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Effect of parbendazole and piperazine adipate on the activity of some enzymes of Ascaridia galli and Heterakis gallinae.

Adult Ascaridia galli and Heterakis gallinae obtained from the fowl (Gallus gallus) were treated in vitro with 10(-2) to 10(-5) M parbendazole and piperazine adipate for 10-60 min at 38 degrees C. Both the compounds at 10(-2) M caused mortality of A. galli and H. gallinae after a maximum of 30 min exposure. The effect of the drugs on the homogenates of the treated worm was investigated. Parbendazole (10(-2) M) inhibited malate oxidation by 68% in A. galli and 62% in H. gallinae. Piperazine adipate (10(-2) M) inhibited malate oxidation by 78% in both parasites. In A. galli oxaloacetate reduction was inhibited by 41 and 26% by 10(-2) M parbendazole and piperazine adipate, respectively; with H. gallinae this inhibition was found to be 39 and 55%, respectively. Aldolase activity in both the parasites was also inhibited by 10(-2) M parbendazole and piperazine adipate. Both compounds caused an inhibition of acid phosphomonoesterase activity, but the activities of lactate dehydrogenase and alkaline phosphomonoesterase were not affected significantly. Parbendazole (10(-2) M) had no significant effect on the cholinesterase activity of these parasites, but piperazine adipate (10(-2) M) caused an inhibition of 96% in A. galli and 93% in H. gallinae. The possible mode of action of the drugs is discussed.

Acid Phosphatase↗

Rationally designed non-peptides: variously substituted piperazine libraries for the discovery of bradykinin antagonists and other G-protein-coupled receptor ligands.

Molecular modeling studies of potent decapeptide bradykinin antagonists suggested the de novo design of peptide mimetics based on a 1,2,3,4-tetrasubstituted 1,4-piperazin-6-one scaffold. These de novo-designed antagonists exhibited only modest potency (IC50 approximately 55 microM) on a cloned human B2 receptor and antagonist activity in an in vitro human-cell functional assay. The success of these structures led to the creation of prototype libraries based on variously substituted 1,4-piperazine scaffolds, which allowed a rapid and general search of pharmacophores attached to a piperazine scaffold. The parent piperazinedione structures and fully reduced piperazine libraries differ from recently reported diketopiperazine libraries in the use of diverse nonnatural amino acids, on-resin-submonomer synthesis to provide more diverse N-substituted structures, and the adaptation of simultaneous ring closure and resin cleavage to drive the formation of highly hindered amide bonds. Using this chemistry, a rationally directed non-peptide library of approximately 2500 N,N'-disubstituted piperazines and piperazinediones was synthesized and screened for ligand affinity on bradykinin, neurokinin, and opioid receptors. A number of lead structures were identified. Notably, a bradykinin antagonist lead, CP-2458, with good receptor selectivity and antagonist activity in human-cell assays was identified and is undergoing optimization by traditional and combinatorial methods.

Acetylation↗

Serotonin-antagonist effects of 1-(1-naphthyl)piperazine on operant behavior of squirrel monkeys.

1-(1-Naphthyl)piperazine (1-NP) has been reported to have serotonin antagonist properties at the 5-HT2 subtype of receptor, and it has been suggested that it may have agonist actions at the 5-HT1 site. In the present experiments, the effects of 1-NP alone and in combination with a variety of 5-HT agonists, were studied in squirrel monkeys performing under a number of reinforcement schedules. The phenalkylamine hallucinogen 4-bromo-2,5-dimethoxyamphetamine (DOB, 0.01-0.3 mg/kg), which is thought to have predominant actions at 5-HT2 sites, reduced responding under fixed-interval (FI) schedules of presentation of food, and these decreases were blocked by 1-NP (0.3-1.0 mg/kg) or by the selective 5-HT2 antagonist, ketanserin (0.3 mg/kg). 1-(1-Naphthyl)piperazine also antagonized the decreases in responding produced by quipazine (0.1-5.6 mg/kg), another agonist with predominant 5-HT2 actions. 1-(m-Chlorophenyl)piperazine (mCPP, 0.1-3.0 mg/kg) and 1-(m-trifluoromethylphenyl)piperazine (TFMPP, 0.1-3.0 mg/kg), both thought to act primarily at 5-HT1 sites, also decreased responding and this effect was blocked by methysergide and by 1-NP, but not by ketanserin. The effects of 1-NP (0.3-5.6 mg/kg) given alone were not like those of mCPP or TFMPP. 1-(1-Naphthyl)piperazine produced moderate increases in responding under shock-avoidance schedules, whereas only decreases in responding were seen after mCPP and TFMPP.(ABSTRACT TRUNCATED AT 250 WORDS)

DOM 2,5-Dimethoxy-4-Methylamphetamine↗

Interaction of 1,2,4-substituted piperazines, new serotonin receptor ligands, with 5-HT1A and 5-HT2A receptors.

