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Biomedical subjects

O Shaheen

Publications and source records attributed to O Shaheen.

At least 19 recordsLinked to original sources

Atypical ameloblastoma: report of 3 cases and a review of the literature.

This paper presents 3 atypical ameloblastomas which had a fatal outcome. One had histological features indicative of malignancy but without metastasis, another developed pulmonary metastasis and the third died of extensive infiltration of the skull base. The features of malignant ameloblastoma are discussed and reported cases of malignant ameloblastoma between 1966 and 1993 are reviewed.

Adult↗

Pharmacokinetics and pharmacodynamics of two commercial oral nifedipine products.

Nifedipine, a calcium channel blocker, is widely used in the management of hypertension, angina and cardiac arrhythmias. In this study, the bioequivalence of two pharmaceutical formulations of nifedipine, Nifecard (10 mg capsules) manufactured by Dar Al-Dawa Development and Investment Co, Ltd. and Adalat (10 mg capsules) manufactured by Bayer Pharmaceutical Company, was assessed in twelve healthy male subjects. Nifecard or Adalat was given orally on two occasions separated by one week wash-out interval. Blood samples for the determination of plasma nifedipine concentration were taken for 8 hours following drug administration. Blood pressure and pulse were also measured after each treatment. Plasma nifedipine concentrations were measured by a simple, sensitive and reproducible HPLC method. There were no significant differences in oral absorption, Cmax, tmax, t1/2 and AUC between Nifecard and Adalat. Also, Nifecard and Adalat produced similar hemodynamic profiles (blood pressure and pulse). In conclusion, our results demonstrate that both Adalat and Nifecard are bioequivalent and produced similar pharmacological effects.

Administration, Oral↗

Influence of debrisoquin phenotype on the inducibility of propranolol metabolism.

The effects of rifampin (600 mg) once daily for 22 days on the total and fractional metabolic clearances of propranolol were determined in a group of six genetically extensive (EM) and six poor metabolizers (PM) of debrisoquin. The impaired ability of PMs to metabolize propranolol to the ring-oxidized metabolite 4-hydroxypropranolol was confirmed. The total oral clearance of propranolol increased about fourfold in both phenotypes from 219.2 +/- 52.8 to 976.7 L/hr in the EMs and from 75.0 +/- 12.6 to 289.8 +/- 78.2 L/hr in the PMs. The extent of induction of glucuronidation was similar in the two groups. 4-Hydroxylation was induced in both phenotypes but the increase was fifteenfold greater in EMs than in PMs. This would imply that the cytochrome P-450 determined by the debrisoquin allele or some coinherited 4-hydroxylase(s) was induced to a greater extent in EMs than PMs.

Adult↗

Effect of cimetidine on the pharmacokinetics of theophylline.

1. The effect of the therapeutic doses of cimetidine (400 mg/twice daily) on theophylline metabolism in Jordanian volunteers was studied. 2. The administration of the above therapeutic cimetidine dose did not alter theophylline clearance and elimination half-life. 3. Cimetidine administration also failed to alter the elimination of theophylline metabolites in urine.

Adult↗

Intersubject variability in plasma theophylline levels after oral and intravenous administration in Jordanian patients with chronic obstructive pulmonary disease.

Plasma theophylline concentrations were determined in 151 Jordanian patients with chronic obstructive pulmonary disease. Mean plasma levels after oral administration were below the therapeutic range and significantly lower than after intravenous administration. Plasma levels in patients with congestive heart failure (CHF) were higher than in patients with no CHF. Trough plasma theophylline concentrations after intravenous administration in patients less than 18 years of age were significantly lower than in those aged 18-60 years. The overall results are in agreement with observations made in other ethnic groups.

Administration, Oral↗

Pharmacokinetics of high and moderate intravenous doses of methotrexate.

The pharmacokinetic parameters of methotrexate in nine cancer patients receiving 250-2500 mg/day were investigated. Both elimination rate constants and half-lives were calculated using a two-compartmental open model. The plasma levels-time profiles revealed a biphasic response with a mean initial elimination half-life of 2.3 +/- 0.2 hours and a terminal elimination half-life of 32.2 +/- 7.2 hours.

Adolescent↗

Effects of glucagon on cAMP accumulation and ketogenesis in hepatocytes from euthyroid and hypothyroid rats.

