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At least 19 recordsLinked to original sources

Benzo [b]-promazines, chlorpromazine free radical and analino-N, N-dimethylpropylamine analogs influence rat striatal DA-adenylate cyclase and calmodulin-phosphodiesterase.

A series of Benzo [b]-promazines and analino-N, N-dimethylpropylamine analogs and the free radical of chlorpromazine were compared to chlorpromazine and promazine in the rat striatum for their ability to inhibit either dopamine activated adenylate cyclase or calmodulin stimulation of a partially purified high Km cyclic AMP phosphodiesterase. Chlorpromazine and the corresponding free radical were generally the most potent inhibitors of the two enzyme preparations, however, Piperazino-Benzo [b]-promazine, 1-Oxo-Benzo [b]-promazine, N-38-76-3A and Benzo [b]-promazine were relatively effective inhibitors. To a lesser extent, tyrosine, N-57-77, Piperidino-Benzo [b]-promazine, Diethyl-Benzo [b]-promazine, promazine and 1-Oxo-Diethyl-Benzo [b]-promazine exerted varying degrees of antagonism of the two enzymes. In all instances the compounds inhibited dopamine-sensitive adenylate cyclase to a greater extent than the calmodulin activated phosphodiesterase.

Adenylyl Cyclases

Stability, human blood distribution and rat tissue localization of promazine and desmonomethylpromazine.

The stability in human blood and urine, partitioning into red blood cells and plasma protein binding of promazine and desmonomethylpromazine were investigated. Tissue localization was investigated in rats. Promazine and desmonomethylpromazine were stable in human plasma and urine for at least 64 days at -20 degrees. The percentage of promazine not bound to protein in plasma was 10.4 +/- 2.43 as estimated by equilibrium dialysis with correction for volume shift, and 11.6 +/- 0.43 per cent as estimated by ultracentrifugation. Data for the mean plasma/red blood cell concentration ratio and the red blood cell/plasma distribution coefficient for promazine were 1.19 +/- 0.13 and 8.21 +/- 0.40, respectively. There was no evidence of time-dependence in plasma/red blood cell partitioning. Ten rat organs and tissues were examined. The concentrations of promazine and desmonemethylpromazine were highest in lung. For promazine, the rank order of tissue localization was lung greater than liver greater than kidney greater than intestine greater than brain greater than spleen greater than red blood cell greater than voluntary muscle greater than plasma greater than stomach greater than heart. For desmonomethylpromazine, the order was reversed in the cases of spleen and brain and interchanged in the cases of stomach and muscle. The brain/plasma concentration ratios for promazine and desmonomethylpromazine in rat were 4.69 and 3.87, respectively.

Animals

Pharmacokinetics of promazine: I. Disposition in patients with acute viral hepatitis B.

Concentrations of promazine in plasma, plasma water, red blood cells, and urine were measured after oral administration of the drug to six patients during and after apparent recovery from the acute phase of viral hepatitis B. None of the promazine pharmacokinetic parameters were significantly different during and after the acute phase; these parameters included clearance, free drug clearance, metabolic clearance, volume of distribution, distribution and elimination half-life values, plasma protein binding, and per cent excreted in the urine. During the acute period of the illness, SGOP, SGPT, alkaline phosphatase, and total bilirubin were increased in all patients; they returned to within or near the upper limits or normal after recovery. Despite the unchanged promazine disposition, four out of six patients had more severe promazine side-effects, such as sedation, postural hypotension, and dizziness during the acute phase of the illness. This study suggests that promazine disposition was not significantly altered as a consequence of viral hepatitis. However, the pharmacodynamic effects of promazine were changed significantly. Care must be taken with patients who are taking promazine during the acute phase of viral hepatitis B.

Acute Disease

In vivo toxicity and pulmonary effects of promazine and chlorpromazine in rats.

Cationic amphiphilic drugs induce a phospholipid storage disorder known as phospholipidosis. Halogenated analogs of the drugs are more potent inducers of phospholipidosis when compared to nonhalogenated analogs. Two such antipsychotic drugs, promazine and chlorpromazine, are effectively taken up by the lungs and induce lamellar inclusions in vitro. We compared the in vivo toxicity and efficacy of promazine and chlorpromazine to induce phospholipidosis in the lung and in pulmonary alveolar macrophages. Male Sprague-Dawley rats were given promazine or chlorpromazine (25 mg/kg/day, P.O., in water) for 5 weeks. Food intake was decreased in promazine- and chlorpromazine-treated rats, chlorpromazine rats being affected more than promazine rats. To minimize experimental error due to starvation, control rats were pair-fed. The body weight gain was decreased in chlorpromazine rats in comparison to pair-fed controls. Chlorpromazine-treated rats, but not promazine-treated rats, showed increased mortality over the 5-week treatment period. Histopathologic examination of lung revealed loss of alveolar macrophages with no other gross abnormalities in chlorpromazine-treated rats. Quantitative analysis of lung lavage also showed significant reduction in the number of macrophages. This finding is in contrast to other cationic amphiphilic drugs, which induce phospholipidosis as well as accumulation of alveolar macrophages. Phospholipid level increased in alveolar macrophages but not in lavaged lung following chlorpromazine treatment. Acid phosphatase activity in lavaged lung homogenate and macrophages of promazine- and chlorpromazine-treated rats, taken as an index of toxicity to cells, did not differ significantly from control rats.(ABSTRACT TRUNCATED AT 250 WORDS)

