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The measurement of haloperidol and reduced haloperidol in hair as an index of dosage history.

1. We report a method for measuring the concentrations of haloperidol (HL) and its major active metabolite, reduced haloperidol (RHL), in human scalp hair. 2. Hair samples were obtained from 59 patients who had been taking HL at fixed daily doses for more than 4 months and whose compliance was good. A morning pre-dose plasma sample was also obtained from 48 of these patients. 3. The concentrations of HL and RHL in hair (ng mg-1 hair) correlated significantly both with the daily dose (micrograms kg-1 body weight) of HL (r = 0.682, P less than 0.001 for HL and r = 0.813, P less than 0.001 for RHL, n = 59) and with the trough concentration (ng ml-1) of the corresponding compound in plasma at steady state (r = 0.558, P less than 0.001 for HL and r = 0.563, P less than 0.001 for RHL, n = 48). The correlation coefficients were slightly higher using the sum of the concentrations of both substances in hair (r = 0.829 for the correlation with daily dose and r = 0.609 for that with trough concentration). 4. Hair from other patients, in whom the dosage of HL had been changed within a few months prior to sampling, was sectioned into 1 cm-long portions successively from the roots and the concentrations of both compounds in each portion were measured. Assuming a growth rate of 1-1.5 cm/month, a history of individual dosage could be deduced in all patients from the distribution of the drug and metabolite along the single hair length.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Effect of chronic administration of haloperidol (intermittently) and haloperidol-decanoate (continuously) on D2 dopamine and muscarinic cholinergic receptors and on carbachol-stimulated phosphoinositide hydrolysis in the rat striatum.

It has been reported that apomorphine-induced stereotypy is sensitized after a chronic intermittent administration of haloperidol (HPD), but not after a chronic continuous exposure to haloperidol-decanoate (HPD-D). The present study was undertaken to investigate changes in the D2 dopamine and muscarinic receptors in the rat striatum after the administration of HPD intermittently and HPD-D continuously. The number of striatal [3H]spiperone binding sites increased significantly after HPD-D, but did not change after HPD. Neither the number of [3H](-)QNB binding sites nor carbachol-stimulated phosphoinositide hydrolysis changed after either HPD or HPD-D. These results indicate that the increase in striatal D2 receptors in rats administered HPD-D represents behavioral and biochemical tolerance, and that neither the D2 dopamine receptor supersensitivity nor muscarinic receptor hyposensitivity underlies sensitization of apomorphine-induced stereotypy.

Animals↗

Plasma haloperidol and reduced haloperidol concentrations in a geriatric population.

Haloperidol (HL) and reduced haloperidol (RH) plasma concentrations were measured in geriatric patients (n = 45) and schizophrenic patients (n = 8). In the elderly patients, HL doses were 1-4 mg/day while only 2 mg/day was used in the schizophrenics. At HL 2 mg/day dose in both age groups, mean plasma HL levels were approximately twice as high in the elderly patients compared to the schizophrenics (1.39 +/- 0.82 vs. 0.56 +/- 0.23 ng/ml, p < 0.02). RH plasma concentrations were almost 5 times greater in the elderly patients (0.54 +/- 0.35 vs. 0.09 +/- 0.05 ng/ml, p < 0.0001). These results suggest that HL plasma concentrations in the elderly are greater than in adult schizophrenic patients treated with similar HL doses.

Adult↗

Interconversions between haloperidol and reduced haloperidol in schizophrenic patients and guinea pigs: a steady-state study.

