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Biomedical subjects

W Kalow

Publications and source records attributed to W Kalow.

At least 55 records · Page 3Linked to original sources

Caffeine biotransformation in human hepatocyte lines derived from normal liver tissue.

Caffeine biotransformation was demonstrated in three novel human hepatocyte cell lines established from normal liver tissue and cultured continuously for 19 to 30 months. Caffeine and its metabolites were identified and quantified by high performance liquid chromatography. Without induction, caffeine was metabolized to the four primary metabolites [theobromine (37X), paraxanthine (17X), theophylline (13X), 1,3,7-trimethylurate (137U)]. Under these basal conditions 137U was the predominant metabolite. The actual pattern of metabolite production was a reproducible characteristic of each line. After induction with dibenz(a,h)anthracene, the formation of 17X was increased 4-17 fold. Induction with phenobarbital did not change the metabolic profile. These human hepatocyte lines can reproduce in vitro metabolism of caffeine observed in man in vivo.

Adult↗

Caffeine as a probe for CYP1A2 activity: potential influence of renal factors on urinary phenotypic trait measurements.

Two established caffeine-based urinary methods for measuring CYP1A2 activity were compared with each other, and also with the systemic clearance of caffeine which served as a standard of reference for such activity. Following a standardized dose, caffeine (137X) and its metabolites were measured in urine and plasma of 39 healthy subjects. The measurements allowed determinations of: (1) systemic caffeine clearance (CL(caff)); (2) the caffeine metabolite ratio (AFMU + 1X + 1U)/17U determined in an overnight-urine specimen and referred to as CMR, and (3) the ratio (17X + 17U)/137X measured in urine collected between 4 and 5 h after caffeine intake and referred to as PCUR for 'paraxanthine-caffeine urinary ratio'. The PCUR showed a bimodal distribution and a relatively wide variation, CL(caff) and CMR were both normally distributed. The correlation between CL(caff) and CMR was r = 0.77 (p < 0.001), between CLcaff and PCUR r = 0.46 (p < 0.01), and between CMR and PCUR r = 0.40 (p < 0.02). The difference between the correlation coefficients 0.77 and 0.46 was statistically significant (z-test; p < 0.05). The well established decrease of caffeine metabolism by oral contraceptive use was observed with both CL(caff) and CMR but not with PCUR. Examination of possible explanations for the differences between PCUR and CMR led to the finding of a correlation between PCUR and the renal clearance of caffeine (CLr) with r = -0.47 (p < 0.01). Further scrutiny demonstrated that a bimodal or non-normal frequency distribution as shown by PCUR was also shown by CLr and by urine flow rate.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Interactions of bupranolol with the polymorphic debrisoquine/sparteine monooxygenase (CYP2D6).

The beta-adrenoceptor blocker bupranolol turned out to be a competitive inhibitor of the polymorphic cytochrome P450 CYP2D6 of which sparteine is a substrate. There was stereo-selectivity of bupranolol involved: (-)-bupranolol was the weakest inhibitor with an apparent Ki value of 1.32 microM, (+)-bupranolol was the most potent with an apparent Ki value of 0.55 microM, while the therapeutically used racemic bupranolol had an intermediate value of 0.88 microM. A 10 min pre-incubation of 5 microM bupranolol with the enzyme preparation prior to the addition of substrate, reduced the inhibition of sparteine metabolism from 52 to about 25%. This suggests that--during these inhibition studies--bupranolol was much more rapidly metabolized than was sparteine, so that the measured Ki values must represent overestimates. The enzyme catalysing bupranolol metabolism was CYP2D6: microsomes from a liver with the genetic enzyme deficiency did not metabolize bupranolol; in microsomes from livers containing the enzyme and 10 microM bupranolol, 5 microM quinidine caused a 72% inhibition of bupranolol metabolism. Although our methods were not sufficiently sensitive to measure the Km of bupranolol directly, it is undoubtedly the beta-adrenoceptor blocker with the highest-known apparent affinity for CYP2D6. High affinity and rapid metabolism are infrequent combinations in enzymology.

