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F L Tse

Publications and source records attributed to F L Tse.

At least 37 records · Page 2Linked to original sources

Absorption of D-glucose in the rat studied using in situ intestinal perfusion: a permeability-index approach.

PURPOSE: A permeability-index approach was developed and used to study the transport of D-glucose in the jejunum and ileum of rats. METHODS: The effective permeability coefficient (Pe) of [3H]D-glucose and [14C]antipyrine (an internal standard) in jejunum and ileum of four rats was determined using an in situ rat intestinal perfusion technique. The permeability ratio of the test compound (D-glucose) to the internal standard was defined as the permeability-index (P(i)), which was mathematically independent of the length and surface area of the intestinal segment perfused. Using this approach, the transport of [3H]D-glucose in jejunum and ileum of eight animals was investigated at concentrations ranging from 1 to 300 mM. The tissue/perfusate distribution of [3H]D-glucose and [14C]antipyrine at steady state was also determined. RESULTS: The variability (%CV) in P(i) of D-glucose was only approximately 5%, compared with 23-36% in Pe values of D-glucose or antipyrine alone. The permeability and tissue distribution of [14C]antipyrine were unaffected by the presence of D-glucose. In contrast, the permeability and tissue distribution of [3H]D-glucose were concentration-dependent in both jejunum and ileum. The transport of D-glucose was studied assuming that the transport was mediated by a carrier (with maximum flux, Vmax and dissociation constant, Km) as well as by non-saturable transport (Pd). The maximum transport capacity for D-glucose in jejunum (0.522 mumole/min/cm2) was twice that in ileum (0.199 mumole/min/cm2), but the affinity (1/Km) was less than half of that in ileum (1/(48.2 mumole/mL) vs. 1/(21.4 mumole/mL)), rendering a similar active transport efficiency (Vmax/Km) in these two regions. The non-saturable permeability (Pd) in jejunum (44.6 x 10(-4) cm/min) was approximately twice that in ileum (20.4 x 10(-4) cm/min). CONCLUSIONS: The permeability-index approach yielded parameters with reduced variability by eliminating potential imprecisions in length and surface area measurements of the intestinal segments perfused. D-glucose was transported via carrier-mediated systems in both jejunum and ileum, with different transport capacity and affinity in these two regions.

Animals↗

The safety evaluation of fluvastatin, an HMG-CoA reductase inhibitor, in beagle dogs and rhesus monkeys.

Fluvastatin is a potent synthetic competitive inhibitor of beta-hydroxy-beta-methyl-glutaryl-coenzyme A (HMG-CoA) reductase, the rate-limiting enzyme in the biosynthetic pathway for hepatic cholesterol synthesis. The therapeutic indication is reduction of elevated total and low-density lipoprotein cholesterol levels. Results from four toxicity studies in beagle dogs and one study in rhesus monkeys following oral administration of fluvastatin are reported. In two 26-week dog studies, doses were 0, 1, 8, or 48 mg/kg/day (reduced to 36 mg/kg/day in Week 7) and 0, 6, 24, or 36 mg/kg/day (reduced to 30 mg/kg/day in Week 2). In a 2-year dog study, doses were 0, 1, 8, or 16 mg/kg/day. Dose levels in the 26-week monkey study were 0, 0.6, 12, and 48 mg/kg/day (raised to 84 mg/kg/day in Week 17 and to 108 mg/kg/day in Week 22). In these studies, evaluations included clinical and physical examinations, body weight and food consumption, electrocardiography, ophthalmoscopy, hematology and clinical chemistries, urinalysis, blood drug concentration, and macroscopic and microscopic examinations of observed lesions and representative tissues. In the 26- and 52-week dog studies and the monkey study, lenticular biochemistry, the HMG-CoA reductase activity of liver microsomes, and serum lipid concentrations were investigated. The fourth dog study was a single-dose toxicokinetic study in which 48 mg/kg [3H]-fluvastatin was monitored for up to 2 weeks. Sampling was limited to ocular tissues for enzyme analysis. Doses of > or = 24 mg/kg/day were lethal in dogs. At lethal doses, ataxia, convulsions, fecal blood, multifocal congestion and hemorrhage, isolated foci of malacia in the medulla oblongata, and liver necrosis were observed. Reduced weight gain, emesis, cataracts, elevated liver enzymes, reduced cholesterol, and gallbladder inflammation with mucosal hyperplasia occurred at > or = 8 mg/kg/day. In contrast to other HMG-CoA reductase inhibitors, fluvastatin did not cause significant central nervous system hemorrhage or testicular changes in dogs. Monkeys tolerated exposure to fluvastatin well with only mild gallbladder changes observed. Reduced serum cholesterol and slight hyperplasia of the gallbladder mucosa occurred in the 12 and 48/84/108 mg/kg/day groups.

