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Biomedical subjects

D L Murphy

Publications and source records attributed to D L Murphy.

At least 109 records · Page 6Linked to original sources

CSF 5-HIAA and family history of antisocial personality disorder in newborns.

OBJECTIVE: The relationship between genetic liability for antisocial behavior and CSF 5-hydroxyindoleacetic acid (5-HIAA) in newborns was explored. METHOD: The authors assayed 5-HIAA in "leftover" CSF from 193 neurologically normal newborns and obtained family psychiatric histories of the newborns' first- and second-degree relatives. RESULTS: Levels of 5-HIAA were significantly lower in the infants with family histories of antisocial personality disorder than in the newborns without such family histories. CONCLUSIONS: These findings support the possibility that serotonin mediates one component of genetic liability to antisocial outcome, but the magnitude of that component may be less than what has been inferred from previously published reports.

Adult↗

Effect of prefrontal repetitive transcranial magnetic stimulation in obsessive-compulsive disorder: a preliminary study.

OBJECTIVE: Prefrontal mechanisms are implicated in obsessive-compulsive disorder. The authors investigated whether prefrontal repetitive transcranial magnetic stimulation influenced obsessive-compulsive disorder symptoms. METHOD: Twelve patients with obsessive-compulsive disorder were given repetitive transcranial magnetic stimulation (80% motor threshold, 20 Hz/2 seconds per minute for 20 minutes) to a right lateral prefrontal, a left lateral prefrontal, and a midoccipital (control) site on separate days, randomized. The patients' symptoms and mood were rated for 8 hours afterward. RESULTS: Compulsive urges decreased significantly for 8 hours after right lateral prefrontal repetitive transcranial magnetic stimulation, but there were nonsignificant increases in compulsive urges after repetitive transcranial magnetic stimulation of the midoccipital site. A shorter-lasting (30 minutes), modest, and nonsignificant reduction in compulsive urges occurred after left lateral prefrontal repetitive transcranial magnetic stimulation. Mood improved during and 30 minutes after right lateral prefrontal stimulation. CONCLUSIONS: These preliminary results suggest that right prefrontal repetitive transcranial magnetic stimulation might affect prefrontal mechanisms involved in obsessive-compulsive disorder.

Adult↗

Effect of menstrual cycle phase on neuroendocrine and behavioral responses to the serotonin agonist m-chlorophenylpiperazine in women with premenstrual syndrome and controls.

To evaluate the potential role of serotonin in the premenstrual syndrome (PMS), we investigated the effects of menstrual cycle phase on neuroendocrine and behavioral responses to the serotonergic agent m-chlorophenylpiperazine (m-CPP) in women with PMS and controls. A single oral dose of m-CPP (0.5 mg/kg) was administered to 10 PMS patients and 10 healthy controls during the follicular and luteal phases of the menstrual cycle. We observed the following. m-CPP administration during the luteal phase resulted in an acute improvement of PMS symptoms; the plasma cortisol and ACTH responses to m-CPP were blunted in both menstrual cycle phases in PMS patients compared with controls. These data provide evidence for the acute efficacy of m-CPP in the treatment of PMS. Although there is additional evidence for dysregulation of either the hypothalamic-pituitary-adrenal axis or serotonin control of the hypothalamic-pituitary-adrenal axis in women with PMS, there is little evidence for luteal phase-specific serotonergic dysfunction. These findings, nonetheless, implicate the serotonin system as a modulating (not causal) factor in PMS.

Adult↗

Monoamine metabolites in 'leftover' newborn human cerebrospinal fluid--a potential resource for biobehavioral research.

Although variations in monoamine neurotransmission have been implicated in a variety of psychopathologic outcomes in man, little is known about how monoamines influence or are affected by developmental processes early in childhood. In this study, assays for 5-hydroxyindoleacetic acid (5-HIAA), homovanillic acid (HVA), and 3-methoxy-4-hydroxyphenylglycol (MHPG) were obtained from leftover cerebrospinal fluid (CSF) of 119 human newborns. The levels of these monoamine metabolites were in keeping with pre-existing 'normative' data from two small previously published studies. The levels were largely unaffected by variations in the infants' physiologic condition at the time of lumbar puncture, and exhibited evidence for circadian rhythms. Among 32 infants (8 neurologically normal, 24 neurologically compromised) for whom more than one CSF sample was obtained during the first year of life, the correlations between baseline and follow-up measurements for 5-HIAA and HVA were on the order of 0.75. Correlations between twins (four sets) were significantly higher than those between unrelated individuals for 5-HIAA and HVA. At 9-month follow-up, neurologically normal infants in the lower extreme 15% of the distribution for 5-HIAA exhibited a trend toward lower scores for sociability on the Colorado Childhood Temperament Inventory (maternal report) than their counterparts at the upper extreme of the 5-HIAA distribution. Leftover CSF is a readily available resource for measurements of monoamine metabolites (and possibly other CSF constituents) in population-based samples of human newborns.