The resistance to the effects of glucagon was studied in isolated hepatocytes prepared from male rats treated with 6N-propyl-2-thiouracil (PTU). Incorporation of [14C]oleate into ketone bodies in response to various concentrations of glucagon (10(-5) to 10(-10) M) was reduced in hepatocytes from hypothyroid rats compared with the euthyroid group. The reduced sensitivity to the effects of glucagon on ketogenesis after treatment with PTU was associated with a reduced ability of those hepatocytes to maintain cyclic adenosine-3',5'-monophosphate (cAMP) at levels required to stimulate ketogenesis. The concentration of cAMP in response to glucagon (10(-5) to 10(-10) M) was diminished in hepatocytes from hypothyroid rats, compared with those from euthyroid animals.

Animals↗

Changes in glutathione, glutathione reductase and glutathione-S-transferase as a function of cell concentration and age.

The activities of glutathione-S-transferase (GST) and glutathione reductase (GSR) in mouse lymphocytes as a function of cell concentration and age were determined. Lymphocytes from 2-, 9- and 24-month-old mice were isolated and the activity of GST was determined spectrophotometrically using 1-chloro-2,4-dinitrobenzene as the substrate. Lymphocyte concentrations of 0.44, 0.75 and 0.55 X 10(6) cells/ml were found to be optimal for assaying GST in 2-, 9- and 24-month-old mice, respectively. Determination of GSR activity was based on NADPH reduction of oxidized glutathione and cell concentrations of 0.29, 0.30 and 0.22 X 10(6) cells/ml were chosen for assaying the enzyme activity for the three age groups, respectively. Glutathione levels and GSR activity of mice lymphocytes were higher in 2- and 24-month-old mice as compared to 9-month-old animals. However, GST activity of mouse lymphocytes was low in 2- and 9-month-old mice and increased significantly in 24-month-old animals.

Aging↗

Comparative determination of phenytoin in plasma by fluorescence polarization immunoassay and high performance liquid chromatography.

The need for careful monitoring of plasma concentrations of phenytoin during use of the drug in the treatment of epilepsy is well recognized; there can be great intersubject variation in the absorption rate and clearance rate of the drug, and its therapeutic ratio is narrow. In this study, two methods for determining plasma phenytoin concentrations were compared. One, based on fluorescence polarisation immunoassay (FPIA), is utilised in a commercially-available kit. The other, our own modification of a published procedure, was based on high performance liquid chromatography (HPLC). The accuracy and precision of both methods were evaluated, and the coefficients of variation (C.V.) were calculated. The C.V.'s ranged from 0.71 to 1.86% for the FPIA method, and from 2.81 to 8.69% for the HPLC method. Corresponding bias values were 1.20 to 1.60%, and 2.81 to 8.69%, respectively. A good correlation coefficient (0.977) was obtained, but estimated phenytoin concentrations were significantly higher (95% confidence level) using the HPLC method. We conclude that both methods perform adequately for clinical purposes. The HPLC method is, however, less expensive than the FPIA method.

Chromatography, High Pressure Liquid↗

Glutathione, glutathione S-transferase and glutathione reductase in human erythrocytes and lymphocytes as a function of sex.

We review the role of glutathione (GSH) and its metabolizing enzymes, glutathione S-transferase (GST) and glutathione reductase (GSR) in drug metabolism and in the elimination of foreign compounds. Levels of GSH and the activity of these enzymes may be greatly influenced by drugs and other substances in the body. We therefore determined GSH levels and the activities of GST and GSR in human erythrocytes and lymphocytes in males and females in three age groups. There was no significant difference between males and females in the three age groups in respect of GSH levels and GST and GSR activities. GSH levels in erythrocytes were higher than those in lymphocytes when expressed per mg protein, but lower than those in lymphocytes when expressed per 10(6) cells. The activities of both GST and GSR were found to be higher in lymphocytes than in erythrocytes.

Adolescent↗

Effects of food and gender on the pharmacokinetics of methotrexate in children.

The effects of food and gender on the oral absorption of methotrexate (MTX) in 16 Jordanian children were investigated. Plasma levels of MTX were measured by a fluorescence polarization immunoassay. The extent of absorption and the rate of elimination of the drug were determined in both males and females, before and after meals and data were statistically analyzed using two-way analysis of variance. The results showed great variability in individual MTX Cmax, t1/2, Kel. and AUC. Although no statistically significant differences were found in the pharmacokinetic parameters of the drug among the groups, apparent differences were observed in the mean values of these parameters.

Administration, Oral↗

Effect of forskolin on cAMP accumulation and ketogenesis in isolated hepatocytes.