In the present paper, we describe affinities to 5-HT1A and 5-HT2A receptors of several new 1,2,4-trisubstituted piperazine derivatives. The affinities were compared with those described earlier for 1,4-disubstituted piperazines and the influence of the third (methyl) substituent on the affinity to both receptors is discussed. The difference between two- and three-substituted derivatives was rationalised in terms of molecular modelling of the respective ligand-receptor complexes. Additionally, the functional activity of some 1,2,4-trisubstituted piperazines for 5-HT1A receptor was examined in behavioural and biochemical models. The obtained results have shown that some trisubstituted compounds exhibited a higher affinity to 5-HT2A receptors than their respective disubstituted analogues (with the affinity to 5-HT1A receptors remaining the same or somewhat improving). The molecular dynamics simulations suggested that the presence of the third substituent in the piperazine ring of those compounds may induce stabilising effect on the ligand-receptor complexes. The results of the in vivo studies have shown that some of the examined trisubstituted piperazines (10-13, 16, 17) exhibited properties of postsynaptic 5-HT1A partial agonists. Moreover, compounds 13 and 16 exhibited features of 5-HT1A presynaptic agonists in in vitro test, and compound 16 also in in vivo tests.

Animals↗

Comparative efficacy of santonin and piperazine against Neoascaris vitulorum in buffalo calves.

An investigation was undertaken to evaluate the comparative efficacy of single dose treatment with santonin and piperazine against naturally acquired Neoascaris vitulorum in sixty-two buffalo calves of 20-60 days of age. Santonin was administered orally in doses of 5 mg, 10 mg and 15 mg/kg body weight to thirteen, eighteen, and sixteen buffalo calves, respectively. As a control, piperazine (88 mg/kg) was given by drench to a group of fifteen infected buffalo calves. Pretreatment and post treatment faecal eggs per gram (EPG) counts were determined by the Stoll's technique. The percentage reductions in EPG counts on the third and seventh days after administration of the two drugs were calculated. The percentage reduction in EPG counts in the piperazine treated group on the third day was 82 +/- 15, 90.2 +/- 3 and 91.3 +/- 2.3% while on the seventh day these values were 88 +/- 16, 97 +/- 3, and 98 +/- 2% in high, moderate and heavy infection calves, respectively. Treatment with santonin at 5, 10 and 15 mg/kg body weight also reduced the EPG counts. The percentage reduction in EPG counts in the calves treated with 15 mg/kg of santonin on the third day was 92.3 +/- 18, 95.8 +/- 7 and 93.5 +/- 4% while on the seventh day these values were 100 +/- 0, 100 +/- 0 and 99.7 +/- 2% in high, moderate and heavily infected calves, respectively. Both piperazine and santonin were associated with some side effects like diarrhoea, restlessness, etc. but their percentage incidence was not significantly different from each other. These findings suggest that santonin in a 15 mg/kg dose has an efficacy similar to piperazine given at the 88 mg/kg dose level for the treatment of ascariasis in buffalo calves.

Administration, Oral↗

Some effects of piperazine citrate on skeletal muscle and central nervous system.

In the frog rectus abdominis and rat phrenic nerve-diaphragm preparations, piperazine citrate was shown to have some neuromuscular blocking activity. In the rat, d-tubocurarine was 500 times more potent than piperazine. This neuromuscular blocking effect of piperazine may be responsible for the hypotonia it sometimes induces in man. High doses of piperazine increased, in mice, the sleeping time due to pentobarbitone, but decreased the threshold for convulsion due to leptazol and strychnine, thus explaining piperazine-induced somnolence and worsening of epileptic attacks in man.

