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At least 19 recordsLinked to original sources

Fluorinated and iodinated dopamine agents: D2 imaging agents for PET and SPECT.

A novel series of dual-labeling D2 dopamine agents (labeled with either 18F or 123I for PET or SPECT imaging, respectively) was investigated. Two desired fluorinated and iodinated dopamine agents, FIDA1, (S)-(-)-2-(2-fluoroethoxy)-5-iodo-3-methoxy-N-[(1-ethyl-2- pyrrolidinyl)methyl]-benzamide, and FIDA2, (R)-(+)-2,3-dimethoxy-5-iodo-N-[(1-(4'-fluorobenzyl)-2- pyrrolidinyl)-methyl]benzamide, were synthesized. Both compounds displayed high affinity to the D2 receptor of rat striatal membrane preparations (Kd = 0.13 and 0.02 nM for FIDA1 and FIDA2, respectively). The biodistribution study in rats exhibited high localization in the striata of the brain with the striatum/cerebellum ratio reaching 29.3 and 13.1 at 1 h post iv injection for FIDA1 and FIDA2, respectively. Imaging studies with [18F]- and [123I]FIDA2 in monkeys, with PET and SPECT, respectively, showed comparable high selective striatal uptake. These results suggest that they are potentially useful D2 dopamine receptor imaging agents for PET and SPECT.

Animals↗

IV inotropic agents: dopamine, dobutamine, and amrinone.

Three commonly used IV inotropic agents--dopamine, dobutamine, and amrinone--have been discussed in this article. Knowledge of their common mechanisms of action, individual actions, dosages, methods of preparation, precautions, and side effects can only help critical care nurses maintain or improve the quality of care given to patients receiving these medications.

Amrinone↗

Gastric mucosal lesions induced by complete dopamine system failure in rats. The effects of dopamine agents, ranitidine, atropine, omeprazole and pentadecapeptide BPC 157.

Up to now, for gastric lesions potentiation or induction, as well as determination of endogenous dopamine significance, dopamine antagonist or dopamine vesicle depletor were given separately. Therefore, without combination studies, the evidence for dopamine significance remains split on either blockade of dopamine post-synaptic receptor or inhibition of dopamine storage, essentially contrasting with endogenous circumstances, where both functions could be simultaneously disturbed. For this purpose, a co-administration of reserpine and haloperidol, a dopamine granule depletor combined with a dopamine antagonist with pronounced ulcerogenic effect, was tested, and the rats were sacrificed 24 h after injurious agent(s) administration. Haloperidol (5 mg x kg(-1) b.w. i.p.), given alone, produced the lesions in all rats. Reserpine (5 mg x kg(-1) b.w. i.p.), given separately, also produced lesions. When these agents were given together, the lesions were apparently larger than in the groups injured with separate administration of either haloperidol or reserpine alone. Along with our previous results, when beneficial agents were co-administered, all dopaminomimetics (bromocriptine 10 mg, apomophine 1 mg, amphetamine 20 mg x kg(-1) i.p.) apparently attenuated the otherwise consistent haloperidol-gastric lesions. Likewise, an apparent inhibition of the reserpine-lesions was noted as well. However, if they were given in rats injured with combination of haloperidol and reserpine, their otherwise prominent beneficial effects were absent. Ranitidine (10 mg), omeprazole (10 mg), atropine (10 mg), pentadecapeptide BPC 157 (Gly-Glu-Pro-Pro-Pro-Gly-Lys-Pro-Ala-Asp-Asp-Ala-Gly-Leu-Val) (10 microg or 10 ng x kg(-1) i.p.) evidently prevented both haloperidol-gastric lesions and reserpine-gastric lesions. Confronted with potentiated lesions following a combination of haloperidol and reserpine, these agents maintained their beneficial effects, noted in the rats treated with either haloperidol or reserpine alone. The failure of dopaminomimetics could be most likely due to more extensive inhibition of endogenous dopamine system activity, and need for remained endogenous dopamine for their salutary effect, whereas the beneficial activities of ranitidine, omeprazole, atropine, pentadecapeptide BPC 157 following dopamine system inhibition by haloperidol+reserpine suggest their corresponding systems parallel those of dopamine system, and they may function despite extensive inhibition of endogenous dopamine system activity.

