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Biomedical subjects

B K Tang

Publications and source records attributed to B K Tang.

At least 55 records · Page 3Linked to original sources

Biotransformation of caffeine by microsomes from human liver. Kinetics and inhibition studies.

The nature of the cytochrome P-450-dependent enzyme reactions giving rise to four primary metabolites of caffeine was investigated using microsomes isolated from livers of human kidney donors. Metabolite formation proceeded at a lower rate than that predicted from in vivo caffeine elimination half-lives, as has been observed in other species using this compound as a substrate in microsomal incubations. Kinetic experiments indicated that the formation of each of the N-demethylated metabolites paraxanthine, theobromine and theophyline was mediated by both a high- and a low-affinity catalytic site over a substrate concentration range from 0.05 mM to 80.0 mM, although only the high-affinity component is likely to be of any importance at normally encountered in vivo caffeine concentrations. 7-Ethoxyresorufin and acetanilide, selective substrates for two polycyclic aromatic hydrocarbon (PAH)-inducible isozymes of cytochrome P-450 in the mouse (P1-450 and P3-450, respectively) were each able to inhibit competitively the formation of caffeine metabolites by human liver microsomes, while caffeine could in turn similarly inhibit the biotransformations of these two compounds. The isozyme-selective P-450 inhibitor alpha-naphthoflavone (ANF) potently inhibited the high-affinity component of caffeine N-demethylations, while 1-phenylimidazole (PI) was a more potent inhibitor of the low-affinity component. The inhibition studies also indicated that the formation of 1,3,7-trimethyluric acid was mediated by both ANF-sensitive and PI-sensitive sites. Taken together, the data support suggestions from in vivo studies that a PAH-inducible isozyme of cytochrome P-450 plays a significant role in the biotransformation of caffeine in man.

Adult↗

An alternative test for acetylator phenotyping with caffeine.

Previously published methods allow the determination of the genetically controlled acetylator status using caffeine as a test drug, based on the urinary excretion of a ring-opened metabolite of caffeine, an acetylated uracil (5-acetylamino-6-formylamino-3-methyluracil). 5-Acetylamino-6-formylamino-3-methyluracil is labile but can be converted into a stable, deformylated product referred to as 5-acetylamino-6-amino-3-methyluracil, which has recently been shown to be quantifiable by exclusion chromatography. The first part of the present article represents a longitudinal study of three subjects to assess the intraindividual variability of those caffeine metabolite ratios that are of potential interest for the determination of acetylator phenotypes. Effects of single and multiple doses, as well as of different periods of urine collection, were tested. A ratio relating the excretion of 5-acetylamino-6-amino-3-methyluracil to that of all products of the 7-demethylation pathway of paraxanthine proved to be highly reproducible, particularly after collection of overnight urine after coffee consumption during the day. This ratio showed complete concordance with the plasma index for sulfamethazine acetylation. The second part of this article showed the use of this ratio in a population study. It allowed a good separation of slow and fast acetylators and probably also a separation of homozygous and heterozygous fast acetylators.

Acetylation↗

Detection of ethanol in urine of abstaining alcoholics.

A simple method using gas chromatography-mass spectrometry was developed to determine a low concentration of ethanol in urine. The detection limit was 0.02 mM ethanol. A mean +/- SD ethanol concentration in urine of 0.21 +/- 0.17 mM was measured in 11 alcoholics after 14 days abstention, a level at least 10 times higher than that of control subjects who had no alcoholic drinks during a period of 7 days prior to the test.

Alcohol Drinking↗

Detection of an alcohol specific product in urine of alcoholics.

A simple procedure, using high performance liquid chromatography, was developed to detect and measure in urine an alcohol specific product, "ASP" indicative of chronic alcohol consumption. One day after hospital admission, the average amount of ASP in urine of alcoholics was 17 times higher than that of control subjects and 5 and 2 times higher after 7 and 14 days of abstinence, respectively. Urinary levels of ASP should be of value in the identification of chronic alcoholism.

Alcohol Drinking↗

Effect of allopurinol on caffeine disposition in man.

