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Biomedical subjects

D R Rubinow

Publications and source records attributed to D R Rubinow.

At least 19 recordsLinked to original sources

Reproductive steroids in context.

The effects of reproductive steroids on the brain are highly context-dependent, a concept necessary to understand disorders of mood related to the reproductive endocrine system.

Affect↗

Direct binding of estradiol enhances Slack (sequence like a calcium-activated potassium channel) channels' activity.

17Beta-estradiol (E2) is a major neuroregulator, exerting both genomic and non-genomic actions. E2 regulation of Slack (sequence like a calcium-activated potassium channel) potassium channels has not been identified in the CNS. We demonstrate E2-induced activation of Slack channels, which display a unitary conductance of about 60 pS, are inhibited by intracellular calcium, and are abundantly expressed in the nervous system. In lipid bilayers derived from rat cortical neuronal membranes, E2 increases Slack open probability and appears to decrease channel inactivation. Additionally, E2 binds to the Slack channel and activates outward currents in human embryonic kidney-293 cells that express Slack channels but not classical estrogen receptors (i.e. ERalpha or ERbeta). Neither E2-induced activation nor the binding intensity of E2 to the Slack channel is blocked by tamoxifen, an ER antagonist/agonist. Thus, E2 activates a potassium channel, Slack, through a non-traditional membrane binding site, adding to known non-genomic mechanisms by which E2 exerts pharmacological and toxicological effects in the CNS.

Animals↗

Expression of estrogen receptor alpha exon-deleted mRNA variants in the human and non-human primate frontal cortex.

Although estrogen receptor alpha (ERalpha) mRNA has been detected in the primate frontal cortex, the types of ERalpha transcripts expressed, including exon-deleted variants (Delta), have not been determined in the monkey or human frontal cortex. Because the types of ERalpha mRNA expressed in brain could define neuronal responses to estrogens, we examined the transcript pool of ERalpha mRNAs expressed in normal adult and developing human and macaque frontal cortex. We reverse transcribed total RNA from the postmortem frontal cortex of 29 normal adult humans, 12 rhesus macaques, and 19 people ranging from infants to adults and employed two rounds of nested polymerase chain reaction (PCR) to generate ERalpha products spanning the coding domain. In a third nested PCR, we used primers specific for novel sequences of exon-exon junctions created when whole exons are missing. By sequencing PCR products, we detected 60 instances of 12 distinct DeltaERalpha mRNAs in adult humans and 94 instances of 13 distinct DeltaERalpha mRNAs in monkeys in differing patterns from one individual to another. In adult humans, 83% of individuals expressed at least 1 DeltaERalpha mRNA variant, and 100% of the monkeys expressed at least 1 DeltaERalpha mRNA variant. The single Delta2, Delta5, and Delta7 variants were frequently expressed in both human and monkey frontal cortex, Delta3 variants were rare in both species, and Delta6 variants were more frequently expressed in monkeys. In both species, we detected double, triple and quadruple Deltas, but these were less common than single Deltas. The pattern of human variant expression did not appear to change dramatically as a function of age. These findings imply the potential to produce different ERalpha proteins in frontal cortex, possibly with altered structure and function which may have physiological relevance for gene transcription by virtue of altered functional interactions with each other, other steroid hormone receptors, and genomic DNA.

Adolescent↗

Gonadotropin-releasing hormone-stimulated gonadotropin levels in women with premenstrual dysphoria.