Brain Damage, Chronic↗

Association of anxiety-related traits with a polymorphism in the serotonin transporter gene regulatory region.

Transporter-facilitated uptake of serotonin (5-hydroxytryptamine or 5-HT) has been implicated in anxiety in humans and animal models and is the site of action of widely used uptake-inhibiting antidepressant and antianxiety drugs. Human 5-HT transporter (5-HTT) gene transcription is modulated by a common polymorphism in its upstream regulatory region. The short variant of the polymorphism reduces the transcriptional efficiency of the 5-HTT gene promoter, resulting in decreased 5-HTT expression and 5-HT uptake in lymphoblasts. Association studies in two independent samples totaling 505 individuals revealed that the 5-HTT polymorphism accounts for 3 to 4 percent of total variation and 7 to 9 percent of inherited variance in anxiety-related personality traits in individuals as well as sibships.

Adolescent↗

Biological and behavioral responses to D-amphetamine, alone and in combination with the serotonin3 receptor antagonist ondansetron, in healthy volunteers.

Evidence that serotonin3 (5-hydroxytryptamine3, 5-HT3) antagonists attenuate behavioral responses to D-amphetamine and cocaine suggests that 5-HT3 receptors modulate brain dopamine in animals. This study examined the potential interactions of the 5-HT3 antagonist ondansetron and D-amphetamine in 10 healthy human volunteers. After the subjects were pretreated with placebo or ondansetron (0.15 mg/kg, i.v.), 5-h challenge tests with oral D-amphetamine (0.5 mg/kg) were performed. As animal studies and early clinical studies with ondansetron have suggested nonlinear dose-response relationships, three subjects also underwent pilot studies with three doses of ondansetron (0.15, 0.05, and 0.015 mg/kg) before they received D-amphetamine. Administration of D-amphetamine increased plasma levels of cortisol, prolactin, growth hormone; elevated blood pressure, pulse, and temperature; and tended to increase self-ratings of activation/euphoria and anxiety. Amphetamine-induced increases in plasma prolactin were significantly reduced by ondansetron pretreatment, but the other neuroendocrine responses were unchanged. Diastolic blood pressure elevations were also significantly attenuated after administration of the lower ondansetron doses, but the other physiologic responses were unchanged. In subjects with minimal or moderate activation/euphoria responses, ondansetron pretreatment only minimally affected these effects of D-amphetamine. Preliminary data, however, indicate that those subjects with robust activation-euphoria responses to D-amphetamine had attenuated responses after ondansetron pretreatment. Taken together, these results suggest that some but not most of D-amphetamine's biological and behavioral effects may be modified by a 5-HT3 antagonist in healthy human volunteers.

Administration, Oral↗

Intact coding region of the serotonin transporter gene in obsessive-compulsive disorder.

Epidemiologic studies indicate that obsessive-compulsive disorder is genetically transmitted in some families, although no genetic abnormalities have been identified in individuals with this disorder. The selective response of obsessive-compulsive disorder to treatment with agents which block serotonin reuptake suggests the gene coding for the serotonin transporter as a candidate gene. The primary structure of the serotonin-transporter coding region was sequenced in 22 patients with obsessive-compulsive disorder, using direct PCR sequencing of cDNA synthesized from platelet serotonin-transporter mRNA. No variations in amino-acid sequence were found among the obsessive-compulsive disorder patients or healthy controls. These results do not support a role for alteration in the primary structure of the coding region of the serotonin-transporter gene in the pathogenesis of obsessive-compulsive disorder.

Adult↗

NMDA receptor antagonists block development of tolerance to m-CPP-induced increases in ACTH concentrations in rats.

