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Biomedical subjects

D J Back

Publications and source records attributed to D J Back.

At least 145 records · Page 8Linked to original sources

Evaluation of Committee on Safety of Medicines yellow card reports on oral contraceptive-drug interactions with anticonvulsants and antibiotics.

1. We have searched the adverse reactions register for the years 1968-84 in an attempt to evaluate data relating to reported pregnancies in women on oral contraceptive steroids (OCS) who concurrently received either an antiepileptic drug or an antibiotic. 2. A total of 43 pregnancies were reported in women on OC therapy who concurrently received antiepileptic drugs and 63 pregnancies in women receiving antibiotics. In addition the number of prescriptions for both antiepileptics and antibiotics in England are reported for the years 1973-84.

Anti-Bacterial Agents↗

In vitro inhibition studies of tolbutamide hydroxylase activity of human liver microsomes by azoles, sulphonamides and quinolines.

1. A number of compounds have been examined for their ability to inhibit tolbutamide hydroxylase activity in human liver microsomes (control value at a substrate concentration of 150 microM being 0.27 +/- 0.12 nmol min-1 mg-1 protein; mean +/- s.d.; n = 7). 2. IC50 (concentration of inhibitor producing 50% inhibition) values were determined for a range of sulphonamides, imidazoles and aminoquinoline compounds. The most potent inhibition was evident with the 1-substituted imidazole antimycotic drugs ketoconazole, clotrimazole and miconazole and the sulphonamide sulphaphenazole (IC50 values of 16.5, 2.5, 0.85 and 0.5 microM respectively). A number of compounds showed little or no inhibition of tolbutamide hydroxylase as judged by an IC50 of greater than or equal to 500 microM. 3. The Km value for tolbutamide hydroxylase was 125 microM and Vmax, 0.44 nmol min-1 mg-1 protein. All the substituted imidazoles examined in kinetic studies 1v vs 1s, Line-weaver-Burk plots) produced either non-competitive or mixed inhibition. The sulphonamides exhibited competitive inhibition, the Ki for sulphaphenazole being 0.22 microM. Primaquine showed mixed inhibition. Dixon plots confirmed the type of inhibition produced. 4. Although the competitive inhibition between some sulphonamides and tolbutamide is consistent with metabolism by the same isozyme of cytochrome P-450 it does not prove it and further studies with purified enzymes will be necessary to confirm this.

Adolescent↗

Inhibition of tolbutamide metabolism by antimalarial drugs.

The effects of mefloquine (MQ), the combination of MQ with sulfadoxine-pyrimethamine (MSP), sulfadoxine (S), pyrimethamine (P) quinine (Q) and quinidine (Qd) on in vitro hepatic metabolism has been studied using tolbutamide as a substrate. The hydroxylation of tolbutamide was determined in the presence of variable concentrations of each compound. Tolbutamide hydroxylase activity in control microsomes was 0.20 +/- 0.13 nmole/min/mg microsomal protein at a substrate concentration of 150 microM. All compounds studied inhibited tolbutamide metabolism as shown by a decrease in 4-hydroxytolbutamide formation. The order of potency of the inhibitors was MSP greater than S greater than MQ greater than Q greater than Qd greater than P. MQ, MSP, S, Q, and Qd were examined in detail for the type of inhibition. MQ and Qd were non-competitive inhibitors, whereas MSP and S were competitive inhibitors and Q was an uncompetitive inhibitor of tolbutamide 4-hydroxylation. These data provide more information on the inhibitory potential of some antimalarial drugs on microsomal enzymes in human liver. S has been shown to be a potent inhibitor in vitro and this finding possibly explains the longer T 1/2 and MRT of MQ when co-administered with S in healthy volunteers. Further studies in man should be attempted in order to understand the clinical relevance of the inhibitory potential of the antimalarial drugs.