Animals↗

A comparison of benzodiazepine, serotonin, and dopamine agents in the taste-reactivity paradigm.

Previous studies have shown that rats' positive, palatability-dependent consummatory reactions to infused tastes are selectively facilitated by a benzodiazepine agonist (chlordiazepoxide), and that this effect can be blocked by the coadministration of benzodiazepine antagonists (e.g., Ro 15-1788). The purpose of the present study was to determine whether agents acting at other receptor sites (dopaminergic, serotonergic), which have been shown to modulate food consumption, might also modify rats' palatability-dependent reactivity to infused tastes. In this experiment, the benzodiazepine agonist, diazepam, facilitated positive palatability reactions, while dopaminergic agents (haloperidol, apomorphine, amphetamine) had no significant effects on either positive or aversive reactions. The putative 5-HT1A agonists, buspirone and gepirone, had a general inhibitory action on both positive and aversive palatability reactions. These results are surprising in view of the effects of serotonergic and dopaminergic agents on food and fluid intake. Our results suggest that the benzodiazepine receptor system may play a special role in the neural control of appetite through its enhancement of the positive palatability of tastes. Dopamine systems, by contrast, appear to control food intake by modulating processes that are independent of food affect evaluation.

Amphetamine↗

Aripiprazole, a novel antipsychotic agent: dopamine D2 receptor partial agonist.

It is obvious that DA is an important neurotransmitter in vivo. It is involved in a variety of physiological processes such as mental processes, motor function and hormone regulation. In this context, it is quite understandable that a DA D2 receptor antagonist that inhibits the DA D2 receptor regardless of the state of activity of dopaminergic neurotransmission and inhibit the physiological function of DA can have a variety of adverse effects. In contrast to DA D2 antagonists, aripiprazole acts as an antagonist at the DA D2 receptor in the state of excessive dopaminergic neurotransmission, while it acts as an agonist at the DA D2 receptor in the state of low dopaminergic neurotransmission, and thus attempts to bring the state of dopaminergic neurotransmission to normal. This activity of aripiprazole to regulate dopaminergic neurotransmission is physiologically reasonable, and can be regarded as a stabilizing effect, for which aripiprazole is called a dopamine system stabilizer.

Animals↗

Effect of dopamine agents on schedule- and deprivation-induced drinking in rats.

The dopamine agonist, apomorphine, or its antagonist, haloperidol, was administered to rats whose drinking was induced by fixed-interval schedules of pellet delivery or by water deprivation. The first study revealed that both drugs produced dose-dependent decreases in bar-pressing and schedule-induced polydipsia (SIP). At higher doses, haloperidol also depressed the rate of pellet delivery. The second study demonstrated that the suppression in SIP obtained in the first study was primarily due to the direct effect of the drugs and not to changes they produced on the underlying food reinforcement schedule. The third study showed that both drugs suppressed water deprivation-induced drinking during a ten-minute session. Apomorphine delayed the onset of drinking, while haloperidol accelerated the cessation of drinking. The results indicated that apomorphine produced motor deficits that interfered with consummatory behavior, and that haloperidol interfered with the sensory feedback necessary to sustain consummatory behavior.

Animals↗

Suppression of prolactin release and mRNA accumulation by two novel dopamine agonist agents.

Two novel dopamine agonist drugs, CV 205-502 and CQP 201-403, have been investigated to compare their effects on prolactin secretion and prolactin mRNA accumulation in cultured rat pituitary cells. Both drugs gave dose-dependent suppression of prolactin release over a 24 h incubation period: when each drug was used at 100 nmol/l CV 205-502 and CQP 201-403 induced suppression to 8.9 +/- 1.7 and 10.2 +/- 1.8% of control release, respectively, compared to 26.7 +/- 4.8% of control with 100 nmol/l bromocriptine. There was no consistent effect on growth hormone release. Cytoplasmic accumulation of prolactin mRNA was also inhibited by both drugs at this concentration, to 50.2 +/- 5.5% of control values by CV 205-502 and to 67.4 +/- 8% of control by CQP 201-403, and to a similar extent by 100 nmol/l bromocriptine (50.6 +/- 9.1% of control). None of the drugs had any significant effect on GH mRNA levels. These data suggest that the agents exert their effect at a pretranslational stage of prolactin synthesis, as well as at the level of hormone release.

