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Comparison of central and peripheral pharmacologic effects of biperiden and trihexyphenidyl in human volunteers.

In this double-blind, randomized study, indices of central (memory, sedation) and peripheral (salivation, ratio of R-R interval on electrocardiogram) muscarinic function were evaluated in 14 healthy volunteers who received trihexyphenidyl, biperiden, and placebo. Additionally, serum drug levels were obtained 2 hours after oral administration. All subjects participated in three study sessions. During each session, subjects received two doses of biperiden (4 mg), trihexyphenidyl (5 mg), or placebo, and four series of tests were administered. The tests included the determination of cardiac response to standing (R-R ratio), mouth salivation, finger-tapping speed, digit span (forward and backward), a selective reminding task, and visual analog scales (VAS). On the VAS, subjects rated biperiden as significantly more sedating than either trihexyphenidyl or placebo, and both biperiden and trihexyphenidyl were associated with more dizziness than was placebo. Saliva production was significantly reduced by both trihexyphenidyl and biperiden compared with placebo. Digit span performance was significantly decreased in only the backward direction. The selective reminding task revealed highly significant decrements in the number of words recalled and consistent long-term retrieval after both biperiden and trihexyphenidyl. Delayed recall was significantly decreased by both active drugs. Both trihexyphenidyl and biperiden caused a significant increase in the R-R ratio comparison with placebo. With the exception of the VAS measurement of sedation, the effects caused by biperiden and trihexyphenidyl did not differ. The results of this study do not support the hypothesis that the side effect profile of biperiden is significantly different from that of trihexyphenidyl.

Adolescent↗

Effects of biperiden on sleep at baseline and after 72 h of REM sleep deprivation in the cat.

We examined the effects of the muscarinic M1 antagonist biperiden in cats. In the first experiment a dose-response analysis was performed with intraventricular injection (IV ventricle) of biperiden. In the second experiment after REM sleep deprivation cats were injected with either biperiden (0.1 mg/kg) or saline. Biperiden produced a reduction in REM sleep percentage and an increase in REM sleep latency with these high doses. The 0.1 mg/kg biperiden dose, which did not suppress REM sleep at baseline, did reduce the REM sleep rebound. The present study suggests a modulatory role of biperiden on REM sleep regulatory processes. The fact that an effect of biperiden is noted only at the high doses suggests that at these doses the drug is influencing non-M1 receptors. Changes in the sensitivity of these receptors as a result of REM sleep deprivation might explain why a dose of biperiden will reduce REM sleep rebound, while being ineffective in suppressing REM sleep at baseline.

Animals↗

Interaction study between remoxipride and biperiden.

Twelve healthy male volunteers took part in a double-blind randomised cross-over study composed of three treatment sessions: remoxipride 100 mg; remoxipride 100 mg plus biperiden 4 mg; and biperiden 4 mg. Plasma and urine concentrations of remoxipride and biperiden, plasma prolactin levels, salivary flow and adverse events were recorded to assess pharmacodynamic interactions. Remoxipride and biperiden had no effect on each other's plasma concentrations. Biperiden did not affect the urinary recovery or renal clearance of remoxipride. Prolactin levels were unaffected by biperiden but increased following remoxipride administration. Differences in prolactin Cmax and tmax following remoxipride versus concomitant (remoxipride + biperiden) treatment were not statistically significant. However, a slight but statistically significant (P = 0.04) increase in prolactin AUC was observed after concomitant treatment. No significant differences could be observed between the recorded salivary flow in all the treatment sessions. Single doses of remoxipride and biperiden showed no pharmacokinetic or pharmacodynamic interaction.

Adult↗

Development of tolerance after repeated administration of a selective muscarinic M1 antagonist biperiden in healthy human volunteers.