Animals↗

Synthesis of 2-carbalkoxyamino-5(6)-(1-substituted piperazin-4-yl/piperazin-4-ylcarbonyl)benzimidazoles and related compounds as potential anthelmintics.

A number of 1,4-di-(3,4-disubstituted benzoyl)piperazines (3-6), 1-(3,4-disubstituted benzoyl)-4-(3,4-disubstituted phenyl)piperazines (9-11), 1,4-di-(2-carbalkoxyaminobenzimidazol-5(6)-yl-carbonyl)piperazines (12, 13), 1-(2-carbalkoxyaminobenzimidazol-5(6)- ylcarbonyl)-4-(2-carbalkoxyaminobenzimidazol-5(6)-yl) piperazines (14, 15) and 1-(2-carbalkoxyaminobenzimidazol-5(6)-yl)-4-(N,N- dicarbalkoxyamidino)piperazines (17, 18) have been synthesized and their anthelmintic activity is reported.

Ancylostomiasis↗

Synthesis and biological activity of a series of aspartate transcarbamoylase inhibitors: N-substituted diethyl aspartates and N-substituted-3-oxo-1,4-piperazine-2-acetic acid esters.

Series of N-substituted diethyl aspartates and N-substituted-3-oxo-1,4-piperazine-2-acetic acid esters were synthesized as potential inhibitors of aspartate transcarbamoylase. The aspartates were obtained by addition of substituted alkyl amines to diethyl maleate, or conversion of the hydroxy ethyl amino adduct to other functions. The 3-oxo-1,4-piperazine-2-acetic acid esters were prepared by addition of ethylene diamine to diethyl maleate, followed by cyclization. Addition of 1,2-diamino-2-methylpropane gave the corresponding 5,5-dimethyl-3-oxo-1,4-piperazine-2-acetic acid ester. N-Acyl derivatives in each series were obtained using the bromoacyl chlorides. A majority of the compounds in each series showed antimicrobial activity against five representative microorganisms, as well as significant activity against aspartate transcarbamoylase. Four of the compounds were found to have significant specificity against several tumor cell lines. A distance of two carbons between N and a reactive function was found to give the best activity for either antimicrobial, antienzyme, or tumor cell specificity activities, in either the open chain aspartates or cyclic piperazines. Little difference in anti-enzyme activity was found between the aspartates and piperazines, but introduction of the planar phenyl substituents lowered inhibitory activity.

Aspartate Carbamoyltransferase↗

Piperazine oestrone sulphate and interrupted norethisterone: effects on the postmenopausal endometrium.

OBJECTIVE: To assess the effects on the postmenopausal endometrium of two doses of oral piperazine oestrone sulphate and interrupted norethisterone in comparison with a continuously combined regimen and placebo. DESIGN: A prospective randomised trial. PARTICIPANTS: Two hundred healthy postmenopausal women. METHODS: Random assignment to two years of treatment with alternating three-day cycles of 1.5 mg piperazine oestrone sulphate and 1.5 mg piperazine oestrone sulphate + 0.7 mg norethisterone (highEP), or alternating three-day cycles of 0.75 mg piperazine oestrone sulphate and 0.75 mg piperazine oestrone sulphate + 0.35 mg norethisterone (lowEP), or 2 mg 17 beta-oestradiol continuously combined with 1 mg norethisterone acetate (E2+NETA), or placebo. MAIN OUTCOME MEASURES: Effect of treatment on endometrial histology, endometrial thickness, occurrence of uterine bleeding, endometrial oestrogen and progesterone receptor content, endometrial isocitrate dehydrogenase activity, and serum placental protein 14. RESULTS: The incidence of bleeding declined with time. In the second treatment year, the women receiving lowEP reported on average 7.3 days of bleeding, highEP 16.7 days, and E2+NETA 11.2 days. Histological assessment of endometrial biopsies revealed an atrophic or slightly secretory endometrium. Serum placental protein 14 increased slightly, but was statistically highly significant, during treatment, but no cyclical variation was observed. Endometrial isocitrate dehydrogenase was low in all three hormone groups and the same low level of endometrial oestrogen receptor and progesterone receptor was found comparable to the level in the placebo group. CONCLUSIONS: Histological and biochemical assessment of the endometrium showed that interrupted hormone replacement therapy induced the same pattern in endometrial parameters as continuous combined hormone replacement therapy.

Administration, Oral↗

Nitrosation of piperazine in man.

