Search PubMed⌕ Search

Biomedical subjects

R F Witkamp

Publications and source records attributed to R F Witkamp.

53 records · Page 3Linked to original sources

Dose-dependent pharmacokinetic interaction between antipyrine and paracetamol in vivo and in vitro when administered as a cocktail in pig.

1. The pharmacokinetic interactions between paracetamol (PA) and antipyrine (AP) were studied in pigs in order to investigate the usefulness of this combination for the simultaneous assessment of oxidative and conjugative metabolism. 2. When both drugs were given at a dose of 5 mg/kg, AP plasma clearance was reduced from 2.22 to 0.96 lh-1 kg-1. PA clearance was not changed in comparison with control values. 3. At a dose of 2 mg/kg no pharmacokinetic interaction between the two drugs was observed. 4. The only oxidative AP metabolite found in urine was 4-hydroxyantipyrine (4-OHA). It accounted for 80% of the dose and, like PA, it was completely glucuronidated. 5. The glucuronidation of PA has been studied in vitro in pig liver microsomes. The apparent Km value for PA glucuronidation was 40 mM with a Vmax = 54 nmol min-1 mg protein-1. To determine if 4-OHA and PA competed for the same UDP-glucuronosyl-transferase, the effect of 4-OHA and AP on PA glucuronidation was studied. It appeared that 4-OHA was a competitive inhibitor with a Ki app = 0.07 microM, whereas AP had no effect. 5. Results suggest a dose-dependent interaction between AP and PA, which may be due to competition at the level of glucuronidation. Therefore, the usefulness of AP and PA in vivo in a cocktail for metabolism studies is limited.

Acetaminophen↗

Selective changes in oxidative xenobiotic metabolism in vivo and in vitro after parenteral administration of recombinant bovine somatotrophin to rats.

Effects of recombinant bovine somatotrophin (rBST) on in vivo and in vitro oxidative drug metabolism were studied in male rats. rBST was given subcutaneously at a dose of 250 or 500 micrograms 100 g-1 bodyweight 24 h-1 in different dosage patterns. Sulphadimidine (SDD) plasma clearance, urinary excretion of 6-hydroxy-SDD and the in vitro microsomal SDD-hydroxylations were only inhibited when rBST was given in three injections per 24 hours. The hepatic microsomal ethylmorphine N-demethylation rate and the testosterone hydroxylation rate at the 6 beta position were significantly reduced after one rBST injection per 24 hours. Microsomal testosterone hydroxylation rates at the 16 alpha and 2 alpha-positions were reduced depending on the frequency of rBST administration. It is concluded that the inhibition of in vivo and in vitro drug oxidation in rats by rBST is associated with selective changes in activity of cytochrome P450 enzymes in the liver.

Administration, Oral↗

Effect of gonadal hormones on the plasma clearance and metabolite formation of antipyrine in the dwarf goat.

The effect of gonadal hormones on the plasma elimination and urinary metabolite profile of antipyrine was studied in dwarf goats. Female goats were treated with testosterone and male goats were treated with 17 beta-oestradiol. Castrated males were treated with either testosterone or 17 beta-oestradiol. Antipyrine (25 mg/kg, i.v.) was given both before and after the hormonal treatments. The effects of the hormonal status on the plasma elimination of the parent compound were not consistent. This was possibly due to the fact that formation of the main metabolite of antipyrine in the goat, 4-hydroxy antipyrine (OHA), was not affected by sex or hormonal treatment. On the other hand, there were clear effects of hormonal status on urinary excretion of the three other metabolites. In females and castrated males testosterone suppressed the formation of norantipyrine (NORA), 3-hydroxymethylantipyrine (HMA) and 4,4'-dihydroxyantipyrine (DOHA). Intact males produced smaller amounts of these metabolites than females. It is concluded that distinct xenobiotic metabolizing pathways exist in the dwarf goat, which are influenced in their activity by gonadal hormones. This confirms previous findings in rats and mice. The possibility that sex hormones influence drug metabolism in food-producing animals could have consequences for veterinary therapeutics and public health. This study also demonstrates that, when using the antipyrine test for the assessment of hepatic drug metabolism, it is very important to include the determination of metabolites.

Animals↗

Hormonal regulation of oxidative drug metabolism in the dwarf goat. The effect of sex and hormonal treatment on plasma disposition and metabolite formation of sulphadimidine.

