate PTSD symptoms in some patients. The present study assessed the number and affinity of platelet imipramine binding sites, as a marker of the serotonin transporter complex, in PTSD male patients (n = 10) before and after phenelzine treatment (30-60 mg/day, for 4 weeks) as well as in comparison to healthy controls (n = 10). In our sample, there was no evidence of a significant difference in the characteristics (Bmax and Kd) of platelet [3H]imipramine binding between the PTSD patients and the controls and within PTSD patients before and after phenelzine treatment. Moreover, no beneficial effect of phenelzine was detected in the patients (as assessed by PTSD, anxiety, and depression scales).

Adult

Serum triiodothyronine elevation with posttraumatic stress disorder: a cross-cultural study.

This study examines the thyroid hormonal profile in Israeli combat veterans with posttraumatic stress disorder (PTSD) and compares it with the previously reported profile in American Vietnam combat veterans with PTSD. Eleven male combat veterans with PTSD were compared with 11 normal subjects. Thyroid junction was evaluated by the measurement of serum total triiodothyronine (TT3), free triiodothyronine (FT3), total thyroxine (TT4), free thyroxine (FT4), thyroxine-binding globulin (TBG), and thyroid-stimulating hormone (TSH). The mean total T3 level in the Israeli PTSD patients (160.5 ng/dL) was significantly elevated (t = 2.53, p < .02) above that of the comparison group (135.5 ng/dL). Total T3 mean levels were not significantly different between the Israeli PTSD group and two American PTSD groups, but all three PTSD groups had significantly higher total T3 levels than both Israeli and American comparison groups. This preliminary study indicates that T3 elevation in combat-related PTSD may extend across cultures and suggests that further comparison of Israeli and American PTSD and normal groups may be useful in evaluating the significance and implications of the unusual alterations in the thyroid system in PTSD.

Adult

Modulatory effect of agents active in the presynaptic dopaminergic system on the striatal dopamine transporter.

We have investigated the effects of agents active in the presynaptic dopaminergic system on the characterization of the rat striatal dopamine transporter. The dopamine transporter was characterized by high-affinity [3H]GBR 12935 (1-[2-diphenylmethoxy)-ethyl]-4-(3-phenylpropyl)-piperazine) binding to a membrane preparation and by [3H]dopamine uptake into striatal synaptosomes. Subchronic treatment with reserpine (2.5 mg/kg, 4 days), a monoamine depletor, caused a significant decrease in both [3H]GBR 12935 binding (20%) and [3H]dopamine uptake (51%). In contrast, amantadine (a dopamine releaser) treatment (20 mg/kg, 21 days) induced an increase (28%) in the maximal number of [3H]GBR 12935 sites. Chronic levo-dopa (dopamine precursor) treatment combined with carbidopa (50 mg/kg and 5 mg/kg respectively, 21 days) as well as benztropine (dopamine uptake inhibitor) treatment (10 mg/kg, 21 days) did not affect the striatal dopamine transporter characteristics. The present results showed that the striatal dopamine transporter is sensitive to changes in dopaminergic neurotransmission caused by agents that do not interact directly with the dopamine carrier.

Amantadine

Israeli preschoolers under Scud missile attacks. A developmental perspective on risk-modifying factors.

BACKGROUND: The devastating effects of traumatic events on children are modulated by risk and protective factors. This study examines the differential effects of traumatic displacement of preschool children and their families following Scud missile attacks on Israel during the Persian Gulf War. METHODS: Three groups participated in the study: families displaced after their houses were damaged, undisplaced families from the same neighborhood (without home damage), and families from a distant city that was threatened but not directly attacked. Data concerning the traumatic event, the child (personality, internalizing, externalizing, and stress symptoms), the mother (Symptom Checklist-90-Revised), and the family (Family Adaptability and Cohesion Evaluation Scales) were gathered 6 months after the end of the war. RESULTS: Displaced children and mothers showed higher externalizing and stress symptom levels compared with undisplaced and threatened subjects. Destruction of the house and displacement, but not mere distance from the missile impact, explained symptomatic behavior. Inadequate family cohesion predicted symptomatic reaction for 3- and 4-year-old children but not for older ones. CONCLUSION: Both human and nonhuman factors contribute to the preschool child's adaptive mechanisms that regulate environmental stressful stimuli. These risk-modifying factors become more autonomous of caretakers with increasing age.

Adaptation, Psychological