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D L Murphy

Publications and source records attributed to D L Murphy.

At least 253 records · Page 14Linked to original sources

Evidence for a decline with age in behavioral responsivity to the serotonin agonist, m-chlorophenylpiperazine, in healthy human subjects.

The functional significance of alterations in brain serotonin (5HT) associated with normal aging in both animals and humans is largely unknown. Using the effects of the 5HT agonist, m-chlorophenylpiperazine (m-CPP), as a measure of central serotonergic responsivity, we compared the behavioral and neuroendocrine responses of older normal volunteers (mean age +/- SD = 62.4 +/- 4.12) to those of younger normal volunteers (mean age +/- SD = 31.6 +/- 5.52). When m-CPP was administered intravenously, older subjects showed decreased behavioral responses but similar neuroendocrine responses, compared to younger subjects. The decreased behavioral responsivity was unrelated to pharmaco-kinetic differences between the groups, since m-CPP plasma levels were similar in both groups. This report is the first in vivo study in humans to demonstrate decreased behavioral responsivity with age following serotonergic stimulation, and may indicate a functionally less responsive 5HT subsystem in older subjects.

Adult↗

Hyperlocomotion induced by dopamine or cholecystokinin + dopamine in the nucleus accumbens is not modified by chronic lithium treatment.

1. Peptides such as cholecystokinin have been reported to modulate the effects of dopaminergic agonists on locomotion in rats. 2. The present experiments tested the possibility that lithium interacts with dopaminergic function through the same mechanism by which cholecystokinin potentiates dopaminergic function. 3. The results suggest that dietary lithium has no effect on the ability of either dopamine alone, or the combination of dopamine plus cholecystokinin, microinjected directly into the nucleus accumbens, to stimulate hyperlocomotion.

Animals↗

Platelet monoamine oxidase activity and life stress as predictors of psychopathology and coping in a community sample.

The present study, using a diathesis-stress model, attempted to confirm prior findings with platelet monoamine oxidase (MAO) activity and stress in a middle-aged, non-clinic population. One hundred and seventy-eight adult males from a statewide community club were tested for platelet MAO activity and stressful life events and were also given a variety of psychological measures of both psychopathology and psychosocial coping. The data were examined both for correlations across the total sample and for a comparison of high-risk groups (top and bottom 15% of MAO activity) with a middle MAO group. Low platelet MAO activity was related to a higher incidence of contact with mental health professionals, and more frequent use of alcohol and cigarette smoking. High MAO activity was related to higher levels of anxiety and somatization. High levels of stress were related to increased psychosocial problems reported for female and family members, higher scores on two schizophrenia-related MMPI scales (schizophrenia and paranoia subscales), but fewer idiosyncratic associations, elevated hypomanic, depression, and anxiety scores, increased alcohol use, and increased use of prescribed antianxiety and sedative medication. Neither MAO nor stress were related to current levels of psychosocial coping. Moreover, no interaction effects were uncovered for MAO activity and stress combined.

Adaptation, Psychological↗

Marked increases in plasma catecholamine concentrations precede hypotension and bradycardia caused by 8-hydroxy-2-(di-n-propylamino) tetralin (8-OH-DPAT) in conscious rats.

Plasma noradrenaline and adrenaline responses to 8-hydroxy-2-(di-n-propylamino)-tetralin (8-OH-DPAT), a selective putative 5-HT1A receptor agonist, have been studied in conscious, freely moving rats. Intravenously administered 8-OH-DPAT caused dose-related and sustained increases in plasma noradrenaline (2-fold) and adrenaline (11-fold) concentrations. Neither metergoline pretreatment (0.5 mg kg-1 i.v.) nor splanchnicectomy had any effect on the noradrenaline and adrenaline elevation caused by 8-OH-DPAT (250 micrograms kg-1 i.v.). The catecholamine responses peaked early but were still present during nadirs in blood pressure and heart rate. The discrepancy between plasma catecholamine and cardiovascular changes raises further questions about the mechanism of action of 8-OH-DPAT and supports other evidence suggesting a role for vagus stimulation in the cardiovascular effects caused by this drug.

8-Hydroxy-2-(di-n-propylamino)tetralin↗

Long-term cortisol treatment impairs behavioral and neuroendocrine responses to 5-HT1 agonists in the rat.