Piperazine, a secondary amine used as an anthelmintic drug, nitrosates rapidly in vitro to form two nitrosamines. Anhydrous piperazine and a drug formulation were found to have a content of 0.2-20 micrograms of the suspected carcinogen, N-mononitrosopiperazine, per gram of piperazine, but no detectable amount of the carcinogen, N,N'-dinitrosopiperazine. The possible nitrosation of the drug piperazine in man was investigated, with the following results. Thirty min after oral administration of 480 mg piperazine to four, fasting, healthy, male volunteers, gastric juice contained 0.14-0.23 micrograms/mL N-mononitrosopiperazine, as determined by gas chromatography-thermal energy analysis. The total amount produced in the stomach is estimated to have been 30-66 micrograms. The nitrosamine was not detected in blood, but was excreted in the urine, mainly during the first 8 h (0.8-2.5 micrograms). Half had appeared within 3 h. Acidification of the urine did not affect the excretion. N,N'-Dinitrosopiperazine was never found in gastric juice, blood or urine. Co-administration of 2 g ascorbic acid resulted in a significant, but incomplete and varying, inhibition of nitrosation in the stomach and of nitrosamine excretion in the urine.

Adult↗

[Determination of piperazine in hen eggs with HPLC following oral administration].

After oral administration of piperazine citrate to hens, this antihelmintic agent appeared unchanged in the eggs. After a therapeutic dose of ca. 0.9 g piperazine citrate per hen, a maximum level of 1.5 mg piperazine/kg egg was found two days after the application. The elimination half-life was 29 h and piperazine was found in the eggs up to 17 days after administration (limit of detection: 1 microgram/kg). Piperazine determination was performed by HPLC of the dansylderivative after clean-up by TLC.

Administration, Oral↗

Effects of piperazine derivatives on the activity of frog skeletal muscle fibers.

1. This study was undertaken to characterize the effects of some piperazine derivatives on excitable cell membranes. Three original Bulgarian compounds with favorable effects on cardiovascular and nervous system--piperazine derivatives with code names P-11 (N1-[3-oxo-3-phenyl-2-methyl-propyl]-N4-[trans-3-hydroxy-1,2,3,4- tetrahydro-2-naphthyl]-piperazine dihydrochloride), AS2 (N1-benzhydryl-N4-allyl piperazine dihydrochloride) and 35-M (Schiff's base of N1-benzhydryl-N4-aminopiperazine with triacetonamine, dioxalate salt) were tested in experiments with conventional microelectrode technique on isolated frog muscle fibers. 2. After 30-min treatment with tested drugs at concentrations of 10-100 microM the recorded intra-(ICAP) and extracellular action potentials (ECAPs) showed an amplitude decrease and duration increase. The total ionic current (Ii) decreased as the outward phase was almost abolished by P-11. The propagation velocity (PV) of excitation and the twitch amplitude also decreased. These changes were agent- and concentration-dependent. 3. The effect potency of the agents diminished in the following order: P-11 > AS2 > 35-M. 4. Concentrations higher than 100 microM for all agents completely, but reversibly, inhibited membrane excitability. 5. The results demonstrate compound- and concentration-induced modulation of Ca2+ current with blockade of Ca(2+)-dependent K+ and Cl- membrane channels of muscle fiber treated with the compound tested.

Action Potentials↗

DNA binding potential and cytotoxicity of newly designed pyrrolobenzodiazepine dimers linked through a piperazine side-armed-alkane spacer.

New pyrrolobenzodiazepine (PBD) dimers have been developed that are composed of two DC-81 subunits tethered to their C8 positions through piperazine moiety side-armed with alkaneoxy linkers (composed of 2-5 carbons). DNA thermal denaturation studies show that after 18h of incubation with calf thymus DNA at a 1:5 ligand/DNA ratio, one of them, 6a, increases the DeltaT(m) value by 24.0 degrees C. Thus, incorporation of a piperazine moiety instead of an inert alkanedioxy linker alone significantly enhances the DNA binding ability, and the analogous dimer 4 that lacks a piperazine moiety in the linker spacer elevates melting by only 15.1 degrees C under identical experimental conditions. This illustrates the effect of introducing a piperazine ring in the middle of such an alkanedioxy linker which produces several hydrophobic interactions and could also achieve a superior isohelical fit within the DNA minor groove. Interestingly, these dimers 6a-d are significantly more cytotoxic than 4 in a number of human cancer cell lines, in particular, compound 6c is highly potent for almost all the nine human cancer cell lines.