Acid Phosphatase

Induction of breaks in deoxyribonucleic acid by photoexcited promazine derivatives.

Near-u.v. photoexcited promazine and three of its derivatives are shown to induce single-strand breaks in phi X174-DNA replicative form. The mechanisms of this DNA breakage depend upon the various photochemical properties of the promazine derivatives. Chlorpromazine is shown to act predominantly via the photodechlorination reaction both in aerobic and anaerobic conditions. The three other promazine derivatives (promazine, trifluopromazine and methoxypromazine) display two mechanisms for DNA breakage. One of them occurs through the cation radical, which is formed during near-u.v. irradiation of promazine derivatives. The second mechanism is demonstrated to act via an hydroxyl radical-dependent pathway. Acepromazine is without photoactivated action. EPR-spin-trapping studies of irradiated mixtures, containing the drugs and 5,5-dimethyl-1-pyrroline-N-oxide (as spin trap), suggest the production of superoxide radical by photoexcited promazines. When DNA is present in the irradiation mixture, this superoxide radical is converted into hydroxyl radical probably via a Haber Weiss-type reaction, catalysed by DNA-iron complexes.

DNA

The metabolism of promazine and acetylpromazine in the horse.

Promazine hydrochloride and acetylpromazine maleate were administered intravenously at clinical dose levels to horses. In urine from horses given promazine hydrochloride, the parent drug and four metabolites were detected. The two major metabolites, present as conjugates were identified after hydrolysis by beta-glucuronidase/arylsulfatase as 3-hydroxypromazine and 3-hydroxydesmonomethyl-promazine. Conjugated 3-hydroxypromazine has been previously identified as a major metabolite in the horse. Two minor metabolites isolated in this study were primaizine N-oxide and promazine N-oxide sulfoxide. At the administered dosage, promazine sulfoxide was not found to be the major nonconjugated metabolite, as had been reported elsewhere. In urine from horses given acetylpromazine maleate, only three metabolites were found. Two were identified after hydrolysis by beta-glucuronidase/arylsulfatase as 7-hydroxyacetylpromazine and 2-(1-hydroxyethyl)-7-hydroxypromazine. The third, nonconjugated metabolite was 2-(1-hydroxyethyl)promazine sulfoxide.

Acepromazine

Effects of promazine, chlorpromazine, d-amphetamine, and pentobarbital on treadle pressing by pigeons under a signalled shock-postponement schedule.

The effects of promazine on treadle pressing to postpone the presentation of electric shock were studied in three pigeons. The effects of chlorpromazine, d-amphetamine, and pentobarbital were studied in two of these pigeons. Each treadle press postponed electric shock for 20 sec and presentation of a preshock stimulus for 14 sec. Selected doses of both promazine and chlorpromazine increased the rates of treadle pressing in all birds. The response-rate increases produced by promazine and chlorpromazine were due to increased conditional probabilities of treadle pressing both before and during the preshock stimulus. d-Amphetamine (1 and 3 mg/kg) slightly increased responding in one of the birds, but not to the extent that promazine or chlorpromazine did. In the other bird, the 10 mg/kg dose of d-amphetamine increased shock rate but did not change response rate. Some doses of d-amphetamine increased the conditional probabilities of responding both in the absence of the preshock signal and during the preshock signal in both birds. Pentobarbital only decreased response rates and increased shock rates.

Animals

A comparative study of transcutaneous electrical nerve stimulation (TENS), entonox, pethidine + promazine and lumbar epidural for pain relief in labor.

Analgesic effect, labor outcome, safety and consumer satisfaction were compared in 170 primigravid women; 50 using TENS initially for pain relief, 20 using entonox, 50 pethidine + promazine and 50 lumbar epidural. 88% choosing epidural related it fully effective. 90% using entonox, 96% using TENS and 54% given pethidine + promazine found partial relief. 82% of patients given TENS and 80% given pethidine + promazine required additional analgesia. This was also needed by one of the 20 patients choosing entonox. Women using entonox alone had the shortest labors and women using lumbar epidural, the longest. Operative delivery was significantly more common in women receiving lumbar epidural. No significant inter-group differences were noted in cord pH or Apgar scores. Parturients and midwives both gave high consumer satisfaction ratings to all methods--except for pethidine + promazine, whose use must therefore be questioned. The analgesic efficacy of lumbar epidural outweighs any possible side effects. Entonox appears suited to those able to cope with the earlier part of labor, drug-free. Realization of the potential of TENS requires the design of machines specifically to cope with the quality of the pain of labor.