Caffeine (5 mg kg-1) was administered orally to two healthy, non-smoking subjects on three separate occasions--before, and during therapy with the xanthine oxidase inhibitor allopurinol at doses of either 300 or 600 mg daily. Plasma and urinary levels of methylxanthines, endogenous oxypurines and allopurinol and its metabolite oxypurinol were measured using h.p.l.c. analyses. Allopurinol treatment caused a specific, dose-dependent inhibition of the conversion of the caffeine metabolite 1-methylxanthine (1X) to 1-methyluric acid (1U). A good correlation was observed in both subjects between the urinary 1U/1X molar ratio and the ratio of endogenous urate to hypoxanthine + xanthine at the different allopurinol doses, supporting the proposal that the 1U/1X molar ratio after caffeine intake provides an in vivo index of xanthine oxidase activity in man.

Adult↗

Differences in metabolism of sulfonamides predisposing to idiosyncratic toxicity.

Individual differences in metabolism of the sulfonamides may predispose patients to idiosyncratic reactions. Sulfonamides are metabolized by N-acetylation (mediated by a genetically polymorphic enzyme) and oxidation to potentially toxic metabolites. We examined 6 patients who had severe reactions to sulfonamides and compared them with 20 controls. Acetylator phenotype was determined with caffeine, a safe in-vivo probe of enzyme activity. All 6 patients were slow acetylators (expected, 55%; p less than 0.05). Detoxification of oxidative metabolites was studied in vitro with a lymphocyte assay evaluating cell death from metabolites generated by a murine hepatic microsomal system. Cells from each patient showed increased toxicity from sulfonamide metabolites but not from the drugs themselves. Cells from parents of 3 patients had intermediate toxicity from sulfonamide metabolites, whereas cells from a sibling of 1 patient had a normal response. Susceptibility to sulfonamide reactions may be due to interaction of metabolic pathways, possibly under genetic control, regulating N-acetylation and specific detoxification of toxic metabolites of the drugs.

Acetylation↗

N-Glucosidation of amobarbital in the cat.

N-Glucosidation is a novel pathway of barbiturate metabolism, so far known to occur only in man. A search for an animal model, conducted through in vitro screening, revealed that amobarbital-N-glucoside was formed in liver preparations from the cat. The presence of amobarbital-N-glucoside was demonstrated in cat urine, following i.p. administration of amobarbital.

Amobarbital↗

A simple test for acetylator phenotype using caffeine.

A method is presented for the use of caffeine, in the forms commonly ingested by a large proportion of the world's population, to test for the clinically important acetylation polymorphism. Each of 146 subjects provided a spot sample of urine between 2 and 6 h after coffee, tea or cola soft drink consumption, and the molar ratio of 5-acetylamino-6- formylamino -3-methyluracil ( AFMU ) to 1-methylxanthine (1X) was determined by a simple h.p.l.c. assay. The ratio afforded segregation of three apparent modes of acetylation capacity in this population, in concordance with a standard sulphamethazine phenotyping procedure and with other methods using controlled caffeine intake and urine collections. The day-to-day consistency of the method was established in eight selected subjects.

Acetylation↗

Variation in amobarbital metabolism: evaluation of a simplified population study.

Kinetic constants of amobarbital metabolism were established for 52 subjects on the basis of urinary analysis extending over several days, usually 96 hr. There was no evidence of effect of age or sex on any of the constants. C-Hydroxylation was induced by cigarette smoking as much as 100%, but glucosidation was not affected. A factor influencing the constants was ethnicity of subjects (Caucasian or Oriental). This study confirms ethnic differences in amobarbital metabolism that were reported after measuring the concentration of metabolites in single samples of urine, that is, urine specimens voided during the postdistributive phase after oral drug intake. It appears that extreme simplification of sampling methods may be contemplated in the design of metabolic investigations of populations.

Adult↗

Polymorphic N-acetylation of a caffeine metabolite.