Sulphadimidine (20 mg/kg i.v.) plasma elimination and metabolite formation were studied in intact male, castrated male, and female dwarf goats. Plasma pharmacokinetics and urinary metabolite patterns were first studied in untreated animals. Afterward, females and castrated were treated with a combination of testosterone-propionate (1 mg/kg) and 17 beta-oestradiol-benzoate (0.02 mg/kg) once every 3 days, for a period of 4 weeks. In untreated animals, males showed a considerably lower plasma clearance than females or castrates. This was accompanied by lower partial clearances for the production of two hydroxylated sulphadimidine metabolites. After hormonal treatment of females and castrates, sulphadimidine plasma clearance was significantly reduced, to values corresponding with those observed in control males. Furthermore, hydroxylation was significantly inhibited after treatment. The results indicate that sulphadimidine hydroxylation in the goat is performed by enzymes of the cytochrome P450 complex which are strongly influenced by gonadal hormones. Androgens seem to play a central role in this respect.

Animals↗

The regulation of oxidative drug metabolism by growth hormone in the dwarf goat: differences from and similarities to the mechanisms in rats.

The effects of bovine GH (BST), administered in different dose patterns, on in-vivo oxidative drug metabolism, were studied in female dwarf goats. Animals received recombinantly derived methionyl BST at a dose of 500 micrograms/kg body weight per 24 h for 6 days. It was administered to one group of goats as one s.c. injection per day, another group received a similar 24-h dose divided into three s.c. injections given at 8-h intervals, and the third group received 50 micrograms BST/kg body weight every 2.5 h by a pulsative i.v. infusion. Oxidative metabolic capacity was assessed by determining plasma sulphadimidine (SDD) elimination and urinary metabolite excretion. SDD shows a marked sex-dependent plasma elimination in dwarf goats, with male goats having a lower plasma clearance than female goats. When BST was given by daily injection, no clear effects on SDD plasma clearance or urinary metabolite excretion were observed. However, when the total dose was divided into three injections given at 8-h intervals, the plasma SDD elimination rate decreased. This was associated with a decrease in urinary excretion of the two main hydroxy SDD metabolites. When BST was given by discontinuous i.v. infusion, simulating the male endogenous plasma GH pattern, a marked decrease in SDD plasma clearance was observed. In addition, the excretion of the two urinary hydroxy metabolites was considerably reduced. These results suggest that GH can affect drug oxidation in dwarf goats via mechanisms similar to those suggested for rats. However, in the dwarf goat, the sex differences in drug metabolism are opposite to those in rats.

Animals↗

Regioselective O-demethylation of scoparone (6,7-dimethoxycoumarin) to assess cytochrome P450 activities in vitro in rat. Effects of gonadal steroids and the involvement of constitutive P450 enzymes.

1. In the rat, scoparone (6,7-dimethoxycoumarin) is regioselectively O-demethylated in vitro by the hepatic cytochrome P450 (P450) system, yielding isoscopoletin and scopoletin. 2. Scoparone has been proposed as an indicator substrate for the assessment of P450 differentiation in vitro in rat. It has been suggested that isoscopoletin formation mainly reflects activity of enzymes of the P4501A subfamily, whereas scopoletin formation has been associated with P4502B activity. 3. In the present study, rate of formation of scopoletin and isoscopoletin were measured in hepatic microsomes from male, female and castrated male rats, in castrates treated with testosterone, in males treated with oestradiol, and in females treated with testosterone. Furthermore, effects of induction by phenobarbital (PB), beta-naphthoflavone (BNF), isoniazid, triacetyloleandomycin, and dexamethasone were studied in both sexes. 4. Scoparone metabolism was partly sex- and steroid-dependent. Variation of isoscopoletin formation with sex or hormonal status correlated well with ethylmorphine demethylation. 5. Scoparone-O-demethylation was regioselectively induced by PB and BNF. Induction effects were not very large and showed no sex differences. 6. Microsomal metabolism of scoparone was partly inhibited by a monoclonal antibody against P4502C11. Scopoletin and isoscopoletin formation were inhibited when ethylmorphine was added to the incubation mixture. Scoparone competitively inhibited testosterone 6 beta-hydroxylation. 7. It is concluded that a number of P450 enzymes, including those which are constitutively expressed, contribute to the biotransformation of scoparone. This lack of selectivity limits the usefulness of scoparone as a general indicator substrate for P450 differentiation in rats.

Animals↗

Metabolism of antipyrine and sulphadimidine in dwarf goats: effects of the enzyme-inducing agents phenobarbital, troleandomycin and rifampicin.