Plasma concentrations of haloperidol (HAL) and reduced haloperidol (RHAL) were measured in 8 schizophrenic patients, neuroleptic-free for at least 4 weeks, after repeated oral administrations of 10 mg HAL and RHAL. Each agent was given for 10 days with a 2-week washout period between the two compounds. HAL and RHAL were interconverted in all subjects. Plasma RHAL/HAL ratios at steady state during HAL treatment were significantly greater than the HAL/RHAL ratios after repeated reduced HAL administration (0.51 +/- 0.12 vs. 0.16 +/- 0.04 SD, p less than 0.0005). This result suggests that the interconversions between HAL and RHAL are apparently not equivalent in humans. A negative correlation was found between RHAL/HAL ratios after HAL administrations and HAL/RHAL ratios after RHAL administrations (r = -0.82, p less than 0.05). Repeated injections of HAL or RHAL at low (0.1 mg/kg) or high (1.0 mg/kg) doses were conducted in guinea pigs. Drug concentrations in striatum and plasma were measured. Both RHAL/HAL ratios after HAL injections and HAL/RHAL ratios after RHAL injections were dose- and time-dependent. High doses and repeated injections produced greater RHAL/HAL ratios after HAL and smaller HAL/RHAL ratios after RHAL than those observed with low doses and single injections, respectively. Compared with the results obtained from schizophrenic patients, the conversion from HAL to RHAL in guinea pigs was greater than that in humans, but the back conversions appeared to be similar between the guinea pigs and humans. Based upon the dose-dependent increase in RHAL/HAL ratios, a hypothesis of the therapeutic window effect for HAL treatment is proposed.

Adult↗

The response of untreated chronic schizophrenics to haloperidol and haloperidol decanoate.

A group of 13 untreated schizophrenic patients was collected over two and a half years. They were prescribed a standard regime of oral haloperidol, and where possible were transferred to haloperidol decanoate depot injections when their clinical condition stabilised. The progress of their symptoms was monitored weekly with a modification of the Present State Examination called the PSE Change Rating Scale. The ratings demonstrated a surprisingly good response to neuroleptic treatment in these chronic patients. Ten out of the 13 reached an arbitrary criterion of improvement with respect to psychotic symptoms, and in six patients these disappeared entirely. The reasons why the patients remained untreated for so long are considered, and include vagrancy, living with high Expressed Emotion relatives, and neglect in the community.

Adult↗

Pharmacodynamics and pharmacokinetics of haloperidol and reduced haloperidol in guinea pigs.

Striatal homovanillic acid (HVA) levels and drug concentrations in striatum and plasma were examined in guinea pigs after acute and subchronic administrations of haloperidol (HAL) and reduced HAL (RHAL). HVA and drug levels were measured by high performance liquid chromatography with electrochemical detection. HAL and RHAL were interconverted in 10 min. Both maximal HVA responses and peak levels of HAL and RHAL in the striatum were reached at 2 h after injections of both HAL and RHAL. The potency of RHAL in HVA elevation was about one-half that of HAL, consistent with the HAL levels after RHAL and HAL administration. The higher the dose of HAL or RHAL injected, or after repeated injections, the greater the RHAL to HAL ratio produced. In addition, the RHAL to HAL ratios after RHAL were higher than those after HAL. These results suggest that the oxidative drug metabolizing systems are weaker than the reductive processes.

Animals↗

Reduced haloperidol: a factor in determining the therapeutic benefit of haloperidol treatment?

One of the metabolic pathways of haloperidol (HAL) is the reduction of the molecule at the benzylic ketone to form an alcohol metabolite, known as reduced HAL (RHAL). The basic and clinical pharmacology of RHAL is the subject of this review. The investigation of RHAL in biological samples has been suggested to be important, as the reduced metabolite can be reconverted back to the parent drug and is shown to be 20-50% as potent as HAL in some in vivo neuroleptic tests. Nevertheless, the metabolic reduction/oxidation cycle of the drug is unbalanced. The interconversion process largely favours the reduction of HAL to RHAL but not vice versa. The RHAL/HAL ratios are dose and time dependent. The higher the dose or the longer the duration of treatment, the greater the ratio. The results concerning relationship between plasma RHAL level or RHAL/HAL ratio and clinical response are inconsistent, yet interesting. Some studies in schizophrenic patients have suggested a diminished therapeutic response to HAL when elevated plasma RHAL concentrations or RHAL/HAL ratios are presented. However, this finding has not been replicated by other investigations. Possible interference by RHAL with HAL at dopamine receptors thus reducing the effectiveness of HAL treatment has been suggested by some authors. Measurements of RHAL as well as HAL plasma concentrations for evaluating drug level-clinical response might be necessary in psychiatric patients.