Animals↗

Ivermectin and piperazine toxicoses in dogs and cats.

Review of all reports involving anthelmintics in dogs and cats to the IAPIC between January 1, 1986 and August 10, 1988, revealed that ivermectin (extra-label use) and piperazine accounted for over 50% of the calls assessed as toxicoses and suspected toxicoses. Both ivermectin and piperazine are gamma-aminobutyric acid (GABA) agonists and their major effects appear to be on the central nervous system. Ivermectin toxicoses at estimated doses of greater than or equal to 100-less than 500 micrograms/kg were reported more than once only in the collies (n = 25) and Australian shepherds (n = 10); these two breeds accounted for 46% (69 of 150) of the toxicoses and suspected toxicoses calls in dogs. Ataxia, behavioral disturbances, tremors, mydriasis, weakness/recumbency, apparent blindness, hypersalivation/drooling (dogs only), and coma were the most commonly reported clinical signs in dogs and cats with suspected ivermectin toxicoses. Shock, dyspnea, vomiting, and ataxia were the most common clinical signs attributed to the microfilaricidal activity of ivermectin. Piperazine was the anthelmintic with the greatest number of reports of toxicoses and suspected toxicoses in cats. Piperazine neurotoxicity in cats and dogs usually was manifested by muscle tremors, ataxia, and/or behavioral disturbances within 24 hours after estimated daily dose(s) between 20 and 110 mg/kg.

Animals↗

Characterization of inward-rectifier K+ channel inhibition by antiarrhythmic piperazine.

Strong inward-rectifier K(+) (Kir) channels play a significant role in shaping the cardiac action potential: they help produce its long plateau and accelerate its rate of repolarization. Consequently, genetic deletion of the gene encoding the strongly rectifying K(+) channel IRK1 (Kir2.1) prolongs the cardiac action potential in mice. In principle, broadening the action potential lengthens the refractory period, which may in turn be antiarrhythmogenic. Interestingly, previous studies showed that piperazine, an inexpensive and safe anthelmintic, both inhibits IRK1 channels and is antiarrhythmic in some animal preparations. This potential pharmacological benefit motivated us to further characterize the energetic, kinetic, and molecular properties of IRK1 inhibition by piperazine. We show how its blocking characteristics, in particular, its shallow voltage dependence, allow piperazine to be effective even in the presence of high-affinity polyamine blockers. We also examine the channel selectivity of piperazine and its molecular determinants.

Animals↗

Simultaneous separation of different types of amphetamine and piperazine designer drugs by capillary electrophoresis with a chiral selector.

The recent emergence of a new class of piperazine-type compounds has brought about the need for laboratory screening methods for both seized drugs and toxicological samples. These piperazine compounds, which include 1-benzylpiperazine (BZP) and 1-(3-trifluoromethylphenyl)piperazine (TFMPP), exhibit comparable physiological effects and can be substituted for the classic amphetamine-type drugs. We have optimized a chiral capillary electrophoresis (CE) separation that detects a set of 6 piperazine and 4 chiral amphetamine compounds in under 23 min using a 200 mM phosphate buffer at a pH = 2.8 with 20 mM hydroxypropyl- beta-cyclodextrin (HPbeta3CD). In addition to the above compounds, a series of "clandestine" BZP diHCl samples were also analyzed using this method to assess the ruggedness of the procedure. The novel CE separation was tailored to simultaneously detect these piperzine compounds in addition to amphetamine-type drugs. Distinct migration time and UV-spectral data were obtained for all compounds of interest.

Amphetamines↗

Tumor apoptosis induced by epoxide-containing piperazines, a new class of anti-cancer agents.