We have recently demonstrated that a single administration of m-chlorophenylpiperazine (m-CPP, a preferential 5-HT2C receptor agonist) produces tolerance to its stimulatory effect on adrenocorticotropic hormone (ACTH) concentrations when challenged 24 h later with the same dose of m-CPP. In the present study, we studied the effects of pretreatment with various N-methyl-D-aspartate (NMDA) receptor antagonists on development of tolerance to m-CPP's stimulatory effect on ACTH concentrations. Pretreatment with various NMDA receptor antagonists such as 5.7-dichlorokynurenic acid (1.0 mg/kg), 3-amino-1-hydroxy 2-pyrrolidone (1.0 mg/kg), dizocilpine (0.1 mg/kg) and ifenprodil (1.0 mg/kg) injected 30 min before the first injection of m-CPP (2.5 mg/kg) blocked development of tolerance to m-CPP's stimulatory effect on ACTH concentrations in rats injected 24 h later with the same dose (2.5 mg/kg) of m-CPP. These findings suggest that tolerance to postsynaptic 5-HT2C receptor-mediated response is initiated though stimulation of NMDA receptor complex and, furthermore, demonstrate a functional interaction between the 5-HT and glutamate systems.

Adrenocorticotropic Hormone↗

Suppression of hydroxyl radical formation and protection of nigral neurons by l-deprenyl (selegiline).

The present study clearly demonstrated that l-deprenyl confers a substantial protective effect against MPP+ in the substantia nigra zona compacta in vivo. 32.39. The protection provided by l-deprenyl may not depend on its inhibition of type B monoamine oxidase. A unique antioxidant property of l-deprenyl by suppression of cycotoxic. OH formation and associated oxidative damage induced by MPP+ in the A9 melanized nigral neurons may contribute to the protection against MPP+ toxicity in the nigrostriatal system. The likelihood that l-deprenyl may confer neuroprotection against MPP+ toxicity through antioxidant effect is further strongly supported by our recent data that U-78517F (2-methlaminochromans) a potent inhibitor of ironcatalyzed lipid peroxidation, and DMSO an effective. OH scavenger also protect nigral neurons against MPP(+)-induced severe oxidative injury in the substantia nigra. This putative antioxidant effect of deprenyl may explore another mechanism which may in part contribute to its overt neuroprotection against several toxins, including 6-OHDA, DSP-4, and MPTP, and the possible clinical effects on slowing the neuronal degeneration in early Parkinson's disease, Alzheimer's disorder and even senescent changes.

1-Methyl-4-phenylpyridinium↗

Specific genetic deficiencies of the A and B isoenzymes of monoamine oxidase are characterized by distinct neurochemical and clinical phenotypes.

Monoamine oxidase (MAO) exists as two isoenzymes and plays a central role in the metabolism of monoamine neurotransmitters. In this study we compared the neurochemical phenotypes of previously described subjects with genetically determined selective lack of MAO-A or a lack of both MAO-A and MAO-B with those of two subjects with a previously described X chromosome microdeletion in whom we now demonstrate selective MAO-B deficiency. Mapping of the distal deletion breakpoint demonstrates its location in intron 5 of the MAO-B gene, with the deletion extending proximally into the Norrie disease gene. In contrast to the borderline mental retardation and abnormal behavioral phenotype in subjects with selective MAO-A deficiency and the severe mental retardation in patients with combined MAO-A/MAO-B deficiency and Norrie disease, the MAO-B-deficient subjects exhibit neither abnormal behavior nor mental retardation. Distinct neurochemical profiles characterize the three groups of MAO-deficient patients. In MAO-A-deficient subjects, there is a marked decrease in deaminated catecholamine metabolites and a concomitant marked elevation of O-methylated amine metabolites. These neurochemical changes are only slightly exaggerated in patients with combined lack of MAO-A and MAO-B. In contrast, the only biochemical abnormalities detected in subjects with the MAO-B gene deletion are a complete absence of platelet MAO-B activity and an increased urinary excretion of phenylethylamine. The differences in neurochemical profiles indicate that, under normal conditions, MAO-A is considerably more important than MAO-B in the metabolism of biogenic amines, a factor likely to contribute to the different clinical phenotypes.

Adult↗

Hypervigilance in patients with obsessive-compulsive disorder.

The hypothesis that patients with obsessive-compulsive disorder (OCD) suffer from hypervigilant attention was investigated via explicit memory (incidental recall and recognition) and priming (reading speed) measures. OCD patients did not differ from normal controls on explicit measures of memory; specifically, recognition of unusual words (experiment 1) and recall and recognition of words and feature-specific information (experiment 2). Although both normal controls and OCD patients showed priming, the pattern of priming differed for the two groups (experiment 2). Specifically, patients with OCD failed to show feature-specific priming, suggesting they may have attended more focally on the priming task than did normal controls. These findings support previous reports of normal performance in OCD on explicit memory tasks, but suggest more sensitive measures may reflect differences in processing information.