Anesthesia, Epidural

Effect of phenobarbitone and propionyl-promazine on serum enzymes in carbon-tetrachloride hepatotoxicity.

The influence of phenobarbitone givenin ten repeated doses simultaneously with small doses of CCl4 on serum enzymes was investigated in albino rats. The same experiment was repeated to investigate the influence of propionyl-promazine (phenothiazine derivative). The results proved that SGPT is a more specific and sensitive index than SGOT of hepato-cellular injury. The activity ratio between serum GOT and GPT in the normal control group was 2.44. The activity of SGPT increased nearly 6.1 fold after CCl4 administration and thus the activity ratio between GOT and GPT is sharply reduced to 0.56. The activity of serum GPT when CCl4 and phenobarbitone were administered together showed value of about 1/2 of the value when CCl4 was administered alone, while it remained high when CCl4 administration was combined with propionyl-promazine. Serum GOT and alkaline phosphatase increased significantly in all the groups. Regarding the pathological examination of the liver it was found that marked fatty necrosis could be demonstrated when high values of SGPT was found, which is not the case with serum GOT. It is concluded that in the present experimental conditions phenobarbitone protected the liver from the hepatotoxic effect of CCl4, while propionyl-promazine did not.

Alanine Transaminase

Photosensitization of SV 40 DNA mediated by promazine derivatives and 4'-hydroxymethyl-4,5',8-trimethylpsoralen. Inhibition of the in vitro transcription.

In vitro transcription by E. coli RNA polymerase was carried out on SV40 DNA photoreacted with various promazine derivatives. Inhibition of the template activity was recorded with increasing irradiation times in the presence of promazine derivatives. Promazine covalent adducts on guanine did not terminate RNA synthesis and seemed to be bypassed by the enzyme. HMT (4'-hydroxymethyl-4,5',8-trimethylpsoralen) photoreaction with DNA was carried out under two conditions: irradiation with lambda greater than 395 nm favouring monoadduction on pyrimidine residues and irradiation at 360 nm inducing a maximum of interstrand diadducts. Both adducts were able to terminate RNA synthesis on the phototreated SV40 DNA and using the O-methyl-nucleotide sequencing procedure, the termination sites were precisely mapped. Monoadducts on the coding strand and cross-links induced termination two bases away from the covalent adduct, but monoadducts on the noncoding strand did not half RNA polymerase.

Base Sequence

Spectrophotometric determination of promazine with an oxidative column in FIA manifolds.

A simple flow-injection spectrophotometric method for the determination of promazine is described. The two proposed procedures are based on the oxidation of analyte with a manganese dioxide column. Concentrations of promazine in the ranges 2-20 and 1-6 are determined with a relative standard deviation of 1.0%. The injection rates are 62 and 80 samples h-1, respectively. The influence of foreign species and the determination of promazine in a pharmaceutical formulation are also reported.

Calibration

Influence of aprotinin and promazine on survival of isolated pancreatic acinar cells.

Aprotinin, a protease inhibitor, and promazine, an inhibitor of phospholipase A2, were tested for possible inhibition of pancreatic acinar cell (PAC) decline induced by uncoupling of oxidative phosphorylation with 2,4-dinitrophenol (DNP) or by temporary anoxia/reoxygenation. In incubates of acinar cells isolated from rat pancreas the presence of aprotinin did not influence the survival of cells treated with these noxae. This finding excludes that extracellulary acting trypsin, possibly released from damaged cells, contributes to further cell death. While promazine at concentrations of 15 to 20 nmol.(10(6) cells)-1 was well tolerated by untreated PAC, higher concentrations caused a clear reduction of cell viability. At optimum concentration promazine was without influence on DNP-treated cells, but it had a beneficial effect on survival and morphology of anoxia-treated PAC (p less than or equal to 0.05). Therefore, it can be assumed that after anoxia/reoxygenation the membrane phospholipase A2 becomes stimulated and causes phospholipid depletion with final death of the cells. It is suggested that such a mechanism may contribute to the initial cell damage in the pathogenesis of acute pancreatitis, too.

Acute Disease

Provocation of convulsive activity in the EEG by promazine-HCl-induced sleep in children.