Animals↗

Pharmacodynamics and pharmacokinetics of haloperidol and reduced haloperidol in schizophrenic patients.

Twelve male chronic schizophrenic inpatients, neuroleptic-free for at least 4 weeks, were given an oral test dose of 10 mg haloperidol (HAL) and reduced HAL (RHAL) in a random order, with a 2-week interval. Two weeks after the last test dose, the patients were given HAL, 5 mg orally twice daily for 7 days. Blood samples were drawn at baseline and between 0.5 and 24 hr after the test doses, and during HAL treatment as well. Plasma drug concentrations and homovanillic acid (HVA) levels were measured with high-performance liquid chromatography using electrochemical detection. HAL, but not RHAL, produced increments in plasma HVA (pHVA) levels at 24 hr after a test dose. pHVA levels remained higher than baseline during HAL treatment. Detectable interconversion between HAL and RHAL was observed in eight patients. The capacity of the reductive drug-metabolizing enzyme system, however, was greater than that of the oxidative processes. The plasma RHAL:HAL ratios on days 6 and 7 were higher than and positively correlated with those at Tmax after a single dose of HAL and were negatively correlated with the HAL:RHAL ratios at Tmax after a single dose of RHAL. Thus, both reductive and oxidative drug-metabolizing systems probably contribute to individual differences in plasma RHAL:HAL ratios in HAL-treated schizophrenic patients.

Adult↗

Scopolamine reverses haloperidol-attenuated lever-pressing for water but not haloperidol-attenuated water intake in the rat.

The operant lever-pressing response has previously (Ljungberg, Pharmacol Biochem Behav 27: 341-350, 1987) been found to be inhibited by lower doses of haloperidol than the corresponding consummatory act, i.e., water intake. In the present study it was found that the attenuation of the lever-pressing response caused by the neuroleptic, but not the attenuation of the water intake, could be counteracted by scopolamine. The results support the notion that blockade of operant responding by low doses of neuroleptics are probably related to the extra-pyramidal side-effects of neuroleptics seen in the clinic, as both phenomena can be counteracted by anticholinergics. These results therefore conflict with the anhedonia hypothesis put forward as an explanation of the attenuating effects of neuroleptics in operant settings. The findings also have a clear bearing on the role of dopamine in feeding and drinking behavior, as the results implies that different aspects of the control of water intake (i.e., the operant vs. the consummatory phase) are governed by different mechanisms in the CNS.

Animals↗

Haloperidol reductase activity in red blood cells from oriental patients on haloperidol.

1. We measured haloperidol reductase activity in red blood cells in 87 samples collected from 50 Japanese psychiatric patients on HAL. HAL reductase activities in the patients were in a range of 7.9-26.1 pmol/hr/10(6) RBC (mean = 13.4, S.D. = 3.4). Interindividual variability was as large as 25.4% (CVs), while intraindividual CVs were small (8.9%). 2. Distribution of HAL reductase activities was normal but their values were slightly lower in the patients than those in the normal controls, though the difference between these two groups was not significant. 3. No significant correlations were found between HAL reductase activity in RBC vs dose of HAL per body weight, or plasma and RBC RHAL/HAL ratio.

Adolescent↗

Cytochrome P450-mediated metabolism of haloperidol and reduced haloperidol to pyridinium metabolites.