The effects of chronic cortisol treatment on neuroendocrine and behavioral responses to serotonin1 (5-HT1) receptor agonists were studied in conscious, freely moving rats. Seven-day cortisol treatment (25 mg/kg/day with osmotic minipumps) markedly suppressed basal plasma corticotropin (ACTH) and corticosterone concentrations, indicating a suppression of the hypothalamo-pituitary-adrenocortical axis. Cortisol also decreased body weight, food intake, plasma norepinephrine (NE), and epinephrine (E) levels. In the drug challenge studies, we used two 5-HT1 agonists, the 5-HT1B and 5-HT1C agonist, m-chlorophenylpiperazine (m-CPP), and the 5-HT1A agonist, 8-hydroxy-2-(di-n-propylamino) tetralin (8-OHDPAT), to examine the effect of cortisol on their behavioral and neuroendocrine effects. After 7-day cortisol treatment, plasma prolactin responses to both m-CPP and 8-OHDPAT were significantly decreased. While the plasma NE, E, and food intake responses to m-CPP were also significantly reduced by cortisol treatment, these same responses to 8-OHDPAT were unchanged. The effect of m-CPP on locomotor activity was also decreased. Since only the responses to m-CPP and 8-OHDPAT previously shown to be antagonized by pretreatment with the 5-HT1/5-HT2 antagonist, metergoline, were significantly attenuated after cortisol treatment, these changes may be specific to 5-HT receptors. These data indicate that chronic exposure to high glucocorticoid levels alters 5-HT1 receptor-mediated functions and provides additional evidence relevant to the contribution of glucocorticoid elevation to the symptoms of depression.

8-Hydroxy-2-(di-n-propylamino)tetralin↗

Serotonin agonists cause parallel activation of the sympathoadrenomedullary system and the hypothalamo-pituitary-adrenocortical axis in conscious rats.

The effects of three potent serotonin (5-HT) agonists with different structures and 5-HT receptor binding profiles on sympathoadrenomedullary and hypothalamo-pituitary-adrenocortical axis functions were assessed in conscious, freely moving male Sprague-Dawley rats. The 5-HT1A agonist, 8-hydroxy-2-(di-n-propylamino)tetralin (8-OH-DPAT), the 5-HT1C agonist, m-chlorophenylpiperazine (m-CPP), and the 5-HT2/5-HT1C agonist, 1-(2,5-dimethoxy-4-iodophenyl)2-amino-propane (DOI), all produced marked dose-dependent increases in plasma epinephrine and ACTH concentrations. Both epinephrine and ACTH responses peaked at 10 min and showed strong positive correlations across all drugs and doses studied. Corticosterone increases showed a saturable response pattern and were close to the maximum level with a relatively small (approximately 2.5-fold) increase in plasma ACTH concentrations. Norepinephrine levels showed small dose-dependent increases after 8-OH-DPAT and m-CPP and decreases after DOI treatment. These results suggest that both the sympathoadrenomedullary system and the hypothalamo-pituitary-adrenocortical axis can be activated via 5-HT1 and 5-HT2 receptors and that these two systems may have common or similar regulatory mechanisms triggered by these stimuli.

8-Hydroxy-2-(di-n-propylamino)tetralin↗

Obsessive-compulsive disorder as a 5-HT subsystem-related behavioural disorder.

Involvement of the brain serotonin (5-HT) neurotransmitter system in obsessive-compulsive disorder (OCD) was originally suggested on the basis of therapeutic effects found with the semiselective serotonin uptake inhibitor, clomipramine. More recent studies directly comparing clomipramine with non-selective or norepinephrine-selective uptake inhibitors, such as desipramine or nortriptyline, as well as studies with new, more selective serotonin uptake inhibitors, including fluvoxamine and fluoxetine, have supported that hypothesis. Clomipramine's antiobsessional effect has been augmented with the serotonin precursor, L-tryptophan, or with lithium, which has prominent serotonergic effects. Patients whose OCD symptoms improved on clomipramine worsened when the drug was discontinued (regardless of duration of therapy) and improved when clomipramine was reinstituted. OCD symptoms also worsened when metergoline, a 5-HT antagonist, was given to patients who had improved with clomipramine. Metergoline given alone had no effect. Administration of m-chlorophenylpiperazine (m-CPP), a 5-HT receptor agonist, to untreated OCD patients increased their anxiety, depression, and dysphoria, and exacerbated their OC symptoms. After 4 months of clomipramine therapy, m-CPP failed to produce the same behavioural effects, suggesting an alteration of a 5-HT subsystem (possibly downregulation of some 5-HT receptors). The data reviewed suggest an important role for an abnormal brain 5-HT subsystem in patients with OCD.