Binding, Competitive↗

Thiopurine S-methyltransferase activity in a Chinese population.

Thiopurine S-methyltransferase is a cytosolic enzyme that catalyzes the S-methylation of thiopurine drugs. Although a genetic polymorphism has been recognized for this enzyme in populations of Caucasian descent, there has been scanty information about this polymorphism among Asians. In this study, we measured the erythrocyte thiopurine methyltransferase activity in 119 healthy Chinese subjects by a radiochemical assay. Methyltransferase activity was lower than what might have been expected for a white population. A bimodal frequency distribution was obtained that allowed the identification of four individuals with relatively low methyltransferase activity who may be heterozygotes for thiopurine S-methyltransferase deficiency; if so, the frequency of the mutant allele would be lower in this Chinese population than that observed in a white population (chi 2, p < 0.02). No gender-based differences were observed.

Asian People↗

Carbonyl (phenone) reductase in human liver: inter-individual variability.

The enzyme family carbonyl reductase, which catalyses the reduction of xenobiotic as well as endogenous ketones and aldehydes, has not been very well studied in terms of its biological functions and structural aspects. The aim of the present study was to check for the occurrence of inter-individual variability of carbonyl reductase activity in human liver. In vitro metabolism of p-nitroacetophenone (PNAP, a prototype substrate) indicated the presence of a high- and low-affinity enzyme site. The reductase activity of 17 kidney donor livers was screened at two concentrations (0.05 and 0.5 mM PNAP, below and above Km). The rates of reductase activity at 0.05 mM suggested a normal distribution. In contrast, at 0.5 mM the rates indicated a non-normal distribution, i.e. bi- or tri-modality. As an index of variability of enzyme affinity, ratios of velocities at 0.5 to 0.05 mM PNAP were calculated in order to check their frequency distributions. Three out of 17 kidney donor livers showed an atypical ratio. In these three cases, the high ratio was due to the low activity of the high affinity form of carbonyl reductase. Autopsy livers are a more readily available tissue source and about half the activity of the kidney donor livers was found in 43 autopsy livers indicating that they are a useful source of human tissue for studies of carbonyl reductase.

Acetophenones↗

Inhibition of human cytochrome P450 2D6 (CYP2D6) by methadone.

1. In microsomes prepared from three human livers, methadone competitively inhibited the O-demethylation of dextromethorphan, a marker substrate for CYP2D6. The apparent Ki value of methadone ranged from 2.5 to 5 microM. 2. Two hundred and fifty-two (252) white Caucasians, including 210 unrelated healthy volunteers and 42 opiate abusers undergoing treatment with methadone were phenotyped using dextromethorphan as the marker drug. Although the frequency of poor metabolizers was similar in both groups, the extensive metabolizers among the opiate abusers tended to have higher O-demethylation metabolic ratios and to excrete less of the dose as dextromethorphan metabolites than control extensive metabolizer subjects. These data suggest inhibition of CYP2D6 by methadone in vivo as well. 3. Because methadone is widely used in the treatment of opiate abuse, inhibition of CYP2D6 activity in these patients might contribute to exaggerated response or unexpected toxicity from drugs that are substrates of this enzyme.

Adolescent↗

Human hepatic cytochrome P450 2D6-like activity in nonhuman primates: catalytic characterization in vitro.