Haloperidol (HP) has been reported to undergo cytochrome P450 (P450)-mediated metabolism to potentially neurotoxic pyridinium metabolites; however, the chemical pathways and specific enzymes involved in these reactions remain to be identified. The aims of the current study were to (i) fully identify the cytochrome P450 enzymes capable of metabolizing HP to the pyridinium metabolite, 4-(4-chlorophenyl)-1-(4-fluorophenyl)-4-oxobutylpyridinium (HPP(+)), and reduced HP (RHP) to 4-(4-chlorophenyl)-1-(4-fluorophenyl)-4-hydroxybutylpyridinium (RHPP(+)); and (ii) determine whether 4-(4-chlorophenyl)-1-(4-fluorophenyl)-4-oxobutyl-1,2,3,6-tetrahydropyridine (HPTP) and 4-(4-chlorophenyl)-1-(4-fluorophenyl)-4-hydroxybutyl-1,2,3,6-tetrahydropyridine (RHPTP) were metabolic intermediates in these pathways. In vitro studies were conducted using human liver microsomal preparations and recombinant human cytochrome P450 enzymes (P450s 1A1, 1A2, 1B1, 2A6, 2B6, 2C9, 2C19 2D6, 2E1, 3A4, 3A5, and 3A7) expressed in bicistronic format with human NADPH cytochrome P450 reductase in Escherichia coli membranes. Pyridinium formation from HP and RHP was highly correlated across liver preparations, suggesting the same enzyme or enzymes were responsible for both reactions. Cytochrome P450s 3A4, 3A5, and 3A7 were the only recombinant enzymes which demonstrated significant catalytic activity under optimized conditions, although trace levels of activity could be catalyzed by NADPH-P450 reductase alone. NADPH-P450 reductase-mediated activity was inhibited by reduced glutathione but not catalase or superoxide dismutase, suggesting O(2)-dependent oxidation. No evidence was obtained to support the contention that HPTP and RHPTP are intermediates in these pathways. K(m) values for HPP(+) (34 +/- 5 microM) and RHPP(+) (64 +/- 4 microM) formation by recombinant P450 3A4 agreed well with those obtained with human liver microsomes, consistent with P450 3A4 being the major catalyst of pyridinium metabolite formation in human liver.

Biotransformation↗

Ethnic comparison of haloperidol and reduced haloperidol plasma levels: Taiwan Chinese versus American non-Chinese.

Steady-state haloperidol (HAL) and reduced HAL (RHAL) plasma levels were measured in Chinese and non-Chinese schizophrenic patients. The patients (n = 38) were matched according to age (+/- 1 yr) and by HAL dose. In general, Chinese patients had higher mean plasma HAL levels and lower RHAL/HAL ratios compared to non-Chinese patients (23.6 +/- 14.9 ng/ml versus 17.1 +/- 10.1 ng/ml, p less than 0.05; 0.52 +/- 0.44 versus 0.82 +/- 0.62, p less than 0.05). Six groups were formed according to HAL dose (number per group): 10 mg/day (6); 20 (11); 30 (11); 40 (4); 50 (3); and 60 (3). No significant differences were found in age, weight and dose/weight. In each dose group, HAL plasma levels were generally higher in the Chinese patients than in the non-Chinese patients, though significance was only detected in the 30 mg group (26.1 +/- 7.0 ng/ml versus 18.5 +/- 5.1 ng/ml, p = 0.035) and a slight trend in the 40 mg group (36.0 +/- 15.0 ng/ml versus 23.5 +/- 10.4 ng/ml, p = 0.074). RHAL/HAL ratios were generally lower in the Chinese patients than in the non-Chinese patients, with a strong trend toward the significance level in the 20 mg and 30 mg groups (0.22 +/- 0.13 versus 0.58 +/- 0.57, p = 0.066 and 0.43 +/- 0.26 versus 0.71 +/- 0.34, p = 0.062). This study further suggests the possibility of different metabolic rates between Chinese and non-Chinese patients. Possible differences in the enzyme systems which relate to the metabolism of HAL and RHAL between Chinese and non-Chinese populations are discussed.

Adult↗

Haloperidol and reduced haloperidol plasma levels in selected schizophrenic patients.

The first measurements of haloperidol (HL) and its reduced metabolite hydroxyhaloperidol (RH) in plasma versus clinical response in five chronic schizophrenic patients are reported. HL and RH were measured by a radioimmunoassay with a low coefficient of variation. Patients were selected based on poor response or the need for high dosage and were rated with the Clinical Global Impression Scale. Daily HL dosage range was 0.5 to 1.5 mg/kg. HL plasma concentrations ranged from 14 to 98 ng/ml. RH plasma concentrations ranged from 10 to 319 ng/ml. Four patients did not respond to HL therapy; two of these improved dramatically when switched to fluphenazine. The four nonresponding patients had higher RH than HL concentrations. RH seems to be present in plasma in significant concentrations, and further investigation of the relationships of RH and HL plasma levels versus response is needed.

Adult↗