Despite consistent evidence that premenstrual dysphoria (PMD) is not characterized by abnormalities in basal ovarian hormone secretion, the possibility remains that PMD is associated with an abnormality in the regulation of the hypothalamic-pituitary-ovarian (HPO) axis. We studied HPO axis regulation in 11 women with prospectively confirmed PMD and 20 asymptomatic controls, during both the follicular and luteal phases of the menstrual cycle. Plasma levels of the gonadotropins, luteinizing hormone (LH) and follicle-stimulating hormone (FSH), were obtained before and after stimulation with gonadotropin-releasing hormone (GnRH) (100 microg intravenously). Potential diagnostic- and menstrual cycle phase-related diferences in basal and plasma hormone levels were analyzed by repeated-measures analysis of variance. No significant differences were observed between women with PMD and controls in either basal or stimulated levels of FSH and LH. Stimulated FSH was significantly increased and stimulated LH was significantly decreased during the follicular compared with the luteal phase in both women with PMD and controls. These data are consistent with prior findings of normal basal reproductive hormone levels in women with PMD. Our data suggest the absence in women with PMD of an abnormality of dynamic ovarian function as measured by GnRH stimulation.

Adult↗

Stressful life events, personal losses, and perimenopause-related depression.

We compared the number and quality of life events reported by depressed perimenopausal women and a non-depressed comparison group. Additionally, we examined the effects of the presence of hot flushes on life event reports. All women were 44-55 years old, had irregular menses and elevated plasma gonadotropin levels. The Psychiatric Epidemiology Research Interview recorded both the frequency of occurrence and the desirability of life events experienced by the women during the six months prior to the interview. Depressed perimenopausal women (n=50) reported significantly more undesirable events [Student's t-test (unpaired) with Bonferroni correction, t(98)=3.9, p=0.001] but not more exit events (e.g., divorce, last child leaving home or death in family) (t(98)=0.9, p=NS) compared to the non-depressed women (n=50). There were no effects of hot flushes on these diagnostic differences. The "empty nest" syndrome does not appear to be relevant in the development of perimenopausal depression. Nevertheless, independent of the presence of hot flushes, perimenopausal depressed women are more likely to report both negative life events and diminished self esteem.

Adult↗

Neuroendocrine and behavioral effects of high-dose anabolic steroid administration in male normal volunteers.

OBJECTIVE: Despite widespread abuse of anabolic-androgenic steroids (AAS), the endocrine effects of supraphysiologic doses of these compounds remain unclear. We administered the AAS methyltestosterone (MT) to 20 normal volunteers in an in-patient setting, examined its effects on levels of pituitary-gonadal, -thyroid, and -adrenal hormones, and examined potential relationships between endocrine changes and MT-induced psychological symptoms. METHOD: Subjects received MT (three days of 40 mg/day, then three days of 240 mg/day) or placebo in a fixed sequence with neither subjects nor raters aware of order. Samples were obtained at the ends of the baseline, high-dose MT and withdrawal phases. Potential relationships between hormonal changes and visual analog scale measured mood changes were examined. RESULTS: Significant decreases in plasma levels of gonadotropins, gonadal steroids, sex hormone binding globulin, free T3 and T4, and thyroid binding globulin (Bonferroni t, p<0.01 for each) were seen during high-dose MT; free thyroxine and TSH increased during high-dose MT, with TSH increases reaching significance during withdrawal. No significant changes in pituitary-adrenal hormones were observed. Changes in free thyroxine significantly correlated with changes in aggressiveness (anger, violent feelings, irritability) (r=0.5,p=0.02) and changes in total testosterone correlated significantly with changes in cognitive cluster symptoms (forgetfulness, distractibility) (r=0.52,p=0.02). Hormonal changes did not correlate with plasma MT levels. CONCLUSIONS: Acute high-dose MT administration acutely suppresses the reproductive axis and significantly impacts thyroid axis balance without a consistent effect on pituitary-adrenal hormones. Mood and behavioral effects observed during AAS use may in part reflect secondary hormonal changes.

Adolescent↗

A curriculum for teaching psychiatric research bioethics.