The muscarinic antagonist biperiden produces a dose-dependent inhibition of (REM) sleep on acute administration. The present study addressed the possibility of pharmacological tolerance after repeated biperiden administration. Six healthy volunteers were studied under sleep laboratory conditions in the following situations: one acclimatization, night, two baseline (that were averaged), 4 nights of biperiden administration, and 4 nights of placebo recovery administration. Six milligrams of biperiden and placebo were administered in identical capsules. Volunteers and technicians were blind to the order of the administration of the capsules. REM sleep time was reduced during the first and the second night, but was not significantly different in comparison with baseline by the third night. During placebo recovery nights, REM sleep time was not different from baseline. REM sleep latency was increased during the first and second nights of biperiden administration, but tolerance to this effect was observed by the third night. On placebo nights a dramatic shortening of REM latency was observed. The present findings support the hypothesis that anticholinergic drugs, even a selective M1 antagonist such as biperiden, induce tolerance soon after administration. A similar effect has been reported with scopolamine, a nonselective muscarinic antagonist, but the main difference is that biperiden withdrawal was not followed by an REM sleep rebound. The observed effect on REM sleep latency during placebo administration may be related to a supersensitivity to muscarinic M-1 receptors that trigger the first REM sleep period. Because short REM latency has been the main finding in the sleep of depressed patients, some implications of the present findings are discussed.

Adult↗

No antidepressant effect of biperiden compared with placebo in depression: a double-blind 6-week clinical trial.

Depression may result from an increased ratio of cholinergic to aminergic central neurotransmission. The effect of centrally active anticholinergic agents on depressive ratings in depressed patients, however, has not been well studied. In a previous open label 4-week clinical trial, Kasper et al. (1981) reported that biperiden (Akineton) had antidepressant effects in depressed patients. We compared the effects of placebo and biperiden in a randomized, double-blind, parallel-design 6-week study. All patients received placebo for the first week and then received either biperiden (< or = 12 mg/day) or a peripherally acting anticholinergic agent, glycopyrrolate (Robinul, 1 mg/day) for 4 weeks. All patients received placebo during week 6. Both groups significantly improved, but biperiden did not demonstrate any significant benefit compared with glycopyrrolate. In a subgroup of patients receiving biperiden, the percentage of rapid eye movement sleep was significantly decreased only in the first week of biperiden compared with the initial placebo week, suggesting that tolerance to the central effects of biperiden developed. Further studies would be needed to determine whether anticholinergic agents possess antidepressant properties.

Adult↗

Pharmacokinetics of intramuscularly administered biperiden in guinea pigs challenged with soman.

Biperiden is an anticholinergic compound that has demonstrated effectiveness for treating organophosphate-induced seizure/convulsions. The plasma levels of biperiden associated with this efficacy have not yet been defined. In this study, the pharmacokinetics and tissue distribution of biperiden after intramuscular administration of 0.5 mg/kg were conducted while monitoring pharmacodynamic (electroencephalographic) data in soman-exposed guinea pigs. Overall, 59% of the animals had seizures terminated within 30 min of the biperiden administration. The mean time to seizure termination was 15.9 min. The pharmacokinetics of biperiden after i.m. administration to guinea pigs were best described by a one-compartment model with first-order absorption and elimination. The maximal plasma biperiden concentration (34.4 ng/mL) in seizure-terminated animals occurred at 26.3 min. Extensive partitioning into peripheral tissues was noted supporting the relatively large volume of distribution observed. Maximal biperiden concentrations in the cortex and brain stem were found at 30 min and were 2.3 and 1.7 times greater, respectively, than that in plasma. The time for maximal plasma concentration was found to corresponded well with the mean time to seizure termination following drug administration.

Animals↗

Biperiden administration during REM sleep deprivation diminished the frequency of REM sleep attempts.

Sixteen subjects were assigned to a group using either placebo or biperiden, with eight subjects in each group. Both groups were studied for one acclimatization night, one baseline night, four nights of rapid eye movement (REM) sleep deprivation and two recovery nights. All the subjects received either placebo or 4 mg biperiden 1 hour before sleep during the four nights of REM sleep deprivation. During the baseline and the recovery nights both groups received placebo capsules. The results showed that REM sleep time during the REM sleep deprivation was reduced by 70-75% below the baseline night in both groups. The number of attempts to enter REM sleep was significantly reduced by biperiden as compared to placebo for each of the four REM sleep deprivation nights. Because the total sleep time in the biperiden group was reduced, the number of REM sleep attempts was corrected by the total sleep time. The adjusted number of REM sleep attempts was also significantly reduced in the biperiden group. REM sleep latency showed a reduction in the placebo group, whereas in the biperiden group REM sleep latency was unchanged throughout the deprivation nights. In the recovery night REM sleep time was increased in both groups, with no differences between the groups. The REM sleep latency showed a reduction in the first recovery night in both groups that persisted through the second recovery night. The above findings support the role of biperiden as a REM sleep suppressive drug.