1. Antipyrine (AP) and sulphadimidine (SDD) plasma elimination and metabolite formation were studied in dwarf goats before and after treatment with phenobarbital (PB), triacetyloleandomycin (TAO), and rifampicin (RIF). 2. PB treatment significantly increased AP plasma clearance in both male and female goats. With SDD, only male goats were studied, which showed a significant increase of SDD plasma clearance following PB treatment. 3. After PB treatment, partial clearance values of four AP metabolites, 3-hydroxymethylantipyrine (HMA), norantipyrine (NORA), 4-hydroxyantipyrine (OHA) and 4,4'-dihydroxyantipyrine (DOHA), were significantly increased. This induction effect was different for the individual metabolites and also showed sex-dependency. 4. In PB-induced male goats the formation of the hydroxylated SDD metabolites, 6-hydroxymethyl-SDD and 5-hydroxy-SDD, was significantly increased. 5. After TAO treatment, female goats showed a slightly reduced AP plasma clearance and a decreased partial clearance of two AP metabolites, HMA and DOHA. There was no effect on SDD plasma elimination or metabolite excretion. 6. In male goats, RIF had no effect on plasma elimination of AP and SDD. With SDD, it decreased the urinary excretion of the unchanged drug and its N4-acetylated metabolite. 7. Induction/inhibition studies of drug metabolism in food-producing animal species are desirable to gain more insight into the regulation of enzymes involved in the metabolism of xenobiotics.

Animals↗

Comparative aspects and sex differentiation of plasma sulfamethazine elimination and metabolite formation in rats, rabbits, dwarf goats, and cattle.

Plasma disposition and urinary recovery of sulfamethazine (SMZ), its N4-acetylated metabolite (N4AcSMZ), and 2 of its hydroxylated metabolites--5-hydroxysulfamethazine (5OHSMZ) and 6-hydroxymethylsulfamethazine (6CH2OHSMZ)--were determined in either sex of 4 animal species: rats, dwarf goats, rabbits, and cattle. Rats, rabbits, and dwarf goats had significant (P < 0.01) sex difference in SMZ plasma clearance. Male rats had higher plasma clearance than did female rats, and excreted higher amounts of the hydroxy metabolites and lower amounts of N4AcSMZ. The N4AcSMZ metabolite was predominant in plasma and urine of rabbits. Male rabbits had higher plasma clearance than did female rabbits, but differences in metabolite profile were not apparent. With regard to plasma SMZ elimination, the situation in goats was opposite to that in rats. Male goats had considerably lower clearance than did female goats. This was associated with a lower hydroxylation rat in males. Plasma half-life of SMZ in cows was lower than that in bulls, probably because of a smaller distribution volume in cows. Compared with elimination via urine, elimination via milk was negligible in cows. Significant differences in metabolite profiles were not found between bulls and cows. Similar to those in rats and mice, hormone-dependent xenobiotic metabolic pathways may exist in other species. Depending on species and xenobiotic compound residue concentrations of xenobiotics, their metabolites, or both may differ with sex of the animal, or may be altered after treatment with anabolic hormones.

Animals↗

Effects of triiodothyronine treatment on pharmacokinetic properties and metabolite formation of antipyrine in dwarf goats.

The influence of triiodothyronine (5 micrograms/kg of body weight, sc, q 12 h for 7 days) on antipyrine (AP, 25 mg/kg, IV) plasma elimination and urinary metabolite excretion was studied in castrated male dwarf goats. After triiodothyronine treatment, a significant increase in AP elimination was found. However, the observed changes in clearances for production of AP metabolites (nor-AP, 3-hydroxymethyl-AP; 4-hydroxy-AP, and 4,4'-dihydroxy-AP) do not suggest a clear selectivity of triiodothyronine toward any of the metabolic pathways of AP.

Animals↗

Effects of Ehrlichia phagocytophila infection on serum thyroid hormone concentrations and on antipyrine clearance and metabolite formation in dwarf goats.

The influence of infection with Ehrlichia phagocytophila (EP) on serum thyroid hormone concentrations and on antipyrine (25 mg/kg of body weight, IV) plasma elimination and urinary metabolite excretion was studied in castrated male dwarf goats. Mean thyroid hormone concentrations moderately decreased in EP-infected goats, with maximal decrease in total and free triiodothyronine and thyroxine serum concentrations of 56, 64, 23, and 19%, respectively. The estimated pharmacokinetic values of antipyrine (AP) in EP-infected goats were similar to those in the goats when healthy. However, glucuronidation of the AP-metabolites 3-hydroxymethyl-AP, 4,4'-dihydroxy-AP, and 4-hydroxy-AP was reduced during the febrile episode of the acute-phase response to EP infection.

Acute-Phase Reaction↗

High-performance liquid chromatographic method for the routine determination of sulphadimidine, its hydroxy metabolites and N4-acetylsulphadimidine in body fluids and cell culture media.