The effect of forskolin on ketogenesis and cAMP accumulation was studied in hepatocytes from euthyroid and hypothyroid rats. Forskolin stimulated ketogenesis, cAMP production and potentiated glucagon-stimulated cAMP accumulation on both euthyroid and hypothyroid groups. The ketogenic effect of glucagon was inhibited by forskolin in both groups. Also, forskolin, glucagon and methylisobutylxanthine (MIX) combined did not significantly increase ketogenesis.

1-Methyl-3-isobutylxanthine↗

Reduction of liver plasma flow by caffeine and theophylline.

Caffeine and theophylline block the vasodilating effects of adenosine and may act to enhance sympathoadrenal discharge and activate the renin-angiotensin system. To determine if these methylxanthines might thereby have effects on regional blood flow, we studied the influence of caffeine and theophylline on apparent liver plasma flow (LPF) in normal subjects as assessed by indocyanine green clearance. Oral caffeine, 250 mg, reduced LPF by 19% from 630 +/- 150 to 510 +/- 120 ml/min (P less than 0.001). Intravenous theophylline (4.3 mg/kg) reduced LPF by 15% from 550 +/- 50 to 470 +/- 90 ml/min (P less than 0.05). These methylxanthine-induced falls in LPF may alter the disposition of concomitantly administered drugs. Because of their widespread use in Western society, caffeine and theophylline may be major determinants of liver blood flow in the general population. They may therefore prolong the t1/2 and increase steady-state levels of hepatically eliminated drugs.

Adenosine↗

Effect of cirrhosis and debrisoquin phenotype on the disposition and effects of pinacidil.

Pinacidil is an investigational vasodilator currently undergoing clinical trials as an antihypertensive agent. It is metabolized in humans to pinacidil N-oxide. To determine whether pinacidil's metabolism or effects were influenced by either liver disease or the subject's debrisoquin phenotype, eight patients with chronic stable cirrhosis and 13 healthy subjects were studied. Seven of the healthy volunteers were extensive metabolizers of debrisoquin, whereas six were of the poor metabolizer phenotype. Neither the clearance of pinacidil nor the production of the N-oxide was altered by the subjects' debrisoquin phenotype. Cirrhosis produced a 50% reduction in pinacidil's clearance (20.7 +/- 1.4 vs. 42.1 +/- 5.1 L/hr; P less than 0.0005) and a prolongation in the elimination t1/2 from 3.9 +/- 0.3 to 6.1 +/- 0.6 hours (P less than 0.01). Less pinacidil was metabolized to the N-oxide metabolite in the patients with cirrhosis than in the normal individuals. Thus pinacidil's metabolism and clearance are reduced in patients with cirrhosis but are independent of debrisoquin phenotype.

Adult↗

The effect of cimetidine on anesthetic metabolism and toxicity.

Because the H2-receptor antagonist cimetidine has been shown to inhibit drug metabolism, the effects of cimetidine on anesthetic metabolism and toxicity were investigated in a rat model. Cimetidine decreased inorganic plasma fluoride production after methoxyflurane administration both in 21% oxygen (P less than 0.001) and in 100% oxygen (P less than 0.001). Phenobarbital produces an increased fluoride formation after methoxyflurane anesthesia, and this fluoride formation is also reduced by cimetidine (P less than 0.005). There was no significant difference between the plasma fluoride levels in rats anesthetized with halothane or enflurane. Although cimetidine inhibited the in vivo defluorination of methoxyflurane, fluoride levels were still within the nephrotoxic range, and cimetidine is not likely to play a role as part of a preanesthetic regimen that would permit the increased clinical use of methoxyflurane. Cimetidine also inhibited the oxidative metabolism of halothane; cimetidine decreased (P less than 0.05) trifluoroacetic acid concentrations after halothane anesthesia in 21% oxygen and in 100% oxygen and decreased (P less than 0.05) bromide concentrations after halothane anesthesia in 100% oxygen. Trifluoroacetic acid levels were less (P less than 0.02) after halothane anesthesia in 14% oxygen as compared with 100% oxygen, indicating a reduction in oxidative metabolism under hypoxic conditions. However, bromide concentrations were maximal after halothane anesthesia in 21% oxygen, and significantly (P less than 0.001) less after halothane anesthesia in 14% and 100% oxygen. Bromide production, therefore, seems to be inhibited by both hypoxia and hyperoxia.(ABSTRACT TRUNCATED AT 250 WORDS)

Alanine Transaminase↗