Adult↗

Intravenous biperiden in akathisia: an open pilot study.

OBJECTIVE: Antipsychotic-induced akathisia can be distressing and unendurable for prolonged periods. It has been shown that intramuscular biperiden is a relatively rapid and effective treatment for akathisia. However, the intravenous administration of biperiden may provide a more rapid effect, although this remains to be definitively proven. METHOD: The subjects obtained for this study met the diagnostic criteria for schizophrenia as defined by the Diagnostic and Statistical Manual of Mental Disorders (DSM-IV). The therapeutic effect of i.v. and i.m. biperiden was studied in an open clinical trial in twenty-three (12 male and 11 female) patients who developed antipsychotic-induced acute akathisia as defined by the research criteria of the DSM-IV. Following the development of akathisia, 5 mg of biperiden was intravenously injected in seventeen patients and intramuscularly in six patients. The therapeutic effect of biperiden on akathisia was clinically assessed by using the rating scale of Barnes. RESULTS: Following i.v. administration on biperiden, the mean time to onset and maximum effect occurred 1.6 (SD = 1.9) and 9.2 minutes (SD = 6.0), respectively. Furthermore, at the time of maximal effect, akathisia was completely ameliorated in all patients. The side effects reported were mild and transient. Following i.m. administration, the mean time to onset and maximum effect were 30.5 (SD = 5.9) and 50 minutes (SD = 7.4), respectively. Thus, the time to maximal effect was significantly less (40 minutes) after i.v. compared to i.m. administration. CONCLUSION: These results suggest that i.v. administration of 5 mg of biperiden could be used to provide a rapid and effective treatment for patients with severe akathisia.

Acute Disease↗

Efficacy of biperiden and atropine as anticonvulsant treatment for organophosphorus nerve agent intoxication.

The ability of the nerve agents tabun, sarin, soman, GF, VR, and VX to produce brain seizures and the effectiveness of the anticholinergics biperiden HCl or atropine SO4 as an anticonvulsant treatment were studied in a guinea-pig model. All animals were implanted a week prior to the experiment with cortical electrodes for electroencephalogram (EEG) recordings. On the day of exposure, the animals were pretreated with pyridostigmine (0.026 mg/kg, i.m.) 30 min prior to challenge with a 2 x LD50 dose (s.c.) of a given agent. In separate experiments, animals were challenged with 5 x LD50 (s.c.) of soman. One minute after agent challenge, the animals were treated intramuscularly (i.m.) with 2 mg/kg atropine SO4 admixed with 25 mg/kg 2-PAM Cl and then observed for the onset of seizure activity. Five minutes after the start of nerve agent-induced EEG seizures, animals were treated i.m. with different doses of biperiden HCl or atropine SO4 and observed for seizure termination. The anticonvulsant ED50 of biperiden HCl and atropine SO4 for termination of seizures induced by each nerve agent was calculated and compared. With equally toxic doses (2 x LD50) of these agents, continuous EEG seizures (status epilepticus) developed in all animals challenged with soman, tabun, or VR, and in more than 90% of the animals challenged with GF or sarin. In contrast, only 50% of the animals developed seizures when challenged with VX. The times to onset of seizures for soman, tabun, GF, and sarin were very similar (5-8 min) while for VR, it was about 10 min. In the case of VX, not only was the time to seizure development longer (20.7 min), but the seizure activity in 19% of the animals terminated spontaneously within 5 min after onset and did not return. Under these conditions, the anticonvulsant ED50s of biperiden HCl for soman, GF, VR, tabun, sarin, and VX were 0.57, 0.51, 0.41, 0.2, 0.1, and 0.09 mg/kg, respectively, while those of atropine SO4 for soman, VR, tabun, GF, sarin, and VX were 12.2, 11.9, 10.4, 10.3, 5.1, and 4.1 mg/kg, respectively. In separate experiments, the anticonvulsant ED50 doses of biperiden for animals challenged with 2 or 5 x LD50 of soman were 0.48 (95% confidence limits 0.25-0.73) or 0.57 (95% CI 0.38-0.84) mg/kg, respectively, while the anticonvulsant ED50s for atropine (12.2 mg/kg, i.m.) were identical under these same two challenge conditions. The present study demonstrates that all nerve agents can produce status epilepticus and that the therapeutic effectiveness of atropine and biperiden roughly paralleled the seizurogenic potential of these agents.