Brain↗

Different serotonin receptors mediate blood pressure, heart rate, plasma catecholamine and prolactin responses to m-chlorophenylpiperazine in conscious rats.

The serotonin (5-HT) agonist, m-chlorophenylpiperazine (m-CPP), has been shown to increase blood pressure (BP), heart rate (HR), plasma catecholamine and prolactin (PRL) concentrations and to cause hypoactivity in rodents. In the present study, we used selective 5-HT and adrenergic antagonists to study the involvement of different receptor subtypes on the effects of m-CPP in conscious, freely moving rats. Hypoactivity and PRL responses were blocked by pretreatment with metergoline but not by pretreatment with other antagonists. BP increases were antagonized by ritanserin (0.1, 0.63 and 2.0 mg/kg) and ketanserin; metergoline, xylamidine or prazosin pretreatment had only partial effects on BP responses. HR increases were antagonized by yohimbine, pindolol, ketanserin and by the two higher doses of ritanserin. After pretreatment with the two higher doses of ritanserin, m-CPP decreased markedly BP and HR. These decreases were prevented by metergoline pretreatment. Norepinephrine and epinephrine responses were dose-dependently attenuated by ritanserin; naloxone pretreatment attenuated epinephrine but not norepinephrine responses. These data suggest that hypoactivity, PRL responses, and cardiodepressive effects of m-CPP are mediated by 5-HT1 receptors. It is likely that the hypoactivity and PRL responses of m-CPP are mediated by 5-HT1B receptors, and the cardiodepressive effects by 5-HT1A receptors. Increases in BP appear to be primarily mediated by stimulation of 5-HT2 receptors. Both adrenergic and serotonergic mechanisms are involved in HR responses. The catecholamine responses to m-CPP appear to be partially mediated by 5-HT1C receptors and also by nonserotonergic mechanisms.

Animals↗

Differential effects of long-term antidepressant treatments on 8-OHDPAT-induced increases in plasma prolactin and corticosterone in rats.

Intravenous administration of 8-hydroxy-2(di-n-propylamino) tetralin (8-OHDPAT) to rats produced increases in plasma prolactin and corticosterone concentrations. Long-term or short-term treatment with the MAO type A inhibiting antidepressant, clorgyline, or tricyclic antidepressants (imipramine and clomipramine), did not change baseline levels of either prolactin or corticosterone. Long-term but not short-term clorgyline treatment attenuated 8-OHDPAT's effect on plasma prolactin but not on corticosterone. On the other hand, long-term but not short-term treatment with clomipramine and to some extent imipramine also, accentuated 8-OHDPAT's effect on plasma prolactin but not on corticosterone. These findings demonstrate that long-term antidepressant treatment in rats produces a differential effect on 8-OHDPAT-induced increases in plasma prolactin and corticosterone, which is consistent with other clinical and animal studies demonstrating a differential effect of long-term antidepressant treatment on two different 5-HT-mediated neuroendocrine functions.

8-Hydroxy-2-(di-n-propylamino)tetralin↗

Role of serotonergic input in the down-regulation of beta-adrenoceptors following long-term clorgyline treatment.

Administration of the selective monoamine oxidase (MAO) type A-inhibiting antidepressant clorgyline (1 mg/kg per day) to rats for 21 days caused a significant decrease in cortical [3H]dihydroalprenolol binding. Selective lesioning of central serotonergic axons by 5,7-dihydroxytryptamine (5,7-DHT; confirmed by the presence of the serotonin syndrome in response to a 40 mg/kg dose of 5-hydroxytryptophan (5-HTP) or inhibition of 5-HT synthesis by parachlorophenylalanine (PCPA) caused significant 5-HT and 5-HIAA depletions in the cortex without much effect on NE and DA concentrations, but did not have any significant effect on beta-adrenoceptor density, and furthermore failed to attenuate clorgyline-induced decreases in beta-adrenoceptor density. Clorgyline treatment partially antagonized 5-HT depletion by the 5,7-DHT lesion or PCPA treatment. These findings suggest that due to their ability to raise 5-HT concentrations, MAO-inhibiting antidepressants may be a better alternative than the tricyclics in treating depressed patients with reduced 5-HT if down-regulation of beta-adrenoceptors is critical for antidepressant efficacy.