In the course of investigations into variability in the metabolism of caffeine in human populations, urinary levels of 5-acetylamino-6-formylamino-3-methyluracil (AFMU), a newly discovered ring-opened metabolite of caffeine, were found to be both bimodally distributed and interethnically variable in samples (Caucasian: n = 42; Oriental: n = 26) from the Toronto population. To test the premise that the polymorphic N-acetyltransferase enzyme (E.C.2.3.1.5) could be responsible for the production of AFMU, 20 of the subjects were phenotyped for acetylator status using sulfamethazine (SMZ). Concordance for all subjects between AFMU production and SMZ acetylation strongly suggests that the acetylation polymorphism is involved in the formation of AFMU in man.

Acetylation↗

Variability in caffeine metabolism.

Urinary metabolites excreted after oral caffeine were quantified in a healthy sample (n = 68) from the Toronto population by HPLC analyses. The profile of metabolites, assessed by examining particular metabolite ratios, was found to differ widely among subjects. Ratios denoting cytochrome P-450-dependent activities were shown to be interethnically variable between oriental and Caucasian groups, whereas those indicative of xanthine oxidase activity exhibited neither significant interindividual variation nor an ethnic difference. It was also shown that a ratio providing an index of polymorphic N-acetyltransferase activity holds promise as a simple marker for acetylator status in man.

Acetyltransferases↗

The occurrence of two hepatic microsomal sites for amobarbital hydroxylation.

Amobarbital metabolism in human liver and in rat liver, lung, kidney, and small intestine was measured in vitro using thin-layer chromatography (TLC) for separation of metabolites generated from incubation with [2-14C]amobarbital. Formation of 3'-hydroxyamobarbital (C-OH) occurred primarily in the liver. The kinetics of C-OH formation by rat liver microsomes or isolated hepatocytes could be described by a Michaelis-Menten model incorporating two metabolic sites, one characterized by high-affinity and low-velocity constants (Km = 0.054 +/- 0.012 mM, Vmax = 16.89 +/- 4.27 nmol C-OH x g liver-1 x min-1), the other by low-affinity and high-velocity (Km = 0.679 +/- 0.097 mM, Vmax = 66.0 +/- 5.41 nmol C-OH x g liver-1 x min-1). The kinetic parameters of the high-affinity site differed significantly between whole cells and homogenates. Pretreatment with phenobarbital for 3 days induced only the high-affinity site. Quantitation of C-OH formation in four human liver samples from several sources showed that metabolism may conform to the two-site model observed in rat liver.

Amobarbital↗

Simultaneous determination of antipyrine, 4-hydroxyantipyrine, 3-hydroxymethylantipyrine and norantipyrine in urine by gas chromatography chemical ionization mass spectrometry.

A simple, accurate and precise procedure was developed to quantify, in a single run, antipyrine, 4-hydroxyantipyrine, 3-hydroxymethylantipyrine and norantipyrine in urine. The stable isotope-labelled internal standards for the assay were obtained from a subject who ingested deuterium labelled antipyrine and produced urine containing the labelled drug and metabolites.

Antipyrine↗

The fate of phenobarbitone in children in hypothermia and at normal body temperature.

Four critically injured children receiving large doses of phenobarbitone were studied during hypothermia (30 degrees - 31 degrees C) and at normal body temperature. The volume of distribution of phenobarbitone varied from 0.79 to 1.01 litres per kg and the serum t 1/2 ranged from 36.8 +/- 9.4 to 86.2 +/- 10.5 hrs. The percentage of dose recovered in urine in 16 days ranged from 40.5 to 65.5 per cent: 2.7 to 12.4 per cent as hydroxyphenobarbitone, 1.7 to 19.7 per cent as conjugated hydroxyphenobarbitone, 6.0 to 22.4 per cent as phenobarbitone-N-glucoside and 17.8 to 23.1 per cent as unchanged drug. After the body temperature was allowed to return to normal the rate of excretion of metabolites increased substantially and the rate of excretion of the unchanged drug decreased markedly. It is concluded that reduction in body temperature influences the volume of distribution, rate of metabolism and excretion of phenobarbitone.

Adolescent↗