Animals↗

Affinity and selectivity of biperiden enantiomers for muscarinic receptor subtypes.

The affinity of both the (+)- and the (-)-stereoisomer of biperiden for different muscarinic receptor subtypes was investigated in vitro in functional studies with field-stimulated rabbit vas deferens (M1-receptor), guinea-pig ileum (smooth muscle M2 beta-receptor) and rat left atrium (cardiac M2 alpha-receptor). (+)-Biperiden had its highest affinity to M1-receptors (pA2 = 9.07), had low affinity to cardiac M2 alpha-receptors (pA2 = 7.25) and intermediate affinity to ileal M2 beta-receptors (pA2 = 8.27). The ability of (+)-biperiden to discriminate between ileal M2 beta- and cardiac M2 alpha-receptors (factor = 10) was similar to that of 4-diphenylacetoxy-N-methylpiperidine methiodide (4-DAMP, factor = 9). In contrast, (-)-biperiden displayed low but nearly undistinguishable affinity for all muscarinic receptor subtypes studied (pA2 = 5.59 +/- 6.38). (+)-Biperiden discriminated strongly between M1- and cardiac M2 alpha-receptors (factor 66), thus being even more selective than pirenzepine (factor 28) which makes it one of the most M1-/cardiac M2 alpha-selective antimuscarinic drugs now available. These results indicate that (+)-biperiden could represent a further valuable tool for the characterization of muscarinic receptor subtypes.

Animals↗

Amnesic effects of the anticholinergic drugs, trihexyphenidyl and biperiden: differences in binding properties to the brain muscarinic receptor.

An amnesic effect of anticholinergic drugs was previously described from several behavioral studies. We examined this effect induced by trihexyphenidyl and biperiden, clinically used in the parkinsonism and schizophrenic patients, by using passive avoidance tasks. Both of these drugs (0.1-10 mg/kg, s.c.) showed dose-dependent amnesic effects in the acquisition and retrieval phases. However, the effect induced by trihexyphenidyl was transient, whereas that of biperiden was long-lasting. To clarify the reason for the different duration of the amnesic activity, binding to the muscarinic receptor was examined. In the Scatchard analysis, trihexyphenidyl competed with [(3)H]quinuclidinyl benzilate ([(3)H]QNB) on the muscarinic receptor (showed increased K(d) and unchanged B(max) value), while biperiden decreased [(3)H]QNB binding (B(max) value) significantly. Furthermore, in an exchange assay for receptor inactivation, trihexyphenidyl binding to muscarinic receptors was exchanged by [(3)H]QNB completely, but biperiden decreased the exchangeable binding of [(3)H]QNB in a dose dependent manner (0.1-100 nM). These results suggested that the binding of trihexyphenidyl and biperiden to muscarinic receptor might be completely reversible and partially irreversible, respectively, whereas the K(i) values of these two drugs were similar. In conclusion, this difference in binding property may explain the difference in the time-course of the amnesic effect induced by trihexyphenidyl and biperiden.

Amnesia↗

No effect of the anticholinergic drugs trihexyphenidyl and biperiden on the plasma concentrations of bromperidol and its reduced metabolite.