5,7-Dihydroxytryptamine↗

Clorgyline treatment differentially affects m-chlorophenylpiperazine-induced neuroendocrine changes.

Intravenous administration of the 5-HT1B agonist, m-chlorophenylpiperazine (m-CPP) to rats produced increases in plasma prolactin (peak effect at 15 min), corticosterone (peak effect at 30 min) and a decrease in plasma growth hormone (peak effect at 15 min) concentrations. Short-term or long-term clorgyline treatment did not affect baseline levels of prolactin, corticosterone or growth hormone. Short-term clorgyline treatment attenuated m-CPP's effect on corticosterone but not on prolactin or growth hormone. On the other hand, long-term clorgyline treatment attenuated m-CPP's effect on prolactin but not on corticosterone or growth hormone. These findings are compatible with development of functional subsensitivity of 5-HT1B receptors mediating prolactin release following long-term clorgyline treatment. Attenuation of m-CPP's effect on corticosterone following short-term clorgyline treatment suggests either early adaptational changes in a 5-HT receptor subtype mediating corticosterone release, or clorgyline-induced increases in other neurotransmitters such as norepinephrine which may be responsible for attenuating m-CPP's effect on corticosterone.

Adrenal Cortex↗

Food intake, neuroendocrine and temperature effects of 8-OHDPAT in the rat.

Administration of 8-hydroxy-2(di-n-propylamino)tetralin (8-OHDPAT) to rats produced dose-dependent decreases in food intake and hypothermia, increases in plasma prolactin and corticosterone, and a decrease in plasma growth hormone. 8-OHDPAT administration also induced the serotonin behavioral syndrome at all doses. Pretreatment with metergoline did not affect the 8-OHDPAT-induced behavioral syndrome or decrease in food intake but attenuated the prolactin increase and, furthermore, potentiated 8-OHDPAT-induced hypothermia. Pretreatment with ritanserin or naloxone did not modify 8-OHDPAT-induced changes in food intake, temperature or prolactin. Similarly, pretreatment with phenoxybenzamine, propranolol, clonidine, haloperidol and methiothepin also did not attenuate 8-OHDPAT-induced decreases in food intake. Administration of pindolol alone produced hyperthermia, decreased food intake and enhanced prolactin secretion. Pindolol thus appears to act as a partial 5-HT agonist in addition to being an antagonist at central 5-HT receptors.

8-Hydroxy-2-(di-n-propylamino)tetralin↗

Serotonergic responsivity in obsessive-compulsive disorder. Effects of chronic clomipramine treatment.

Clomipramine is a potent serotonin reuptake blocker that decreases the symptoms of obsessive-compulsive disorder (OCD). To investigate whether clomipramine treatment in OCD affects brain serotonergic responsiveness, metachlorophenylpiperazine (mCPP), a selective serotonin agonist, and placebo were given under double-blind conditions to nine patients with OCD before and after treatment with clomipramine. Unlike our previous observations of a marked transient increase in obsessional symptoms and anxiety following 0.5 mg/kg of mCPP, readministration of mCPP after four months of treatment with clomipramine did not significantly increase obsessional symptoms and anxiety. Similarly, the hyperthermic effect of mCPP observed before treatment was eliminated after treatment with clomipramine. These findings are consistent with the development of adaptive subsensitivity to the serotonergic agonist mCPP during clomipramine treatment. A similar alteration in the response to endogenous serotonin may mediate clomipramine's antiobsessional effects.

Adult↗

Multiple-dose arecoline infusions in Alzheimer's disease.

Twelve patients with dementia of the Alzheimer type received two-hour infusions of placebo and the muscarinic cholinergic agonist arecoline hydrobromide at rates of 1, 2, and 4 mg/h in a double-blind, randomized fashion. These infusions resulted in dose-dependent physiologic and neuroendocrine effects consistent with central cholinergic stimulation. Infusions were generally well tolerated. No statistically significant improvement in performance on most cognitive tasks assessing knowledge memory and episodic learning and memory was observed at any dose, although marginal improvement in picture recognition ability and in ratings of word-finding were observed at the lower doses. Psychomotor activation and slightly improved affect were reliably observed at the lower doses, whereas increasing psychomotor retardation was observed at the highest dose. The data support a role for central cholinergic modulation of some aspects of cognition, behavior, and affect in this population. The apparent greater behavioral sensitivity of patients with Alzheimer's disease in comparison with subject populations previously studied, as well as the altered dose responsiveness, merit further study in relationship to normal aging.