Aminoquinolines↗

Dopaminergic pharmacology and antioxidant properties of pukateine, a natural product lead for the design of agents increasing dopamine neurotransmission.

The dopaminergic and antioxidant properties of pukateine [(R)-11-hydroxy-1,2-methylenedioxyaporphine, PUK], a natural aporphine derivative, were analyzed in the rat central nervous system. At dopamine (DA) D1 ([3H]-SCH 23390) and D2 ([3H]-raclopride) binding sites, PUK showed IC50 values in the submicromolar range (0.4 and 0.6 microM, respectively). When the uptake of tritiated dopamine was assayed by using a synaptosomal preparation, PUK showed an IC50 = 46 microM. In 6-hydroxydopamine unilaterally denervated rats, PUK (8 mg/kg but not 4 mg/kg) elicited a significant contralateral circling, a behavior classically associated with a dopaminergic agonist action. When perfused through a microdialysis probe inserted into the striatum, PUK (340 microM) induced a significant increase in dopamine levels. In vitro experiments with a crude rat brain mitochondrial suspension showed that PUK did not affect monoamine oxidase activities, at concentrations as high as 100 microM. PUK potently (IC50 = 15 microM) and dose-dependently inhibited the basal lipid peroxidation of a rat brain membrane preparation. As a whole, PUK showed a unique profile of action, comprising an increase in extracellular DA, an agonist-like interaction with DA receptors, and antioxidant activity. Thus, PUK may be taken as a lead compound for the development of novel therapeutic strategies for Parkinson disease.

Animals↗

Potentiation of apomorphine-induced stereotyped behaviour by acute treatment with dopamine depleting agents: a potential role for an increased stimulation of D1 dopamine receptors.

Treatment of mice with reserpine (10 mg/kg, s.c.) and alpha-methylparatyrosine (400 mg/kg) led to the potentiation of stereotyped behaviour, induced by apomorphine (0.37-1.5 mg/kg, s.c.), i.e. to the appearance of licking and gnawing in addition to climbing and sniffing occurring in control mice. Similar results were obtained by combined treatment with SK&F 38393 (30 mg/kg, s.c.) and RU 24926 (15 mg/kg, i.p.). In mice treated with dopamine depleting agents, SCH 23390 (1.25-20 micrograms/kg, s.c.) and metoclopramide (0.62-20 mg/kg, i.p.) antagonized gnawing induced by 0.75 mg/kg (s.c.) apomorphine, at doses significantly larger than those required for the antagonism of climbing and sniffing. The same treatment with reserpine and alpha-methylparatyrosine produced an increased formation of cyclic AMP, induced by SK&F 38393 (10(-8)-10(-4) M), from homogenates of the striatum of the rat. Potentiation of apomorphine-induced stereotyped behaviour and increased SK&F 38393-induced formation of cyclic AMP had similar time-courses with a maximum 18 hr after treatment. These data suggest that the potentiation of apomorphine-induced stereotyped behaviour produced by acute treatment with dopamine depleting agents is at least partly due to an increased activity of the adenylate cyclase linked to D1 dopamine receptors. Finally, a small dose of amisulpride (a discriminant benzamide derivative) potentiated the stereotyped behaviour induced by the combined treatment with SK&F 38393 and RU 24926 in naive mice and, in a more marked manner, in mice treated with dopamine depleting agents; amisulpride did not produce stereotyped behaviour when combined with SK&F 38393 or RU 24926 administered alone.(ABSTRACT TRUNCATED AT 250 WORDS)

2,3,4,5-Tetrahydro-7,8-dihydroxy-1-phenyl-1H-3-ben↗

Movement disorders induced by dopamine blocking agents.