Effects of the anticholinergic drugs trihexyphenidyl and biperiden on plasma concentrations of bromperidol and its reduced metabolite were studied. Subjects comprised 20 schizophrenic inpatients taking bromperidol, 6-18 mg/ day for 1-9 weeks. Patients were randomly allocated to one of two treatment sequences: trihexyphenidyl-biperiden (n = 12) or biperiden-trihexyphenidyl (n = 8). Each sequence consisted of two 2-week phases, with no washout period between the two phases. The daily dose of trihexyphenidyl was 8 mg and that of biperiden 6 mg. Plasma concentrations of bromperidol and reduced bromperidol were measured using high-performance liquid chromatography (HPLC). There was no significant difference in plasma bromperidol or reduced bromperidol concentrations among baseline, trihexyphenidyl and biperiden phases: 7.3 +/- 3.7 versus 7.2 +/- 4.1 versus 7.0 +/- 4.3 ng/ml and 2.0 +/- 2.1 versus 2.2 +/- 2.1 versus 1.9 +/- 2.0 ng/ml, respectively. The present study thus suggests that neither trihexyphenidyl nor biperiden affects plasma concentrations of bromperidol and its reduced metabolite.

Adult↗

Effect of sequence of administration on the pharmacokinetic interaction between the anticholinergic drug biperiden and [3H]quinuclidinyl benzylate or [3H]N-methylscopolamine in rats.

In rats the pharmacokinetic interactions between the anticholinergic drug biperiden and [3H]quinuclidinyl benzylate ([3H]QNB) or [3H]N-methylscopolamine ([3H]NMS) is affected by the sequence in which the drugs are administered. Drug concentrations in various tissues were determined after intravenous administration of [3H]QNB or [3H]NMS (325 ng kg(-1)). Biperiden (6.4 mg kg(-1)) was administered either 5 min before, concomitantly with or 20 min after injection of [3H]QNB or [3H]NMS. When biperiden was administered concomitantly with or before [3H]QNB, distribution of [3H]QNB among the regions of the brain and other tissues was reduced; at 4 h the ratio of the distribution of [3H]QNB for experimental animals to that for control animals ranged from 0.15 to 0.9. When biperiden was administered after [3H]QNB, the distribution of [3H]QNB in the brain and other tissues was significantly higher than for the other two treatments (P < 0.01). However, for [3H]NMS the sequence of administration had no effect on the distribution of the drug in the brain and other tissues except for the kidney. In-vitro, in crude synaptosomal membranes, the amount of [3H]QNB at 2 h relative to the control concentration at equilibrium was 87% when biperiden was added before [3H]QNB and 56% when biperiden was added after [3H]QNB. In both instances the concentration of [3H]NMS reached equilibrium within 30 min. These findings suggest that the difference between the rate constant of association and dissociation at the possible site of action gives rise to the effect of the sequence of administration on the pharmacokinetic interaction.

Animals↗

Rapid eye movement (REM) sleep increases by auditory stimulation reverted with biperiden administration in normal volunteers.

Auditory stimulation during REM sleep increases REM sleep time. The purpose of the present work was to determine if the selective muscarinic M-1 antagonist biperiden could modify the effect of the auditory stimulation on REM sleep. Twelve healthy volunteers were divided into placebo and biperiden groups. All the volunteers were studied under sleep laboratory conditions as follows: one acclimatization night, one baseline night, four nights with auditory stimulation either with placebo or biperiden, and two follow-up nights. Biperiden (4 mg) or placebo in identical capsules was administered 1 hour before beginning the sleep recordings. REM sleep time and REM density in the placebo group were increased relative to baseline by auditory stimulation. Biperiden blocked the REM time increase over the three treatment nights and suppressed the REM density increase over all four treatment nights. Biperiden also increased the latency compared to the placebo group. The present findings suggest that M-1 mechanisms are related to REM sleep regulation.

Acoustic Stimulation↗

Effects of fasting on biperiden pharmacokinetics in the rat.