A simple high-performance liquid chromatographic method is presented for the determination of trace amounts of sulphadimidine (SDD), its hydroxylated metabolites and N4-acetyl-SDD in blood plasma, urine, hepatocyte culture media and microsomal incubations. The synthesis of 5-hydroxy-SDD and an improved method for the isolation of 4-methylhydroxy-SDD from urine are described and their respective specific absorption coefficients at 265 nm are calculated by on-line radiochemical and ultraviolet detection. The limit of detection of the analytical method is 0.05 micrograms/ml for SDD and its hydroxy metabolites and 0.2 micrograms/ml for N4-acetyl-SDD. Linear calibration graphs for SDD and its metabolites were constructed from 0.2 to 50 micrograms/ml. The method has been applied to biotransformation studies in vivo and in vitro.

Animals↗

Species- and sex-related differences in the plasma clearance and metabolite formation of antipyrine. A comparative study in four animal species: cattle, goat, rat and rabbit.

1. The plasma disposition of antipyrine, and its urinary metabolite pattern, were studied in both sexes of four animal species: rat, dwarf goat, rabbit and cattle. 2. No sex differences in plasma elimination of antipyrine were found in rabbit and goat; however, in rat and cattle the effect of sex was marked. As expected, male rat showed a higher plasma clearance value than female. In contrast bulls showed a significantly lower clearance value than cows. 3. Metabolite patterns varied widely from one species to another. The major urinary metabolite in rabbit and the two ruminant species was 4-hydroxy-antipyrine (OHA), whereas in rat 3-hydroxymethylantipyrine (HMA) was quantitatively the most important metabolite. 4. HMA was excreted in the 24 h urine in larger amounts by male rats than by females. Metabolism of antipyrine to HMA was also sexually different in the dwarf goat, but in this species females were more active than males. The effect of sex on the metabolite pattern in cattle was marked. 5. It is concluded that in ruminants there may be xenobiotic metabolic pathways which are under hormonal control, just as there are in rats and mice. If hormones influence drug metabolism in food-producing animals, residue levels of xenobiotics or their metabolites in food from animal origin may differ with the sex of the animal, or may be altered after treatment with anabolic hormones.

Animals↗

[Toxicological and pharmacological effects of the use of bovine somatotropin in dairy farming].

Some possible toxicological and pharmacological consequences of the use of bovine growth hormone (BST) synthesised using recombinant DNA techniques are discussed in the present paper. Three spheres of interest are reviewed. Target species: When BST is used correctly, negative effects on the target species are unlikely to occur. Obscurity may to some extent remain as regards the effect of BST on the immune system. Residues of BST and IGF: There is nothing to suggest that the BST levels in the milk will increase significantly following BST treatment. Slight elevations of the levels of IGF-1 (one of the so-called somatomedins) in the milk following treatment with BST have been reported. However, the concentration of IGF-1 that is reached after the correct use of BST is still lower than that in milk collected during early stages of lactation. As a result of the peptide character of BST and IGF-1, absorption by healthy human individuals is unlikely to occur. The relevance of the problem of BST and/or IGF-1, absorption from milk by some individuals such as young infants is also discussed in this paper. Interaction with the metabolism of drugs: A possible interaction between BST and drugs which are administered to the animal at the same time, as is observed in rats and occasionally also in human subjects could have consequences for the clinical effectiveness, side-effects and drug residues in food products of animal origin. So far, however, an interaction of this type could not be detected in ruminants. At the present time, this phenomenon is being studied in greater detail.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Has bovine somatotropin (BST) an effect upon drug disposition? Comparative studies in goats and cattle with sulphadimidine and antipyrine after parenteral administration of BST, zeranol and proligestone.

Daily subcutaneous BST injection in lactating cows, bulls and castrated male dwarf goats did not induce significant changes in the pharmacokinetic parameters of antipyrine (AP) and sulphadimidine (SDD). Similarly, no changes were obtained after injection of slow-release BST formulations in lactating cows and non-lactating female goats. In contrast to androgenic hormones, both zeranol and proligestone had no effect upon the disposition of AP and SDD, although both synthetic hormones did induce enhanced plasma somatotropin concentrations. In goats, metabolic effects induced by zeranol and BST included significant reductions in plasma urea values, whereas plasma creatinine levels were somewhat lower after daily BST administration.

Animals↗

The effect of sulfaphenazole and sulfadoxine on tolbutamide disposition in dwarf goats (Caprus hircus aegagrus).