Movement disorders are frequently due to dopamine blocking agents (DBAs) prescribed for psychiatric illnesses. DBAs are sometimes also prescribed inappropriately for other maladies. These drugs can cause a wide variety of involuntary movements, sometimes in combination. When these appear in the setting of psychiatric illnesses, the association is easy to recognize but the treatment remains a difficult problem. However, in other situations the diagnosis may be missed for extended periods of time, resulting in unnecessary diagnostic work-up and inappropriate therapy. The diagnosis depends on a compulsive drug history not only from the patient but also from patient's family, primary physician, and the pharmacist. The treatment options include removal of the offending agent or substitution with an atypical neuroleptic. Symptomatic treatments are varied and have an inconsistent effect on the movement disorders. Prevention remains the most important strategy.

Acute Disease↗

Dopamine D2 receptor agents, but not dopamine D1, modify brain glucose metabolism.

The effects of recently described selective dopamine D1 and D2 agonists and antagonists on brain glucose metabolism were studied using the 2-[14C]deoxyglucose autoradiographic technique. The administration of LY-141865 or YM-09151-2, which behave as a specific D2 agonist and antagonist respectively, modified brain glucose metabolism in a manner similar to that previously described for more classical dopaminergic agents, such as apomorphine and haloperidol. In contrast, the administration of SKF 38393 or SCH 23390, a specific D1 agonist and antagonist respectively, was not followed by significant modifications of brain glucose metabolism in any of the brain regions studied. These results indicate that D2 but not D1 dopamine receptors are involved in the regulation of local brain glucose metabolism.

2,3,4,5-Tetrahydro-7,8-dihydroxy-1-phenyl-1H-3-ben↗

The effects of dopaminergic agonists and antagonists on the frequency-response function for hypothalamic self-stimulation in the rat.

The function of dopaminergic synapses in generating the reinforcing effect of brain stimulation was examined in 8 rats. The animals were implanted with bipolar electrodes and trained to press a bar for lateral hypothalamic stimulation. The frequency of stimulation pulses was systematically changed, and a frequency-response curve was plotted for each rat after intraperitoneal injection of a test agent. Dopamine agonists and antagonists selective to either D1 or D2 subtypes of receptors were used. The curve was shifted to a high-frequency range by either SCH 23390 (D1 antagonist) or raclopride (D2 antagonist). SKF 38393 (D1 agonist) failed to shift the curve, and quinpirole and CV 205-502 (D2 agonists) shifted the lower part of the curve to a low-frequency range. The results suggest that an activation of D2 receptors generates a reinforcing effect, and that the effect is expressed only if D1 receptors are activated to an optimal level.

2,3,4,5-Tetrahydro-7,8-dihydroxy-1-phenyl-1H-3-ben↗

Endocrine effects of domperidone: a peripheral dopamine blocking agent.

In the present study, effects of domperidone, a peripheral dopamine blocking agent, on prolactin and growth hormone were examined to determine whether dopamine regulation of these hormones involved structures external to the blood-brain barrier. A clearcut elevation in prolactin was produced by domperidone. GH response to apomorphine was partially blocked by domperidone.

Adult↗

Vestibular compensation is affected by treatment with dopamine active agents.

The aim of the present work was to examine the effects of postoperative treatments with agents active on dopaminergic system on vestibular recovery from the postural and ocular symptoms which follow a unilateral labyrinthectomy. Hemilabyrinthectomized guinea pigs were given a daily i.p. injection of bromocriptine (1 mg/kg) or sulpiride (10 mg/kg) or lisuride (0.1 mg/kg) or saline from post-operative days 1 to 21. Treatment with bromocriptine, a D2 agonist, accelerates compensation of postural and ocular symptoms. Conversely, treatment with sulpiride, a D2 antagonist, slows down the reachievement of symmetrical posture and stable ocular motility. Finally, the lisuride treatment, a drug active on D2 but also on other monoaminergic receptors, delays vestibular recovery so markedly to reach a "freezing" of vestibular deficits during drug treatment. These findings indicate that the already demonstrated role of dopamine in motor activity and learning can be extended to the learning processes required to recover from vestibular asymmetries.

Animals↗

Selective antidopaminergic effects of S(+)N-n-propylnoraporphines in limbic versus extrapyramidal sites in rat brain: comparisons with typical and atypical antipsychotic agents.