The effects of fasting on the pharmacokinetics of biperiden in rats were examined. Total clearance of biperiden was greater than 90% ascribable to hepatic clearance and was essentially blood-flow dependent. The number of compartments in the preferred pharmacokinetic model of biperiden changed from three (for normal rats) to two (for fasted rats). The smaller mean residence time (MRT) values found for fasted rats were attributable to decreases in distribution volume. Biperiden showed much higher lipophilicity than haloperidol, thiopental, and hexobarbital, and its tissue-to-plasma partition coefficient in adipose tissue was 20-fold higher than that in muscle. The influence of changes in volumes of adipose tissue and muscle on distribution volume (Vdss/BW) was evaluated from tissue-to-plasma partition coefficients. The value of Vdss/BW was predicted to decrease with decrease of adipose tissue, and to increase with decrease of muscle tissue. These results suggest that the observed decrease of Vdss/BW in fasted rats reflects reduced capacity to trap biperiden in the body, especially in adipose tissue. Possible clinical implications of these results are discussed.

Adipose Tissue↗

Modulation of memory and visuospatial processes by biperiden and rivastigmine in elderly healthy subjects.

RATIONALE: The central cholinergic system is implicated in cognitive functioning. The dysfunction of this system is expressed in many diseases like Alzheimer's disease, dementia of Lewy body, Parkinson's disease and vascular dementia. In recent animal studies, it was found that selective cholinergic modulation affects visuospatial processes even more than memory function. OBJECTIVE: In the current study, we tried to replicate those findings. In order to investigate the acute effects of cholinergic drugs on memory and visuospatial functions, a selective anticholinergic drug, biperiden, was compared to a selective acetylcholinesterase-inhibiting drug, rivastigmine, in healthy elderly subjects. METHODS: A double-blind, placebo-controlled, randomised, cross-over study was performed in 16 healthy, elderly volunteers (eight men, eight women; mean age 66.1, SD 4.46 years). All subjects received biperiden (2 mg), rivastigmine (3 mg) and placebo with an interval of 7 days between them. Testing took place 1 h after drug intake (which was around Tmax for both drugs). Subjects were presented with tests for episodic memory (wordlist and picture memory), working memory tasks (N-back, symbol recall) and motor learning (maze task, pursuit rotor). Visuospatial abilities were assessed by tests with high visual scanning components (tangled lines and Symbol Digit Substitution Test). RESULTS: Episodic memory was impaired by biperiden. Rivastigmine impaired recognition parts of the episodic memory performance. Working memory was non-significantly impaired by biperiden and not affected by rivastigmine. Motor learning as well as visuospatial processes were impaired by biperiden and improved by rivastigmine. CONCLUSIONS: These results implicate acetylcholine as a modulator not only of memory but also of visuospatial abilities.

Aged↗

Dose dependent inhibition of REM sleep in normal volunteers by biperiden, a muscarinic antagonist.

We tested the effect of biperiden (2, 4, and 8 mg per os 30 min before bedtime) on the polygraphically recorded sleep of normal volunteers (n = 8). Biperiden is a cholinergic, muscarinic receptor antagonist that may preferentially block the M1 receptor subtype. Compared with placebo, biperiden significantly prolonged rapid eye movement (REM) latency and suppressed REM sleep time and REM percentage in a dose-dependent manner. These REM suppressing effects of biperiden are similar to those previously reported with scopolamine and other nonselective muscarinic receptor antagonists. Because of uncertainties about the pharmacological specificity of biperiden, further studies are needed to determine the mechanism of action and the role of M1 receptors subtypes in the regulation of REM sleep.

Adult↗

Insomnia related to biperiden withdrawal in two schizophrenic patients.

It is not uncommon for patients who are receiving antipsychotic medication to be given anticholinergic agents, such as biperiden, despite the relative absence of neurological side-effects. Two cases of schizophrenia are reported in which insomnia developed after biperiden withdrawal or reduction. The insomnia continued until biperiden treatment was reinstated, despite the fact that the patients did not exhibit signs or report symptoms indicative of antipsychotic drug-induced neurological side-effects. The occurrence of insomnia following the withdrawal of biperiden or reduction in the dose has not been previously reported. One potential explanation for the insomnia is cholinergic rebound following the withdrawal of biperiden.

Adult↗