Adult↗

The pharmacokinetics of mefloquine when given alone or in combination with sulphadoxine and pyrimethamine in Thai male and female subjects.

The kinetics of mefloquine were studied in 12 healthy Thai male and 12 healthy Thai female volunteers. Mefloquine (MQ) was administered either alone (750 mg orally) or in combination (MSP) with sulphadoxine (1.5 g) and pyrimethamine (75 mg) to each of 6 male and 6 female subjects. Plasma concentrations of MQ were measured by HPLC at intervals for 42 days. There was considerable interindividual variability in the pharmacokinetic parameters; for example in the male subjects receiving MQ alone peak concentrations ranged between 638 and 2494 ng X ml-1 with a mean concentration of 1442 ng X ml-1. Compared to previously published data on MQ concentrations in Caucasian male subjects, the present study indicates that higher concentrations are achieved in Thai subjects. The only significant difference in kinetic parameters between male and female subjects receiving MQ alone was in the mean residence time (MRT) which was greater in females. However, an analysis of pharmacokinetic parameters following administration of the combination preparation showed that the time to peak (tmax) was significantly reduced in females receiving MSP compared to the corresponding females given MQ alone and males given MSP. When data obtained from all subjects (male and female) receiving either MQ alone or MSP were combined, both MRT and half-life were significantly greater in subjects given MSP. There is therefore some evidence that therapeutic concentrations of MQ are maintained for a longer period of time following MSP administration.

Adult↗

Single dose primaquine has no effect on paracetamol clearance.

The kinetics of paracetamol and the formation of metabolites were evaluated in 6 healthy volunteers before and during concomitant administration of a single dose (45 mg) of primaquine. There was no effect of the antimalarial drug on either conjugation (to paracetamol glucuronide and paracetamol sulphate) or oxidation (as judged by the presence of paracetamol cysteine and paracetamol mercapturate) pathways. Although primaquine inhibits certain oxidative metabolism (e.g. of antipyrine) it has no effect, in therapeutic doses, on paracetamol metabolism.

Acetaminophen↗

Comparative pharmacokinetics of levonorgestrel and ethinyloestradiol following intravenous, oral and vaginal administration.

The plasma concentrations of levonorgestrel (LNG) and ethinyloestradiol (EE2) have been measured in a random crossover study in five healthy female volunteers given a combination oral contraceptive tablet (250 micrograms LNG and 50 micrograms EE2) by the oral route and per vaginum and also receiving the same dose intravenously. The fractional bioavailability of LNG after oral administration was 1.00 +/- 0.16 (mean +/- S.D.) and after vaginal insertion 0.88 +/- 0.16. The time to peak (tmax) was significantly longer and the peak concentration (Cmax) significantly reduced following vaginal administration. The fractional bioavailability of EE2 after oral dosing was 0.62 +/- 0.11 and after vaginal insertion 0.74 +/- 0.16; tmax was prolonged, hence absorption was slower from the vagina. The reduced rate of absorption was evident in the differences seen in the area under the curve for early time periods for both steroids. However, overall bioavailability is not reduced for either steroid when a single tablet is inserted into the vagina.

Administration, Intravaginal↗

The relative bioavailability of levonorgestrel and ethinylestradiol when administered in tablet and capsule form.

The relative bioavailability of levonorgestrel (LNG) and ethinylestradiol (EE2) administered as a conventional tablet (150/30) or capsule has been assessed in a randomized two-period crossover study in 9 healthy volunteer women. Serum concentrations were monitored for 24h post-dosing. There was no significant difference in any of the pharmacokinetic parameters determined for either steroid. Hence the relative bioavailability is similar after tablet and capsule formulations.

Adolescent↗

Plasma concentrations of 3-keto-desogestrel after oral administration of desogestrel and intravenous administration of 3-keto-desogestrel.