Psychiatric research has received intense ethical scrutiny during the past decade. Changes in how studies are designed, reviewed by ethics boards, conducted, and reported in the literature have created a need for a systematic approach to teaching psychiatric research ethics to clinical researchers in training. The purpose of this article is to describe a model curriculum and comprehensive background reading list for training in psychiatric research bioethics. The curriculum was designed as an interactive seminar in a research fellowship program but can be adapted and incorporated into existing medical school and psychiatry residency training curricula. Participants in the seminar provide formal and informal evaluations of each session and the seminar as a whole. The seminar, now in it's third year, has been regularly attended and highly regarded by the NIMH research fellows who have participated. In response to recommendations by the participants, the content and organization of the seminar has been modified. Clinical research is both scientifically and ethically complex. Our initial experience with a formal curriculum in psychiatric research bioethics suggests that this educational activity has been both meaningful and relevant for psychiatrists training to be clinical investigators.

Curriculum↗

Alpha-lipoic acid protects rat cortical neurons against cell death induced by amyloid and hydrogen peroxide through the Akt signalling pathway.

Substantial evidence suggests that the accumulation of beta-amyloid (Abeta)-derived peptides contributes to the aetiology of Alzheimer's disease (AD) by stimulating formation of free radicals. Thus, the antioxidant alpha-lipoate, which is able to cross the blood-brain barrier, would seem an ideal substance in the treatment of AD. We have investigated the potential effectiveness of alpha-lipoic acid (LA) against cytotoxicity induced by Abeta peptide (31-35) (30 microM) and hydrogen peroxide (H(2)O(2)) (100 microM) with the cellular 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyl-tetrazolium bromide (MTT) reduction and fluorescence dye propidium iodide assays in primary neurons of rat cerebral cortex. We found that treatment with LA protected cortical neurons against cytotoxicity induced by Abeta or H(2)O(2). In addition, LA-induced increase in the level of Akt in the neurons was observed by Western blot. The LA-induced neuroprotection and Akt increase were attenuated by pre-treatment with the phosphatidylinositol 3-kinase inhibitor, LY294002 (50 microM). Our data suggest that the neuroprotective effects of the antioxidant LA are partly mediated through activation of the PKB/Akt signaling pathway.

Alzheimer Disease↗

Estrogen protects against beta-amyloid-induced neurotoxicity in rat hippocampal neurons by activation of Akt.

The cellular mechanisms underlying the neuroprotective effects of estrogen are only beginning to be elucidated. Here we examined the role of protein kinase B (Akt) activation in 17beta-estradiol (E2) inhibition of beta-amyloid peptide (31-35) (Abeta31-35)-induced neurotoxicity in cultured rat hippocampal neurons. Abeta31-35 (25-30 betaM) significantly decreased the total number of microtubule associated protein-2 positive cells (MAP2+). This decrease was significantly reversed by pre-treatment with 100 nM E2. Further, 100 nM E2 alone significantly increased the total number of protein kinase B and microtubule associated protein-2 positive cells compared with controls. Such E2-induced increases were inhibited by LY294002 (20 microM), a specific PI3-K inhibitor, as well as by tamoxifen, an estrogen receptor antagonist/selective estrogen receptor modulator. These results indicate that the neuroprotective effects of E2 may be mediated at least in part via estrogen receptor-mediated protein kinase B activation.

Alzheimer Disease↗

Cerebrospinal fluid and behavioral changes after methyltestosterone administration: preliminary findings.