Administration, Oral↗

Effect of food on the bioavailability of SDZ DJN 608, an oral hypoglycemic agent, from a tablet and a liquid-filled capsule in the dog.

PURPOSE: The effect on food on the bioavailability of SDZ DJN 608, a D-phenylalanine derivative, was investigated in three mature, male beagle dogs. METHODS: Each dog received, under fasting and postprandial conditions, a 30 mg oral dose as a tablet (T) and a liquid-filled capsule (LC). Additionally, a 5 mg intravenous dose was given in the fasting state. Doses in the same dog were separated by 1-week washout periods. Serial plasma samples were collected for 24 h postdose and analyzed for SDZ DJN 608 using HPLC. Model-independent pharmacokinetic parameters were compared between treatments by 3-way ANOVA: In vitro dissolution profiles of T and LC were generated using the USP paddle method. In addition, the transport of SDZ DJN 608 through a Caco-2 cell monolayer was examined at concentrations of 0.1 and 1 mM, in the absence and presence of an aromatic amino acid, L-alpha-methyldopa, the transport of which is mediated by the large neutral amino acid (LNAA) carrier. RESULTS: In the dog, SDZ DJN 608 was rapidly absorbed. The peak plasma concentration (Cmax) averaged higher, and the peak time (tmax) shorter, after LC than T, though the differences were not statistically significant. This finding is consistent with in vitro dissolution data showing that, at both pH 1.2 and pH 6.8, the dissolution rate of LC was faster than that of T. No significant difference in the area under curve (AUC) was observed between LC and T, the absolute bioavailability of both being complete in the fasting state. Whereas the presence of food showed little effect on the tmax and Cmax of either dosage form, it significantly reduced the AUC, the effect (ca -20%) being not different between LC and T. In the Caco-2 model, the mucosal-to-serosal permeability of SDZ DJN 608 was independent of concentration and unaffected by L-alpha-methyldopa, suggesting passive diffusion of the former. CONCLUSIONS: Food had little effect on the absorption rate but significantly reduced the bioavailability of SDZ DJN 608 regardless of the dosage form. This effect is unlikely to be caused by inhibition of the transepithelial transport of SDZ DJN 608 by amino acids in the diet.

Administration, Oral↗

Serial versus sparse sampling in toxicokinetic studies.

PURPOSE: Sparse sampling in rodent toxicokinetics usually involves the collection of a single blood sample on a given study day from each animal in a treatment group. The samples are allocated to different time points, often allowing some replicates, and statistical inferences are then made about the concentration-time behavior of the test compound. The present study compared the results of one such analysis with those obtained from serial sampling as might be applied using satellite animals. METHODS: Ten rats each received a single oral dose of tritium-labeled compound X. Blood concentrations in each rat at 10 time points post-dose were determined by liquid scintillation counting. Individual peak concentrations of blood radioactivity (Cmax) and peak times (tmax) were recorded, and area-under-curve (AUC) values were calculated by trapezoidal rule. The mean AUC and Cmax of all 10 animals over all 10 time points, referred to as AUCtrue and Cmax,true, were used as points of reference. These values were then estimated using subsets of the data that simulated satellite-animal or sparse-sampling designs. First, several different sampling schedules of 5 bleeding times were stimulated by taking subsets of the full data set. For analysis using satellite animals, serial blood concentrations from subsets of 3 or 4 rats were used to calculate point and confidence-interval estimates of AUCtrue and Cmax,true by standard methods; all possible subsets of 3 or 4 of the 10 rats were considered. For sparse data analysis, a single concentration from each of the 10 rats was used to calculate both point and confidence-interval estimates of AUCtrue by the Bailer-Satterthwaite method, and point estimates of Cmax,true, according to several different designs of replication. Animals were randomly assigned to time points, and 1000 of over 50000 possible combinations were evaluated for each bleeding schedule. The average percent absolute errors of the point estimates were computed and, for the 95% confidence intervals, average widths were determined. RESULTS: For point estimates of AUCtrue, sparse sampling yielded average percent absolute errors of 7-13%. Percent errors for 3 and 4 satellite animals were 6-12% and 5-10%, respectively. For 95% confidence intervals, sparse sampling yielded widths of 24-90% of AUCtrue, whereas for 3 and 4 satellite animals widths were 37-50% and 24-34%, respectively. For Cmax,true point estimates from sparse-sampling and satellite-animal approaches had average percent absolute errors of 5-12% and 3-8%, respectively. The confidence-interval widths for Cmax,true from the satellite-animal approach were 15-24% of Cmax,true, but coverage did not achieve the nominal 95% for some choices of sampling times. CONCLUSIONS: By using proper study designs, one can limit the number of samples and the amount of blood drawn so as not to affect the animals' health status, yet still achieve the customary pharmacokinetic objectives in a toxicity study.