Aged↗

The effects of acute scopolamine in geriatric depression.

In an intensive multidrug, multidose study, nine elderly depressed patients were administered 0.1, 0.25, and 0.5 mg of scopolamine hydrobromide, 1 mg of oral lorazepam, and placebo in a double-blind investigation aimed at assessing the status of the central cholinergic nervous system in geriatric depression. Significant cognitive and behavioral effects of scopolamine were observed only at the high dose (0.5 mg), while lower doses and lorazepam showed no significant differences from placebo. Cognitive deficits caused by scopolamine were in the areas of new learning, access to semantic memory, vigilance, and continuous performance. Behavioral effects consisted of activation, restlessness, and anxiety, but there was no significant effect on depressed mood. These results suggest that elderly depressed patients with mild to moderate cognitive impairment seem to be more similar to previously studied elderly controls rather than to patients with Alzheimer's disease in their reaction to short-term cholinergic blockade, and suggest that the cognitive and mood changes often seen in geriatric depression may involve factors other than disturbed muscarinic cholinergic mechanisms.

Aged↗

Antisomatostatin IgG in major depressive disorder. A preliminary study with implications for an autoimmune mechanism of depression.

IgG reactive with somatostatin 1-14 was identified in human plasma by enzyme linked immunosorbent assay. From a sample of 25 subjects, six (60%) of ten individuals with major depressive disorder demonstrated antibody reactive with somatostatin 1-14, in contrast to one (7%) of 15 controls. Overall, antisomatostatin reactivity was significantly higher in patients with major depressive disorder (0.233 +/- 0.177) than in the normal volunteers (0.084 +/- 0.039; t = 3.18, P less than .01). Antisomatostatin IgG was isolated by affinity chromatography. The recognition site for somatostatin was retained by F(ab)'2 fragments. Although there has been little previous exploration of the existence of antibodies to endogenous neuropeptides, such antibodies could prove of relevance to neuropsychiatric and other human disorders.

Adult↗

Human antiidiotypic antibody against opiate receptors.

Sera containing antibodies to beta-endorphin from 2 patients with major depressive disorder were shown to have antidiotypic antibodies that specifically inhibited reactivity between anti-beta-endorphin IgG and beta-endorphin. Autologous and homologous antiidiotypic anti-anti-beta-endorphin IgG antibodies were isolated by affinity chromatography. The purified antiidiotypic antibody did not bind beta-endorphin but competed with [125I]beta-endorphin for rat brain opiate receptors. Normal IgG that was similarly treated had negligible competitive effects. The antibody bound to the membrane preparation; such binding was inhibited by opiate receptor ligands. Binding of the antiidiotype to a 60,000-dalton protein from rat brain was detected by Western immunoblot analysis. This protein corresponds in molecular weight to proteins proposed to be components of opiate receptors. These findings imply that immune reactivity to neuropeptides could contribute to psychiatric impairment.

Animals↗

Interactions of tricyclic antidepressant drugs with human and rat monoamine oxidase type B.

The effect of tricyclic antidepressant drugs on the deamination of phenylethylamine and benzylamine by monoamine oxidase (MAO) type B was investigated in vitro in human brain cortex, human platelet, and rat brain preparations. These drugs inhibited MAO activity as expected; however, an atypical biphasic response was observed with the tertiary amine tricyclic, clomipramine, and, to a somewhat lesser extent, with two other tertiary amine tricyclics, imipramine and amitriptyline, when benzylamine was used as the substrate in human tissue preparations. This atypical biphasic pattern was not found when we used the secondary amine antidepressant drugs, desipramine, desmethylclomipramine, or fluoxetine, or used phenylethylamine as the substrate, or used rat rather than human brain tissue. For the tricyclics exhibiting normal inhibition patterns, the same rank order of inhibition was observed with benzylamine as a substrate in all three types of tissue; however with phenylethylamine, differences in inhibition were found between rat and human tissues. These tricyclic-MAO interactional data suggest that secondary and tertiary amine tricyclics interact differently with human MAO type B, that rat and human MAO type B are not functionally identical, and also support other data that phenylethylamine and benzylamine are deaminated by different mechanisms.

Animals↗