BACKGROUND: Anabolic androgen steroid abuse is associated with multiple psychiatric symptoms and is a significant public health problem. The biological mechanisms underlying behavioral symptom development are poorly understood. SUBJECTS AND METHODS: We examined levels of monoamine metabolites, neurohormones, and neuropeptides in the cerebrospinal fluid (CSF) of 17 healthy men, at baseline and following 6 days of methyltestosterone (MT) administration (3 days of 40 mg/d, then 3 days of 240 mg/d). Subjects received MT or placebo in a fixed sequence, with neither subjects nor raters aware of the order. Potential relationships were examined between CSF measures, CSF MT levels, and behavioral changes measured on a visual analog scale. RESULTS: Following MT administration, levels of 3-methoxy-4-hydroxyphenylglycol (MHPG) were significantly lower (mean +/- SD, 103.8 +/- 47 vs 122.0 +/- 50.7 pmol/mL; P<.01), and 5-hydroxyindoleacetic acid (5-HIAA) levels were significantly higher (mean +/- SD, 104.7 +/- 31.3 vs 86.9 +/- 23.6 pmol/mL; P<.01). No significant MT-related changes were observed in CSF levels of corticotropin, norepinephrine, cortisol, arginine vasopressin, prolactin, corticotropin-releasing hormone, beta-endorphin, and somatotropin release-inhibiting factor. Changes in CSF 5-HIAA significantly correlated with increases in "activation" symptoms (energy, sexual arousal, and diminished sleep) (r = 0.55; P =.02). No significant correlation was observed between changes in CSF and plasma MT, CSF MHPG, and behavioral symptoms. CONCLUSIONS: Short-term anabolic androgenic steroid use affects brain neurochemistry, increasing CSF 5-HIAA and decreasing MHPG. Changes in 5-HIAA levels caused by anabolic androgenic steroids are related to the behavioral changes we observed. In this small sample, we did not observe a significant relationship between behavioral measures and either dose of MT or CSF and plasma levels of MT.

Adolescent↗

Effects of gonadal steroids on peripheral benzodiazepine receptor density in women with PMS and controls.

BACKGROUND: GABA receptor-modifying neurosteroids may play a role in premenstrual syndrome (PMS). The peripheral benzodiazepine receptor (PBR) both regulates the formation of neurosteroids and is, in animals, regulated by ovarian steroids. Alterations in PBR density have been observed in association with several psychiatric disorders. METHODS: We examined the effects of gonadal steroids on lymphocytic PBR density in nine women with prospectively confirmed PMS and nine controls. PBR densities were measured during three pharmacologically controlled conditions: gonadotropin releasing hormone agonist (Lupron)-induced hypogonadism, Lupron plus estradiol, and Lupron plus progesterone replacement. Blood samples were obtained after six weeks of Lupron alone and after 3-4 weeks of estradiol and progesterone replacement. RESULTS: No significant hormone state-related changes in PBR density were observed (ANOVA-R: phase-F(2,32)=1.5, P=0.2). Despite mood symptom development in the subjects with PMS, PBR density did not differ in women with PMS compared to controls across hormonal states (ANOVA-R: F(1,16)=0.6, P=0.4). CONCLUSIONS: PBR densities are not altered in women with PMS and are not changed significantly by selective gonadal steroid administration. Changes in PBR density would not appear to underlie the differential sensitivity to the mood destabilizing effects of ovarian steroids in PMS.

Affect↗

Effects of the menstrual cycle on measures of personality in women with premenstrual syndrome: a preliminary study.

BACKGROUND: Previous studies suggest that women with premenstrual syndrome (PMS) differ from those without PMS in measures of personality. The purpose of this study was to measure the effect of menstrual cycle phase on personality variables in women with and without PMS. METHOD: The Personality Diagnostic Questionnaire-Revised (PDQ-R) was administered in both the follicular and luteal phases to women with PMS (according to National Institute of Mental Health PMS Workshop Diagnostic Guidelines) (N = 40). An asymptomatic control group (N = 20) as well as a symptomatic group of women with DSM-IV-diagnosed recurrent, non-menstrual-cycle-related brief depression (N = 20) also completed the questionnaire in both phases. RESULTS: Only women with PMS demonstrated a significant increase in total PDQ-R score (reflecting overall personality disorder) from the follicular to the luteal phase (p < .01). Women with PMS had significantly higher total PDQ-R scores than the asymptomatic controls during both the follicular (p < .05) and luteal (p < .01) phases, whereas there was no significant difference between women with PMS and symptomatic controls during either phase. Subscale scores fit similar patterns, as did the number of women in each group meeting a cutoff score indicative of the presence of personality dysfunction. CONCLUSION: In this preliminary study, women with PMS were unique in demonstrating a menstrual cycle phase effect on PDQ-R score, while their scores in both phases were closer to symptomatic controls than asymptomatic controls. These findings suggest that personality disorder in women with PMS may have both state- and trait-related components.