Animals↗

An evaluation of numerical integration algorithms for the estimation of the area under the curve (AUC) in pharmacokinetic studies.

Six numerical integration algorithms based on linear and log trapezoidal methods as well as four cubic-spline methods were proposed for estimation of area under the curve (AUC). These six different algorithms were implemented using IMSL/IDL command language and evaluated using data simulated under five different dosing conditions and two different sampling conditions. Comparisons between AUC estimations using these six different algorithms and the theoretical results were made in terms of both overall AUC values and the superimposability of the concentration-time profiles. In well designed studies with ample data points, the algorithm based on IMSL/IDL function CSSHAPE with concavity preservation gave the best performance. In contrast, when the frequency of blood collection was limited, the algorithm based on the log trapezoidal rule proved to be stable with reasonable accuracy, and is recommended as the practical method for numerical interpolation and integration in pharmacokinetic studies. Algorithms based on the combination of the log trapezoidal rule and cubic-spline methods using IMSL/IDL function CSSHAPE can be developed to enhance overall performance.

Algorithms↗

The effect of the fat content of food on the pharmacokinetics and pharmacodynamics of SDZ FOX 988, an antidiabetic agent, in the dog.

SDZ FOX 988 (FOX 988) is being developed for the treatment of type II diabetes. The objective of this study was to examine the effect of the fat content of food on the pharmacokinetics and pharmacodynamics of FOX 988 following oral administration in the dog. In a randomized, cross-over design, four dogs received a single 10 mg kg-1 dose of 14C-FOX 988 suspension concomitantly with food containing 10% fat or 40% fat, or with the 10% fat food at 4 h post-dose. Serial blood, urine, and fecal samples were collected for 96 h and analyzed for total radioactivity. Blood concentrations of 53-450, the active metabolite of FOX 988, were also determined. Serum concentrations of beta-hydroxybutyrate and glucose, pharmacological markers for the antidiabetic effects, were measured serially for 24 h after dosing. The animals receiving the low-fat meal at dosing and at 4 h post-dose exhibited similar extents of absorption, as shown by similar AUC values and urinary radioactivity recovery. Administration of the high-fat meal at dosing significantly enhanced the absorption of FOX 988 and resulted in high blood concentrations of 53-450. However, no significant differences in the pharmacological activity of the drug were observed among the three treatments.

3-Hydroxybutyric Acid↗

The effect of food on the absorption of 14C-SDZ FOX 988, an antidiabetic agent, in healthy human volunteers.

The objective of this study is to examine the effect of food on oral absorption of SDZ FOX 988 (FOX 988), an antidiabetic agent, and circulating levels of its active metabolite, SDZ 53-450 (53-450). Sixteen normal volunteers received a single 10 mg dose of 14C-FOX 988, either as gelatin capsules or in a suspension (0.5% CMC). For subjects receiving each formulation, four subjects received a meal, consisting of 50% fat by calories, immediately following dosing, while the other four received the same meal at 2 h post-dose. Serial blood, urine, and fecal samples were collected for 120 h and analyzed for total radioactivity. Blood concentrations of 53-450 were analyzed using an HPLC-UV method. Concomitant administration with food increased the extent of FOX 988 absorption from either suspension or capsule, as shown by an increase in AUC and in urinary recovery of radioactivity. Blood concentrations of 53-450 were only detected in subjects receiving food at dosing. No difference in absorption was observed between the capsule and the suspension. Results from this study showed that oral absorption of FOX 988 is enhanced by co-administration of food in normal volunteers.

Absorption↗

Disposition of [3H]fluvastatin following single oral doses in beagle dogs and rhesus monkeys with bile fistulae.