Previous studies have identified the monkey as an animal model for the genetic polymorphism affecting human hepatic cytochrome P450 2D6 enzyme. However, contrary to an earlier in vivo observation, the present study failed to find evidence of polymorphism of this enzyme activity in liver preparations of 84 African green (Cercopithecus aethiops) monkeys. The kinetics of dextromethorphan O-demethylation were similar in liver microsomes from African green (n = 21) and Crab eater (Macaca fascicularis, n = 7) monkeys (Km = 1.1 +/- 0.07 and 1.7 +/- 0.27 microM; Vmax = 215 +/- 71.7 and 152 +/- 21.1 nmol/mg/h, respectively). These Km values were lower and less variable than those in liver microsomes from 10 human extensive metabolizers (5.3 +/- 2.43 microM). Furthermore, the Vmax of the reaction in human liver microsomes was significantly lower (32 +/- 15.7 nmol/mg/h; P < .001). Inhibitor constants (Ki values) determined in monkey and human liver microsomes were highly correlated (r = 0.97), but two high-affinity inhibitors of the human enzyme (quinidine and lobeline) were approximately 40-fold less potent in monkey livers than in human livers. These data show that the monkey enzyme is functionally homologous, but is not identical to human hepatic cytochrome P450 2D6. Failure to observe poor metabolizer monkeys does not preclude their potential usefulness in evaluating the role of human hepatic cytochrome P450 2D6 activity in drug addiction and neurotoxicity because of the possibility of producing poor metabolizer phenocopies by potent hepatic cytochrome P450 2D6-like enzyme inhibitors in monkeys.

Animals↗

Variability of acetaminophen metabolism in Caucasians and Orientals.

Acetaminophen (paracetamol) is extensively conjugated with glucuronic acid and sulfate prior to renal excretion. A minor metabolic route involves microsomal oxidation of acetaminophen to a hepatotoxic reactive intermediate, which subsequently undergoes glutathione (GSH) conjugation, yielding cysteine and mercapturate conjugates, both of which are excreted in the urine (Slattery et al., 1987). Data collected by de Morais et al. (1989) indicated that in comparison with normal subjects, glucuronidation of acetaminophen was impaired in subjects with Gilbert's syndrome, a genetically-based impairment of bilirubin glucuronidation. Thus, inter-subject and ethnic differences in acetaminophen disposition have pharmacogenetic and toxicological implications. This study was conceived to explore these differences. Urinary excretion of acetaminophen and its metabolites was observed in 125 Caucasian and 33 Oriental subjects. No appreciable difference was noted in the mean fraction of drug excreted as glucuronide between the two groups (51.5% in Caucasians vs 51.8% in Orientals). However, the data strongly indicated that the excretion of acetaminophen glucuronide was not normally distributed. Bimodality was apparent in both groups, with 20% of Caucasian and 33% of Oriental subjects displaying relatively extensive glucuronidation. In addition, glucuronidation displayed a strong negative correlation with sulfation (r = -0.97), suggesting the existence of a compensatory mechanism between the two metabolic pathways. The mean fractional excretions of cysteine and mercapturate conjugates did show significant differences between Caucasians and Orientals (p < 0.005). In addition, the ratio of mercapturate to total GSH-derived conjugates recovered appeared to be bimodal, indicating possible heterogeneity in the conversion of the cysteine conjugate to mercapturate via N-acetylation.

Acetaminophen↗

Biotransformation of caffeine, paraxanthine, theobromine and theophylline by cDNA-expressed human CYP1A2 and CYP2E1.

Six human cytochrome P450s expressed in HepG2 cells using vaccinia virus cDNA-directed expression, were used to study the biotransformation of caffeine and its metabolites. CYP1A2 alone was responsible for caffeine 3-demethylation and paraxanthine 7-demethylation; in addition, 1A2 catalysed virtually all reactions related to caffeine and its metabolites. The metabolic profile of caffeine biotransformation by CYP1A2 averaged 81.5% for paraxanthine, 10.8% for theobromine and 5.4% for theophylline formation. It remained quite uniform when caffeine concentrations were varied. The most striking finding was that CYP2E1 (the ethanol-inducible form) had major influences upon caffeine metabolism: in particular, it catalysed the formation of theophylline and theobromine from caffeine. Thus, the in vivo metabolite profiling of caffeine may reveal CYP2E1 activities in addition to the previously documented activities of CYP1A2, polymorphic N-acetyltransferase and xanthine oxidase.