Dopamine (DA), injected unilaterally into rat forebrain after pretreatment with a monoamine oxidase inhibitor, equipotently induced locomotor arousal when placed in the nucleus accumbens septi (a limbic site) and contralateral deviation of the head when placed in the corpus striatum (an extrapyramidal target); testing was done with an ED50 dose of DA (16 micrograms). Systemic injections (IP) of the representative typical neuroleptic haloperidol showed high potency and minor striatal selectivity against the behavioral effects of intracerebral DA [accumbens ID50 = 0.090, striatum = 0.027 mg/kg (0.24 and 0.072 mumol/kg); ID50 ratio = 3.3, favoring striatum]. The atypical antipsychotic agent clozapine was less potent against DA in both brain regions but, paradoxically, showed ever greater striatal selectivity [ID50 = 12 and 1.4 mg/kg (37 and 4.2 mumol/kg); ratio = 8.8, favoring striatum], while its analog, the piperazinyl-dibenzothiazepine ICI-204,636 showed intermediate potency and the lowest striatal selectivity of these three neuroleptic agents [ID50 = 1.8 and 0.88 mg/kg (4.1 and 2.0 mumol/kg); ratio = 2.1]. In striking contrast, the S(+) isomers of N-n-propylnorapomorphine, its orally active 10,11-methylenedioxy prodrug derivative, and its 11-monohydroxy analog all induced potent antagonism of limbic DA but had little effect on extrapyramidal injections of DA except at high systemic doses [ID50, accumbens = 0.18-0.52, striatal = 10-15 mg/kg (0.50-1.6 and 29-42 mumol/kg); regional ID50 ratios = 18-69, favoring accumbens]. The S(+)aporphines showed limbic potency similar to that of haloperidol and 25-73 times greater than that of clozapine.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Diuresis in rats: effects of sympathomimetic and sympathetic blocking agents.

Dopamine and tyramine possess diuretic properties resembling but weaker than those of noradrenaline in the rat. These three amines produce a relatively smaller loss of sodium than does adrenaline. Bretylium shows a diuretic action which is apparently associated with its sympathomimetic properties and which is antagonized by phenoxybenzamine. However, bretylium causes a relatively greater loss of potassium and chloride than do the sympathomimetic amines. A slight antidiuretic action is shown by bretylium after its diuretic effect has subsided and a similar effect is produced by BW 172C58, which has relatively weak sympathomimetic properties. In contrast to these adrenergic neurone blocking agents, phenoxybenzamine and a ganglion blocking agent (pentacynium) show powerful antidiuretic effects. These observations are consistent with the view that the adrenal medulla has an important role in facilitating water diuresis in rats.

Adrenergic Agents↗

Extrapyramidal symptoms due to dopamine-blocking agents in patients with AIDS encephalopathy.

OBJECTIVE: The authors attempted to determine whether patients with AIDS are more susceptible to neuroleptic side effects than other patients. METHOD: Retrospective chart review was used to assess the frequency and severity of extrapyramidal symptoms in patients with AIDS and psychotic patients without AIDS who had taken dopamine-blocking agents. The charts of 804 men younger than 50 years were reviewed, and patients were excluded if they had not taken dopamine blockers, had taken them for more than 1 month, had received concomitant antiparkinsonian agents, had focal brain lesions or histories of Parkinson's disease or meningitis, had used cocaine, amphetamines, or opiates within 1 month of admission, or, among the comparison group, had HIV risk factors. For the remaining 31 AIDS and 32 comparison patients, age, duration of dopamine blocker treatment, dose in chlorpromazine equivalents, and nature and severity of parkinsonian complications were recorded. RESULTS: The mean drug dose and body weight were significantly lower in the AIDS group. The likelihood of developing extrapyramidal symptoms was 2.4 times as high among the AIDS patients as among the comparison group. Such symptoms were developed by 50% of the AIDS patients who received less than 4 mg/kg of chlorpromazine equivalents per day and 78% of those who received more than 4 mg/kg per day. CONCLUSIONS: These preliminary results suggest that AIDS patients are more susceptible to extrapyramidal symptoms than psychotic patients without AIDS and that neuroleptics should be used cautiously and in lower doses for patients with AIDS.

AIDS Dementia Complex↗