The plasma concentrations of 3-keto-desogestrel have been measured by radioimmunoassay in a crossover study in nine healthy female volunteers given oral desogestrel (150 micrograms) and ethinyloestradiol (30 micrograms) and intravenous (i.v.) 3-keto-desogestrel (150 micrograms) and ethinyloestradiol (30 micrograms). Bioavailability ranged between 40.0 and 113% with a mean value ( +/- SD) of 76.1 +/- 22.5%. Only 3 subjects had a bioavailability of less than 70%. There was no significant difference in the elimination half life of 3-keto-desogestrel which was 12.6 +/- 4.1h following i.v. administration and 11.9 +/- 4.1h after oral administration of desogestrel.

Administration, Oral↗

Review: first-pass metabolism by the gastrointestinal mucosa.

The bioavailability of orally administered drugs may be reduced due to presystemic elimination. The first-pass effect can occur in the gastrointestinal tract, the liver and lung. Although the liver is the main drug metabolizing organ in the body, the gut wall can play an important role in the first-pass metabolism of certain drugs. Both phase I (preconjugation) and phase II (conjugation) reactions have been described. However, while the oxidative metabolic capacity of the intestinal mucosa is considerably smaller than that of the liver, the activity of conjugation reactions in the gut may be close to that of the liver, and in some cases may exceed it. Sulphate conjugation is particularly important for steriod hormones such as ethinyloestradiol, and for the beta-adrenoceptor stimulants isoprenaline and isoetharine. Glucuronidation has been demonstrated to occur in man for morphine, paracetamol and oestrogens. Significant drug--drug interactions have been described involving drugs undergoing sulphate conjugation. The study of intestinal metabolism in vivo is difficult in man since direct methods (for example, hepatic portal vein catheterization) is justified in only a small number of patients. Therefore, much of our present understanding has been derived from various in-vitro studies involving intestinal sheets, mucosal biopsies, isolated enterocytes and microsomal preparations.

Animals↗

The metabolism of 17 alpha-ethinyloestradiol by human liver microsomes: formation of catechol and chemically reactive metabolites.

The metabolism of 17 alpha-ethinyloestradiol (EE2) to catechol and reactive metabolites by human liver microsomes was investigated. 2-Hydroxyethinyloestradiol (2-OHEE2) was either the sole or principal metabolite. Small amounts of 6-hydroxyethinyloestradiol and 16-hydroxyethinyloestradiol were produced by some of the livers. EE2 (10 microM) underwent substantial (5-20% of incubated drug), though highly variable, NADPH-dependent metabolism to material irreversibly bound to microsomal protein. 2-OHEE2 appeared to be the pro-reactive metabolite. The maximum EE2 2-hydroxylase activity was 0.67 nmol min-1 mg-1 microsomal protein, with a Km value of 8.6 microM. Oestradiol, which is mainly hydroxylated to 2-hydroxyoestradiol, was the most potent inhibitor of hydroxylase activity and exhibited competitive inhibition. Progesterone, which undergoes 2-hydroxylation to a minor extent was also a competitive inhibitor, whereas cholesterol and cortisol did not have any appreciable inhibitory effect. Primaquine was the most potent non-steroidal inhibitor but was non-competitive. Other non-steroidal compounds investigated, e.g. antipyrine, did not show any significant effect on EE2 2-hydroxylation. The results of this study suggest that EE2 2-hydroxylation is metabolised by a form(s) of cytochrome P-450 which has affinity for endogenous steroids.

Adolescent↗

Plasma and whole blood mefloquine concentrations during treatment of chloroquine-resistant falciparum malaria with the combination mefloquine-sulphadoxine-pyrimethamine.