The disposition of [3H]fluvastatin was examined following single oral doses in dogs (12.4 mg kg-1) and monkeys (0.48 and 45.5 mg kg-1) with bile fistulae. Serial plasma and complete urine, feces, and bile were collected at designated intervals for 3 or 4 d, and were analyzed for total radioactivity and unchanged fluvastatin. In the dog, peak radioactivity concentrations (Cmax) averaged 7260 ng equiv. mL-1 and the mean time to peak (tmax) was approximately 9 h. In the monkey, the mean radioactivity tmax values were approximately 5 and 13 h following the low and high doses, the respective Cmax values being 116 and 10,400 ng equiv. mL-1. The mean AUC of total radioactivity was proportional to the dose while that of fluvastatin was overproportional to dose, suggesting dose independent absorption but saturable first-pass effect. The AUC ratio of unchanged fluvastatin versus total radioactivity was approximately 63% in the dog, and 9% and 13% for the low and high doses, respectively in the monkey. The bile was the major excretory route of radioactivity (dog, 56%; low-dose monkey, 73%; high-dose monkey, 69%) whereas the renal pathway accounted for < 5% of the dose in both species. Approximately 12% of the biliary radioactivity in the dog was due to intact fluvastatin, compared with 0% and 7.5% after the low and high doses in the monkey. These results showed a smaller extent of fluvastatin metabolism in the dog than in the monkey, and suggested that metabolism in the monkey was saturable in the dose range studied.

Administration, Oral↗

Pharmacokinetics of SDZ 64-412, a novel antiasthmatic agent, following intravenous, oral, and inhalation dosing in the rat.

The pharmacokinetics of SDZ 64-412, an antiasthmatic agent, were investigated following intravenous, oral, and inhalation dosing in rats. 14C-SDZ 64-412 was administered intravenously (2.75 mg kg-1) and orally (5.5 mg kg-1, 110 mg kg-1), whereas non-radiolabeled drug (5.04 mg kg-1) was administered using nose-only inhalation chambers. Radioactivity and parent drug concentrations in blood, lung, and excreta were determined at designated times post-dose. SDZ 64-412 was rapidly and extensively (approximately 80%) absorbed following both oral doses, although absorption appeared to be prolonged with increasing dose. The absorbed drug was shown to undergo extensive and saturable first-pass metabolism. The bioavailability of the parent drug, calculated by dose-normalized AUC and deconvolution methods, was only 10-15% from the low dose, but increased to approximately 40% following the high dose. Following inhalation dosing, SDZ 64-412 concentrations in blood and lungs increased rapidly, and did not decline immediately after termination of dosing. The inhalation dose yielded a bioavailability of approximately 40%, and AUC of the drug in lungs was approximately 25 times greater than in blood. In general, SDZ 64-412 was extensively distributed and rapidly eliminated from the systemic circulation. Biliary excretion was the predominant route of radioactivity excretion. The present findings suggest that inhalation administration provides a viable means of delivery of SDZ 64-412.

Administration, Inhalation↗

The effect of oral dose volume on the absorption of a highly and a poorly water-soluble drug in the rat.

The influence of dose volume on drug absorption following oral administration of a highly and a poorly water soluble drug was examined in male Sprague-Dawley rats. A constant mass of each 14C-labeled compound was given via gavage in dose volumes of 1, 5, 10, and 20 mL kg-1. Blood levels, as well as the quantitative excretion of radioactivity, were measured following each treatment. No significant changes in either the rate or extent of absorption of the water soluble drug were detected. In contrast, the absorption rate of the poorly water soluble drug increased with higher dose volumes, whereas no changes in the extent of absorption were observed. Drug solubility and gastric emptying appeared to be important factors affecting the rate of absorption of the poorly water soluble drug. Since changes in dose volume may affect the absorption characteristics of orally administered compounds, and the extent of such changes may be dependent upon the physicochemical properties of the drug, it is apparent that dose volume is an important experimental variable to be considered in studies comparing absorption data.

Animals↗

Pharmacokinetics of intranasally-administered dihydroergotamine in the rat.

Intranasal dosing of dihydroergotamine (DHE) allows convenient self-administration and provides an alternate route of administration for the treatment of migraine in addition to the existing parenteral dosage forms. In this study, the pharmacokinetics of 3H-DHE were investigated following intravenous and intranasal dosing (0.343 mg DHE/animal) in the rat. Intranasal administration of DHE resulted in rapid absorption. The extent of absorption of the radiolabeled dose was approximately 45%-60%. Absolute bioavailability of the parent drug was 35%-40%, as determined by deconvolution and by the ratios of AUC0-infinity following intranasal and intravenous dosing. Due to the limited capacity of the nostrils, approximately half of the intranasal dose was swallowed into the gastrointestinal tract. Biliary excretion was found to be the predominant pathway of radioactivity excretion following both routes of administration. The results from this study suggest that intranasal administration provides a viable means of delivering DHE into the systemic circulation.