Adult↗

Evidence that m-chlorophenylpiperazine-induced hyperthermia in rats is mediated by stimulation of 5-HT2C receptors.

Intraperitoneal administration of m-chlorophenylpiperazine (m-CPP) to Wistar rats produced hyperthermia with a peak effect at 30 min. Pretreatment with low doses of metergoline (5-HT1/5-HT2 antagonist), mesulergine and mianserin (5-HT2C/5-HT2A antagonists) blocked m-CPP-induced hyperthermia. Pretreatment with propranolol (beta-adrenergic receptor antagonist that also has binding affinity for 5-HT1A, 5-HT1B and 5-HT2B sites), yohimbine (alpha 2-noradrenergic antagonist that also has binding affinity for 5-HT2B sites), MDL-72222 or ondansetron (5-HT3 antagonists) did not attenuate m-CPP-induced hyperthermia. Only high doses of ketanserin, LY-53857 and ritanserin (5-HT2A/5-HT2C antagonists) as well as spiperone (5-HT1A/5-HT2A/D2 antagonist) attenuated m-CPP-induced hyperthermia. Daily administration of m-CPP produced complete tolerance to its hyperthermic effect by day 5. However, there was no cross-tolerance to 1-(2,5-dimethoxy-4-iodophenyl)-2-aminopropane (DOI, a 5-HT2A agonist that also has high affinity for 5-HT2C receptors)-induced hyperthermia. m-CPP-induced increases in temperature were found to be significantly less in the Fawn-Hooded (FH) rat strain as compared to the Wistar rat strain; in prior studies, FH rats have been found to be subsensitive to other 5-HT2C-mediated pharmacologic responses. Altogether, these findings suggest that m-CPP-induced hyperthermia in rats is mediated by selective stimulation of 5-HT2C receptors.

Adrenergic alpha-Antagonists↗

Daily administration of m-chlorophenylpiperazine to healthy human volunteers rapidly attenuates many of its behavioral, hormonal, cardiovascular and temperature effects.

The serotonergic agent meta-chlorophenylpiperazine (m-CPP) increases temperature and plasma ACTH and other hormones and decreases social interaction, locomotor activity and food intake in rats, most likely via stimulation of 5-HT2C receptors. Repeated daily administration of m-CPP to rats induces rapid tolerance to these effects of m-CPP. As m-CPP has been used in challenge tests and in preliminary treatment trials in humans, we evaluated the possible development of tolerance to m-CPP in ten healthy human volunteers using a double-blind, random assignment crossover study of placebo versus daily m-CPP infusions. Psychological and physical symptoms of anxiety, temperature, pupil size, diastolic blood pressure, and plasma ACTH, cortisol, and prolactin concentrations were increased by the first administration of m-CPP (0.08 mg/kg) compared to placebo. All of these responses were attenuated on m-CPP days 2 and 3. Plasma m-CPP levels did not differ across the 3 m-CPP days. Repeated m-CPP administration thus appears to induce rapid tolerance to its behavioral and physiological effects in humans. Further investigations of the mechanisms involved in the development of subsensitivity to m-CPP may contribute to increased understanding of the regulation of serotonin-mediated functions and of anxiety disorders.

Adrenocorticotropic Hormone↗

Effects of serotonergic agents on food-restriction-induced hyperactivity.

Rats that are fed for 90 min per day can stabilize their weight after an initial drop; however, if rats on this feeding schedule are also given access to a running wheel, they run excessively, eat less, lose weight, and often die. To investigate this phenomenon as a possible animal model of obsessive-compulsive disorder (OCD), rats were treated for 5 weeks with fluoxetine, an antidepressant that relieves OCD symptoms in humans (5 mg/kg, 2.5 mg/kg), or imipramine, an antidepressant that does not affect OCD symptoms (5 mg/kg), or saline prior to exposure to food restriction and the running wheel. In addition, because chronic fluoxetine treatment is thought to enhance serotonergic neurotransmission, for contrast an additional group of rats were treated with parachlorophenylalanine (PCPA), a tryptophan hydroxylase inhibitor that depletes serotonin. Rats treated with fluoxetine lost significantly less weight, ran significantly less, and increased food intake more rapidly during restriction of food availability than saline-treated rats. Rats treated with imipramine did not differ from those treated with saline on these parameters. Compared to saline-treated rats, rats treated with PCPA lost more weight, ate less food, and increased running more rapidly. These effects of pharmacological treatment indicate an inverse relationship between central serotonergic activity and vulnerability to develop food-restriction-induced anorexia and compulsive running. In addition, like OCD in humans, this phenomenon in rats seems to be blocked by chronic treatment with a serotonin selective reuptake inhibitor but not a less selective monoamine reuptake inhibitor.