Mefloquine-sulphadoxine-pyrimethamine (MSP) in combination has proved effective against multiple-drug-resistant falciparum malaria, but nothing is known about mefloquine absorption when it is given in this formulation. Nine Thai patients, aged 15-51 years with uncomplicated chloroquine-resistant falciparum malaria, took 11.2-16.7 mg of mefloquine base per kilogram bodyweight as MSP tablets. All patients responded to treatment with fever and parasite clearance times of 61 +/- 29 h (mean +/- s.d.) and 52 +/- 24 h, respectively. The mean apparent absorption half-time (t1/2abs) of mefloquine was 4.89 h (range 2.25-9.72) and mean peak plasma concentration was 1815 ng ml-1 (range 725-3368). Peak plasma mefloquine concentrations in three patients who vomited within 2 h of treatment were 725, 956 and 1972 ng ml-1. There was no significant difference between plasma and whole blood mefloquine concentrations during the first 48 h of treatment. Based on the elimination of parasitaemia, the plasma mefloquine concentrations are adequate for therapy of uncomplicated falciparum malaria although the relationship between plasma concentrations and therapeutic efficacy of mefloquine requires further study.

Adolescent↗

Paracetamol interaction with oral contraceptive steroids: increased plasma concentrations of ethinyloestradiol.

The effect of a single dose of paracetamol (1 g) on plasma concentrations of the oral contraceptive steroids ethinyloestradiol (EE2) and levonorgestrel (LNG) has been studied in six healthy female volunteers. The area under the plasma concentration-time curve (AUC0-24) of EE2 was significantly increased following paracetamol administration by 22% (control 2221 +/- 291; following paracetamol, 2702 +/- 452 pg ml-1 h; mean +/- s.d.; P less than or equal to 0.05). The greatest effect was evident in the time period 0-3 h. There was a significant decrease in the AUC of EE2-sulphate after paracetamol (7736 +/- 3791 pg ml-1 h) compared with control (13161 +/- 4535 pg ml-1 h; P less than or equal to 0.05). Plasma concentrations of LNG were unaltered by concurrent paracetamol administration. We conclude that the administration of a single 1 g dose of paracetamol causes an increase in plasma concentrations of EE2 as a result of a reduction in the sulphation of the steroid. This interaction may be of clinical significance in women on oral contraceptive steroids who regularly take paracetamol.

Acetaminophen↗

Intestinal metabolism of ethinyloestradiol and paracetamol in vitro: studies using Ussing chambers.

The intestinal mucosal metabolism of ethinyloestradiol (EE2) and paracetamol (P) has been studied in vitro in Ussing chambers. Histologically normal jejunum or ileum was obtained from 19 patients undergoing various resections. The muscularis externa was stripped off the mucosa and the mucosal sheets mounted between two perspex chambers. Tissue viability was routinely assessed by measurement of the transmural potential difference. The percentage of steroid in the serosal chamber, 2 h after addition of EE2 (2 microCi; 80 ng) to the mucosal chamber was 2.3 +/- 0.8% (mean +/- s.d.) which comprised unconjugated drug (0.4 +/- 0.3%), sulphate conjugates (0.7 +/- 0.5%) and glucuronides (0.9 +/- 0.8%). In the mucosal chamber, 56.6 +/- 11.4% was unconjugated steroid, 33.3 +/- 12.4% sulphate conjugates and 2.1 +/- 2.3% glucuronides. Small amounts of the oxidation products 2-hydroxy and 16-hydroxy-EE2 were present. At 2 h, the percentage of paracetamol in the serosal chamber was 3.2 +/- 1.4% (of added P; 2 microCi; 50 ng) of which 0.5 +/- 0.3% was paracetamol sulphate (PS) and 0.1% was paracetamol glucuronide (PG). In the mucosal chamber 2.4 +/- 0.8% and 1.0 +/- 0.2% was present as PS and PG respectively. The total amount of paracetamol conjugated was approximately 4.0%. When paracetamol in the mucosal chamber was increased to 50 micrograms (i.e. by a factor of 1000) there was a decrease in the percentage of added drug metabolized to PS and an increase in formation of PG. The glucuronide:sulphate ratio was increased from 0.34 to 3.56. Competition for sulphation was evident when both paracetamol and EE2 were presented to the intestinal mucosa.(ABSTRACT TRUNCATED AT 250 WORDS)

Acetaminophen↗

Tolbutamide 4-hydroxylase activity of human liver microsomes: effect of inhibitors.