The aim of the present study was to investigate the effects of intravenously administered sulfadoxine (5 mg kg-1 bodyweight) or sulfaphenazole (5 mg kg-1 bodyweight) on the in vivo elimination of i.v. tolbutamide (5 mg kg-1 bodyweight), as both compounds were shown to inhibit tolbutamide hydroxylation in vitro. It was shown that relative large differences in tolbutamide clearance exist among goats (n = 6). A high correlation was seen between tolbutamide and sulfadoxine clearances. Tolbutamide clearance was significantly reduced by concommitant administration of sulfaphenazole. Sulfadoxine (SDX) had a less consistent effect. Mean tolbutamide plasma clearance was not significantly affected due to the fact that three animals showed an inhibition, whereas three others apparently did not respond. A negative correlation was found between the amount of N4-acetyl SDX in urine and the SDX clearance. Approximately 93 per cent of tolbutamide was bound to plasma proteins. However, there was no evidence for displacement of tolbutamide from its protein binding sites by sulfaphenazole or sulfadoxine. The results described in the present study confirm previous in vitro data obtained with goat hepatocytes. Although quantitative differences in inhibition exist between in vivo and in vitro results, hepatocytes are a good model to study potential drug-drug interactions at the level of biotransformation processes.

Animals↗

Participation of beta-adrenergic receptors on macrophages in modulation of LPS-induced cytokine release.

For several years it is known that beta-adrenergic receptor agonists have anti-inflammatory effects. However, little is known about the role of beta-adrenergic receptors on macrophages in the modulation of cytokine production by beta-agonists during inflammation. In this study, the presence of beta-receptors on PMA-differentiated U937 human macrophages, and the participation of these receptors in the modulation of LPS-mediated cytokine production by beta-agonists was investigated. Total beta-receptor expression on undifferentiated (monocyte) and PMA-differentiated U937 cells was established using receptor binding studies on membrane fractions with a radio ligand. The expression of beta-receptors proved to be significantly lower on monocytes than on macrophages, additionally a predominant expression of beta 2-receptors was found. Production of the cytokines TNF-alpha, IL-6, and IL-10 by LPS-stimulated differentiated U937 cells was measured in time. Peak concentrations for TNF-alpha, IL-6 and IL-10 occurred at 3, 12 and 9 hrs, respectively. When differentiated U937 cells were incubated with both LPS and the beta-agonist clenbuterol the production of TNF-alpha and IL-6 was significantly reduced. However the production of IL-10 was increased. To study the mechanism of modulation of cytokine production in more detail, U937 macrophages were incubated with LPS/clenbuterol in combination with selective beta 1- and beta 2-antagonists. These results indicated that the beta 2- and not the beta 1-receptor is involved in the anti-inflammatory activity of clenbuterol.

Adrenergic beta-Agonists↗

Sulfamethazine as a model compound to assess sex hormone-dependent cytochrome P-450 activity in rats.

Plasma disposition and urinary recovery of sulfamethazine (SMZ), its N4-acetylated metabolite (N4AcSMZ), and two of its hydroxylated metabolites [5-hydroxysulfamethazine (5OHSMZ) and 6-hydroxymethylsulfamethazine (6CH2OHSMZ)] were determined in male and female rats, in castrated males, and in rats pretreated with various steroid hormones. Male rats had a 2-fold higher SMZ plasma clearance than females, castrates, and males treated with flutamide (a testosterone antagonist). When castrated male rats were treated with testosterone or trenbolone, SMZ plasma clearance returned to normal values. Higher SMZ plasma clearance rates in the presence of androgens went together with higher urinary recoveries of the 6CH2OHSMZ metabolite. In hepatic microsomes of male rats lower apparent KM values, and higher Vmax values for 6CH2OHSMZ and 5OHSMZ formation were found than in microsomes of female rats. Castration or treatment of male rats with flutamide markedly reduced microsomal SMZ hydroxylation rates. Pretreatment of male or female rats with phenobarbital or triacetyl-oleandomycin had no effect on microsomal SMZ hydroxylation, whereas a continuous infusion with bovine somatotropin in male rats caused a marked decrease in SMZ hydroxylation rate. Finally, SMZ hydroxylation to 6CH2OHSMZ and 5OHSMZ in hepatic microsomes from male rats was strongly inhibited by monoclonal antibodies against P-4502C11. These results suggest that the male-specific P-4502C11 enzyme plays an important role in the hydroxylation of SMZ to 6CH2OHSMZ and 5OHSMZ in rats. SMZ seems a useful model compound to assess hormone effects on oxidative biotransformation (in vivo and in vitro) in rats.

Animals↗