Animals↗

Neuroendocrine responses to serotonergic agonists as indices of the functional status of central serotonin neurotransmission in humans: a preliminary comparative analysis of neuroendocrine endpoints versus other endpoint measures.

The status of central serotonergic neurotransmission and of specific serotonin (5-HT) receptor subtype sensitivity has been inferred from neuroendocrine and other endpoint responses to serotonergic agents given to humans. The question of whether changes in neuroendocrine responsivity to the 5-HT2C partial agonist, meta-chlorophenylpiperazine (m-CPP), are accompanied by similar changes in other endpoints (temperature, behavior) is addressed in this brief review of published studies. These studies were selected based on the following criteria: (1) neuroendocrine (cortisol, prolactin increases) and at least one other endpoint (behavior and/or temperature increases) were measured in the same populations, and (2) statistically significant changes were observed after m-CPP in the healthy volunteer control or pre-long-term-treatment subjects. Parenthetically, in the 13 of 14 studies that reported both prolactin and cortisol responses, the results were congruent for the two neuroendocrine measures in 12 of the 13 (92%). However, neuroendocrine versus behavioral results were in agreement in fewer (7 of the 13) studies (54%). Neuroendocrine vs. temperature results were non-concordant in all 4 of the studies which included temperature measurements. These generally disparate findings suggest that these different endpoints may reflect brain serotonin neuroanatomic and receptor subsystem complexity and/or m-CPP's complex pharmacological properties. Thus, these neuroendocrine response measures cannot at this time be considered a general index of the other response measures, nor necessarily an index of the functional status of central serotonergic neurotransmission until this is established by more direct experimental investigations.

Behavior↗

Alterations in responses to LSD in humans associated with chronic administration of tricyclic antidepressants, monoamine oxidase inhibitors or lithium.

This study sought to investigate possible interactions between antidepressant agents and lysergic acid diethylamide (LSD) in humans through the use of retrospective questionnaires. Ten subjects were identified who used LSD during chronic (3 weeks or longer) periods of antidepressant administration. These subjects were asked to describe the phenomenological effects of self-administered hallucinogens prior to and during antidepressant treatment; a structured, standardized questionnaire was used to evaluate LSD experiences. Chronic tricyclic antidepressant administration was associated with subjective increases in physical, hallucinatory and psychological responses to LSD. Similarly, subjects receiving lithium chronically also reported increases in their responses to LSD. In contrast, subjects who had been chronically taking an monoamine oxidase (MAO) inhibitor reported subjective decreases in the effects of LSD. This is similar to a previous report by our group of a decreased response to LSD in individuals who were chronically taking serotonin-selective antidepressants. These altered responses to LSD most likely involve differential changes in central serotonin and dopamine receptor systems and are consistent with other recent data suggesting that the clinical efficacy of different classes of antidepressants may not necessarily rely on a common mechanism of action in the brain.

Adult↗

Chronic administration of serotonergic antidepressants attenuates the subjective effects of LSD in humans.

This study investigates the possible interactions of antidepressant agents and hallucinogens in humans through structured interviews using a standardized questionnaire. Volunteer subjects recruited through announcements placed on the Internet or other sources were asked to describe the somatic, hallucinatory, and psychological effects of self-administered LSD prior to and during chronic administration of an antidepressant. Twenty-eight out of 32 subjects (88%) who had taken an antidepressant with inhibitory effects on serotonin (5-HT) reuptake (fluoxetine, paroxetine, sertraline, trazodone) for over 3 weeks had a subjective decrease or virtual elimination of their responses to LSD. An additional subject who had taken fluoxetine for only 1 week had an increased response to LSD. These data are in contrast to our previous study that reported increased responses to LSD during chronic administration of tricyclic antidepressants or lithium. Possible mechanisms of action for the effects from serotonergic antidepressants involve 5-HT2 and 5-HT1A receptors, changes in extracellular brain serotonin concentrations, and changes in brain catecholamine systems.

Adult↗