PURPOSE: The overall purpose of this study was to determine the potential efficacy of epoxide-containing piperazines as a new class of anti-cancer agents. Two representative compounds, specifically NCO-700, a 4-trimethoxyphenyl-substituted epoxide-piperazine, and TOP-008, a 4-phenylpropenyl-substituted epoxide-piperazine were tested in cytotoxic assays with human breast and prostate cancer cell lines. A second objective was to determine if these two compounds had anti-cancer activity in vivo when tested against xenograft tumors in nude mice or human tumors grown under the kidney capsule in mice. A final objective of this study was to establish if NCO-700 and TOP-008 achieved cancer cell killing through an apoptotic mechanism. METHODS: The anti-proliferative activity of NCO-700 and TOP-008 were tested in a 7 day cell-survival assay utilizing a number of well characterized breast (HS-578T, T47D, MCF-7) and prostate (DU-145, PC-3, LNCaP) cancer cell lines. In vivo studies with the two compounds were performed, in nude mice bearing DU-145 xenograft tumors, and in normal mice in which DU-145 prostate cancer cells and HS-578T breast cancer cells were grown as solid tumors in the subrenal capsules of the animals. Apoptotic cell death of cancer cells was determined by a number of established techniques that detect apoptosis, including the confocal laser microscopy of treated cells and mitochondrial leakage assays utilizing the cationic dye, JC-1. Finally, the activation of the caspase cascade, enzymes that carry out apoptosis in mammalian cells, was examined in treated cells by immunoblot assays. RESULTS: NCO-700 and TOP-008 displayed cytotoxicity to HS-578T human breast cancer cells, with ED(50) values in the 3-6 microM range. Cytotoxicity to androgen receptor-negative human prostate cancer cells (PC-3 and DU-145 cells) occurred with ED(50) values in the 5-20 microM range. Cytotoxicity to hormone receptor-positive breast and prostate cancer cell lines occurred at 10 to 20-fold higher concentrations of the two compounds. When human prostate (DU-145) or breast cancer (HS-578T) cells were grown as solid tumors in the subrenal capsules of mice, significant anti-tumor activity of NCO-700 was observed at 20 mg/kg and 50 mg/kg body weight respectively, for prostate and breast tumors. In nude mice bearing DU-145 prostate tumor xenografts, 50 mg/kg doses of the two compounds either stopped (TOP-008) tumor growth or slowed (NCO-700) growth. The mechanism of cytotoxicity was shown to be through apoptosis, (a) by confocal microscopy studies revealing nuclear fragmentation, (b) by mitochondrial studies revealing disruption of the mitochondrial membrane and release of the cationic dye, JC-1, into the cytoplasm and (c) by protein immunoblot assays indicating that over a 6 h period, TOP-008 induced a significant accumulation of the pro-apoptotic protein, bak, in the mitochondrial fraction of HS-578T human breast cancer cells, accompanied by activation, at 2.5 h, of caspase-3. CONCLUSIONS: These studies indicated that the epoxide-containing piperazines, as exemplified by NCO-700 and TOP-008, were effective anti-cancer agents when tested in vitro and in vivo against human breast and prostate tumors. Our studies also indicated that TOP-008 induced the initiation of the caspase cascade leading to apoptosis. Previous toxicology studies in rodents and dogs, as well as a Phase I study in humans, showed NCO-700 to be a well-tolerated, non-toxic compound. Taken together with our current findings, these results suggest that this class of compounds has the potential to be relatively safe, new chemotherapeutic agents for refractory breast and prostate cancers.

Animals↗

Effect of 1-(m-trifluoromethylphenyl)-piperazine on 3H-serotonin binding to membranes from rat brain in vitro and on serotonin turnover in rat brain in vivo.

1-(m-Trifluoromethylphenyl)-piperazine inhibited the specific binding of tritiated serotonin to membranes from rat brain in vitro at lower concentrations than did quipazine or MK-212 (6-chloro-2-[1-piperazinyl]-pyrazine). In rats 1-(m-trifluoromethylphenyl)-piperazine decreased the concentration of 5-hydroxyindoleacetic acid (5-HIAA) without altering the concentration of serotonin in whole brain. The decrease in 5-HIAA was apparently due to a decrease in serotonin turnover, since 1-(m-trifluoromethylphenyl)-piperazine caused a slower decline in serotonin concentration after synthesis inhibition by alpha-propyldopacetamide and a slower accumulation of 5-HIAA after probenecid injection to block its efflux from brain. The decrease in serotonin turnover is an expected result of stimulating serotonin receptors in brain and has earlier been reported to occur with quipazine. Thus all of the results are compatible with the idea that 1-(m-trifluoromethylphenyl)-piperazine acts as a serotonin receptor agonist in rat brain.

Animals↗