Adult↗

Testosterone and estrogen affect neuronal differentiation but not proliferation in early embryonic cortex of the rat: the possible roles of androgen and estrogen receptors.

We examined the effect of testosterone (T) and 17 beta-estradiol (E) on differentiation and proliferation of cultured neurons from the cortex of 14-day-rat embryos (E14) using immunocytochemistry. We found that the cultures receiving E had significantly more neurons with longer neurites than the control cultures, while both fewer and less differentiated neurons were seen after 24 h of incubation with T. However, neither T nor E changed the number of cells positive for BrdU, a proliferation marker. We also found that the androgen receptor (AR) was markedly expressed in the neurons, whereas the expression of estrogen (ER(alpha)) receptor was barely detectable. These results suggest that E and T differ in effect on differentiation, while neither affect proliferation in early developmental cortex. Furthermore, since the AR is expressed in the cortical neurons by E14, the inhibitory effect of T on differentiation may be receptor-mediated, while the stimulatory effects of estrogen in the cortex do not appear to involve nuclear ER(alpha) at this developmental stage.

Androgens↗

TNF-alpha induced over-expression of GFAP is associated with MAPKs.

Increased levels of tumor necrosis factor-alpha (TNF-alpha), a pluripotent cytokine that is reportedly mitogenic to astrocytes, are associated with the expression of glial fibrillary acidic protein (GFAP), the most specific marker for astrocytes, in many neuropathological conditions, including brain injury, CNS infection, Creutzfeldt-Jakob disease and Alzheimer's disease. Here, we show that treatment of cultured astrocytes with TNF-alpha resulted in dramatic over-expression of GFAP, associated with a substantial activation of the mitogen activated protein kinase (MAPK) Erk2 (extracellular signal-regulated protein kinase). We also demonstrate that TNF-alpha-induced over-expression of GFAP was significantly attenuated by the MAPK inhibitor PD98059. We conclude that TNF-alpha may upregulate GFAP through the MAPK signaling pathway. Because increased GFAP is a hallmark of reactive gliosis, understanding the mechanisms that regulate GFAP expression may facilitate development of strategies to minimize the gliosis associated with many brain diseases.

Animals↗

Estrogen replacement in perimenopause-related depression: a preliminary report.

OBJECTIVES: We examined the efficacy of estrogen in the treatment of depression in perimenopausal women with and without hot flushes. STUDY DESIGN: Women with perimenopause-related depression were randomized in a double-blind parallel design to receive either 17beta-estradiol or placebo for 3 weeks. Subsequently, women receiving estradiol during the first 3 weeks continued receiving estradiol for an additional 3 weeks, whereas women who had received placebo crossed over to estradiol for 3 weeks. Outcome measures included standardized mood rating scales and a visual analog scale self-report instrument. RESULTS: Of 34 female subjects, 16 received estradiol first and 18 received placebo first. After 3 weeks of estradiol, standardized mood rating scale scores and visual analog scale symptom scores (eg, sadness, anhedonia, and social isolation) were significantly decreased compared with baseline scores (P <.01) and were significantly lower than scores in women receiving placebo (P <.01), who showed no significant improvement. Neither the presence of hot flushes nor the duration of treatment (3 weeks vs 6 weeks) influenced outcome. A full or partial therapeutic response was seen in 80% of subjects receiving estradiol and 22% of those receiving placebo. CONCLUSION: In this preliminary study estradiol replacement effectively treats perimenopausal depression independent of its salutary effects on vasomotor symptoms.

Cross-Over Studies↗