Biotransformation↗

Diazepam metabolism by rat and human liver in vitro: inhibition by mephenytoin.

1. Diazepam metabolism and its association with mephenytoin hydroxylase were studied in vitro using human and rat livers. 2. Enzyme kinetic parameters were obtained for the formation of p-hydroxydiazepam (p-hydroxy-DZP), N-desmethyldiazepam (NDZ), and temazepam (TMZ) from diazepam (DZP) in rat liver fractions. The Km values for formation in rat of p-hydroxy-DZP, NDZ and TMZ were 14 +/- 3 (SEM) microM, 44 +/- 4 and 63 +/- 8, respectively; clearance values calculated from Vmax/Km were 5.7, 3.2 and 4.9 ml/g per min, respectively. 3. Mephenytoin (MP) competitively inhibited, in rat liver, the formation of NDZ, but not the formation of p-hydroxy-DZP or TMZ; in human liver neither NDZ nor TMZ formation was inhibited by MP. 4. In seven different human livers the formation of p-hydroxy-DZP represented a minor pathway compared to the formation of NDZ and TMZ.

Animals↗

Intramuscular desferrioxamine in patients with Alzheimer's disease.

Although epidemiological and biochemical evidence suggests that aluminium may be associated with Alzheimer's disease (AD), there is no convincing proof of a causal link for aluminium in disease progression. We have completed a two year, single-blind study to investigate whether the progression of dementia could be slowed by the trivalent ion chelator, desferrioxamine. 48 patients with probable AD were randomly assigned to receive desferrioxamine (125 mg intramuscularly twice daily, 5 days per week, for 24 months), oral placebo (lecithin), or no treatment. No significant differences in baseline measures of intelligence, memory, or speech ability existed between groups. Activities of daily living were assessed and videorecorded at 6, 12, 18, and 24 month intervals. There were no differences in the rate of deterioration of patients receiving either placebo or no treatment. Desferrioxamine treatment led to significant reduction in the rate of decline of daily living skills as assessed by both group means (p = 0.03) and variances (p less than 0.04). The mean rate of decline was twice as rapid for the no-treatment group. Appetite (n = 4) and weight (n = 1) loss were the only reported side-effects. We conclude that sustained administration of desferrioxamine may slow the clinical progression of the dementia associated with AD.

Aged↗

Interethnic variation of drug metabolism.

There are many examples of differences between ethnically defined populations with regard to drug-metabolizing enzymes i.e. enzymes that serve as defences against exogenous chemicals. The prevalence of variants of enzymes such as monooxygenases, dehydrogenases, esterases and some transferases is not uniform, and this leads to differences in metabolism of drugs such as aspirin and diazepam, among others. Werner Kalow explains why the mere counting of a genetic variant may not be sufficient to uncover more major problems such as may be posed by multiple allelism or heterozygosity, and why it may be predicted that a large number of drugs will display interethnic differences in function.

Alleles↗

Use of caffeine metabolite ratios to explore CYP1A2 and xanthine oxidase activities.

Caffeine was used as a metabolic probe to screen healthy subjects for their activities of two enzymes, deduced to be CYP1A2 (an inducible cytochrome P450) and xanthine oxidase. A longitudinal study revealed modest effects of caffeine dose, ethanol intake, and time-of-day on the CYP1A2 index, without any effect on the xanthine oxidase index. The coefficients of intraindividual variation not accounted for were 5.0% for the xanthine oxidase and 17.2% for the CYP1A2 index. In a population study, both indexes showed a log normal distribution, with CYP1A2 values of most subjects covering a 6.3-fold range but only a 1.7-fold range with xanthine oxidase. The CYP1A2 index was 33% decreased in women who used oral contraceptives and substantially increased in cigarette smokers. Neither the CYP1A2 nor the xanthine oxidase index differed between volunteers of Chinese and European extraction. Four of 178 subjects showed unexplained low xanthine oxidase values (i.e., values several standard deviations below the mean).

Adult↗