The authors report on the convulsive activity provoking effect of Promazine as shown on EEG during sleep. It has successfully been used in infants and children who do not tolerate sleep deprivation. Promazine had smaller effect on the EEG-pattern than other related compounds or barbiturates. The greatest efficacy could be reached in generalised epilepsy, but the method was also helpful in other epilepsies. It is emphasized that in cases of acute neurological symptoms of not epileptical origin the compound is helpful to exclude epilepsy since Promazine induced sleep was never associated with convulsive activity on EEG in these cases.

Adolescent

Termination sites of the in vitro DNA synthesis on single-stranded DNA photosensitized by promazines.

Bacteriophage phi X174 and M13 mp9 single-stranded DNA molecules were primed either with restriction fragments or synthetic primers and irradiated with near UV light in the presence of promazine derivatives. These DNAs were used as template for in vitro complementary chain synthesis by Escherichia coli DNA polymerase I large fragment. Chain terminations were observed by denaturing polyacrylamide gel electrophoresis of the synthesis products and localized by comparison with a standard dideoxy sequencing pattern. More than 90% of the chain terminations were mapped exactly one nucleotide before a guanine residue. In addition, photoreaction was shown to occur more predominantly with guanine residues localized in single-stranded parts of the genome. The same guanine residues could also be damaged when the reaction was performed, in the dark, in the presence of the artificially generated promazine cation radicals. Using the BamHI-SmaI adaptor (5'GATCCCCGGG-3'), it was shown that the guanine alteration was a covalent addition of the promazine, or of a cation radical photodegradation product, on the guanine moiety. Kinetics of chlorpromazine photoaddition on single-stranded and double-stranded DNAs were determined.

Acepromazine

Effects of d-amphetamine, pentobarbital, chlorpromazine and promazine on electric shock postponement responding by the pigeon.

The effects of d-amphetamine, pentobarbital, chlorpromazine and promazine on responding under schedules of electric shock postponement were studied in pigeons. Responding was maintained by three different response-shock intervals (10, 20 and 60 seconds). Low doses (0.3-3 mg/kg) of d-amphetamine increased response rates without decreasing shock rates under all three response-shock intervals. The highest dose (10 mg/kg) of d-amphetamine increased the shock rates under all response-shock intervals and decreased the high response rate under the 10-second response-shock interval but did not decrease the lower rates of responding under the 20- and 60-second response-shock intervals. Pentobarbital decreased the high rate of responding maintained under the 10-second response-shock interval at lower dose (10 mg/kg) than the lower rates of under the 20- and 60-second response-shock intervals. The high dose (17.5 mg/kg) of pentobarbital decreased responding and the low doses (1-3 mg/kg) had no effect under all three response-shock intervals. Chlorpromazine (3-100 mg/kg) did not affect the average rate of responding under all response-shock intervals and only slightly increased shock rates under the 20- and 60-second response-shock intervals. Promazine (3-30 mg/kg) increased the rates of responding and decreased shock rates under all three response-shock intervals. Analysis of the temporal patterns of responding within the response-shock interval showed that d-amphetamine tended to induce the animals to respond earlier than they normally would in the response-shock interval while otherwise maintaining the temporal pattern of responding, pentobarbital decreased the probability of responses late in the response-shock interval, and chlorpromazine and promazine increased the probability of responses in the middle of the response-shock interval, producing a lessening of the temporal patterning of responding within the response-shock interval.

Animals

Pentobarbital, promazine, d-amphetamine, and scopolamine effects on behavior under multiple and primed schedules of reinforcement.

Pigeons responded under compound fixed-interval (FI) fixed-ratio (FR) schedules of food presentation. Distinctive discrimininative stimuli were either continuously present during each component schedule (multiple FI FR) or were present only for a brief period at the beginning of each component (primed FI FR). Similar rates and patterns of responding were maintained under the multiple and primed schedules. Pentobarbital, scopolamine, and d-amphetamine decreased FR responding, but promazine had little effect at the doses studied. d-Amphetamine and promazine increased FI responding at certain doses, pentobarbital had little effect, and scopolamine decreased responding. There were no systematic differences in the effects of drugs under the multiple and primed schedules, in spite of the differences in discriminative stimuli under the conditions.

Animals

Effects of chlorpromazine and promazine on the visual aftereffects of tilt and movement.

The effects of chlorpromazine (CPZ) and promazine on the visual aftereffects of tilt and motion were measured. CPZ markedly reduced the strength of both aftereffects, while promazine produced a smaller and not always significant reduction. Control experiments suggested that the effects were produced in the central visual system rather than by several possible peripheral artefacts or by drowsiness. The effects are discussed with reference to the pharmacological activity of the drugs and their influence on the strength of inhibition in the visual cortex, both in normal subjects and in schizophrenic illness.

Adaptation, Ocular