Eight samples of human liver have been characterised for microsomal protein content, cytochrome P-450 content, tolbutamide 4-hydroxylase and ethinyloestradiol 2-hydroxylase activities. Cytochrome P-450 content correlated significantly with ethinyloestradiol 2-hydroxylase activity but not with tolbutamide 4-hydroxylase activity. There was no significant correlation between ethinyloestradiol 2-hydroxylase and tolbutamide 4-hydroxylase activities. The maximum tolbutamide 4-hydroxylase activity was 0.45 nmol min-1 mg-1 microsomal protein, with a Km value of 74 microM. A number of compounds were tested for their ability to inhibit tolbutamide metabolism. All the compounds showing inhibition were either non-competitive or mixed non-competitive inhibitors of tolbutamide 4-hydroxylation. These studies suggest that tolbutamide is metabolised by an isozyme of cytochrome P-450 which appears to be distinct from those isozymes metabolising many other drugs.

Adolescent↗

Pharmacokinetics of contraceptive steroids in patients with cystic fibrosis.

The pharmacokinetics of the commonly used contraceptive steroids ethinyloestradiol and levonorgestrel were investigated after oral and intravenous administration in six women with cystic fibrosis. The results were compared with data obtained from healthy women of similar age. The total body clearance of ethinyloestradiol was significantly higher in the patients with cystic fibrosis (0.61 (SD 0.19) l/h/kg) than in control women (0.32 (0.16) l/h/kg; p less than 0.02). In addition, the oral bioavailability of ethinyloestradiol was greater in women with cystic fibrosis than in controls (76.9% (11.7%) compared with 47.3% (7.5%); p less than 0.001). As a result of these two changes, the area under the plasma concentration--time curve after an oral dose of ethinyloestradiol was similar in patients and controls. The pharmacokinetics of levonorgestrel did not differ significantly between patients with cystic fibrosis and healthy women. The data suggest that women with cystic fibrosis will receive similar contraceptive protection from these steroids as do healthy women.

Adult↗

Inhibition of ethinyloestradiol and tolbutamide metabolism by quinoline derivatives in vitro.

The effects of the quinoline derivatives amodiaquine (AQ), chloroquine (CQ), mefloquine (MQ), primaquine (PQ), quinine (Q) and quinidine (QD) on in vitro hepatic metabolism has been studied using as substrates ethinyloestradiol (EE2) and tolbutamide (TOL). The 2-hydroxylation of EE2 and the hydroxylation of TOL were determined in the presence of variable concentrations of each compound. MQ, PQ, AQ and Q significantly inhibited EE2 metabolism at each of the concentrations studied (0.1, 0.2 and 0.5 mM) as shown by an increase in the percentage of unmetabolised EE2. QD significantly inhibited metabolism at 0.2 and 0.5 mM but CQ was without effect. In terms of recovery of 2-OHEE2, PQ was the most potent inhibitor. At an inhibitor concentration of 0.5 mM the order of potency was PQ greater than or equal to MQ greater than or equal to Q greater than or equal to QD greater than or equal to AQ greater than or equal to CQ. TOL hydroxylase activity in control microsomes was 1.52 +/- 0.33 nmol. min-1 X mg protein-1. The order of potency of the inhibitors (0.5 mM) was PQ greater than or equal to MQ greater than or equal to Q greater than or equal to QD greater than or equal to AQ greater than or equal to CQ. These data provide further evidence of the inhibitory potential of some of the quinoline derivatives. PQ, MQ, and to a lesser extent Q produce the most marked inhibitory effects. QD and AQ are of intermediate potency and CQ is essentially non-inhibitory.

Animals↗