Administration, Intranasal↗

Effect of current magnitude and drug concentration on iontophoretic delivery of octreotide acetate (Sandostatin) in the rabbit.

The effect of current magnitude and drug concentration on transdermal iontophoretic delivery of octreotide acetate (Sandostatin) was examined in the rabbit. Plasma samples were collected over 24 hours and octreotide concentrations were determined by a radioimmunoassay. Without an electrical current, negligible plasma concentrations of octreotide were obtained. Following initiation of iontophoresis, plasma concentrations of octreotide increased rapidly, although did not sustain at a plateau level during the dosing period. Octreotide concentrations declined rapidly after removal of the device. Increasing the electrical current from 50 microA/cm2 to 150 microA/cm2 yielded a proportional increase in the delivery. Increasing the drug concentration in the device from 2.5 mg/mL to 5 mg/mL resulted in approximately proportional increase in plasma octreotide concentrations; however, further increase in plasma concentrations was not observed for drug concentrations beyond 5 mg/mL. Iontophoretic delivery at the conditions which yielded the highest octreotide concentrations in this study (5 mg/mL solution at 150 microA/cm2 for 8 hours) yielded an apparent bioavailability (which represents an underestimate of the absolute bioavailability determined when the patches are run to exhaustion) of approximately 8%.

Amino Acid Sequence↗

Binding of fluvastatin to blood cells and plasma proteins.

The binding of fluvastatin, an inhibitor of hydroxymethylglutaryl coenzyme A reductase, to plasma proteins and red blood cells of rat, dog, and human in vitro was determined by ultrafiltration. Additionally, the stereospecificity of fluvastatin binding to proteins and the potential interaction between fluvastatin and the highly protein bound drugs warfarin, salicylic acid, and glyburide were investigated. Only a small fraction of fluvastatin in blood was taken up by the blood cells, amounting to 19-33% in the rat and < or = 15% in dog and humans. The plasma:blood fluvastatin ratio in these species at 37 degrees C was > or = 1.4. In human blood, this ratio was temperature independent. In the plasma concentration range 25-50,000 ng/mL, fluvastatin was > or = 98% bound to proteins. The binding was concentration dependent in the rat, but not in the dog and human. Both enantiomers of fluvastatin were > 99% bound in normal human plasma, the binding of each being unaffected by the presence of the other. A major fluvastatin-binding protein in human plasma was albumin, whereas binding to alpha 1-acid glycoprotein was relatively weak and concentration dependent. At therapeutic concentrations in normal human plasma, the protein binding of fluvastatin (0.1 microgram/mL) was unaffected by warfarin (1-10 micrograms/mL), salicylic acid (50-150 micrograms/mL), and glyburide (0.1-1 micrograms/mL). Similarly, fluvastatin had no influence on the binding of these compounds. In diluted human albumin solution (29 microM), bound fluvastatin was displaced by all three co-solutes tested.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Assessing drug exposure in rodent toxicity studies without satellite animals.

Five major objectives for pharmacokinetic investigations in support of toxicity studies are identified as follows: Assess whether animals exhibited measurable blood concentrations in a dose-dependent manner; estimate average area under the concentration-time curve (AUC) and maximal concentration (Cmax) for each treatment group; elucidate general patterns in the concentration-time (CxT) profile, and summarize relationships between CxT and treatment group; determine CxT dependence on day into study; and judge interanimal variability and identify any animals with unusual concentration response. Such objectives are generally addressed in rodent toxicity studies by including "satellite" animals in the study. Satellite animals are extra animals dosed as per protocol but not subjected to toxicological and pathological observations and tests. Instead, they are used exclusively for the evaluation of pharmacokinetic characteristics of the test compound. In this paper, methods are described for achieving the five listed pharmacokinetic objectives in rodent toxicity studies without the use of satellite animals. A rat toxicity study is presented as an example.

Animals↗

Absorption and disposition of fluvastatin, an inhibitor of HMG-CoA reductase, in the rabbit.

The absorption and disposition of fluvastatin have been studied in the female rabbit. In naive rabbits receiving a single oral dose (1 mg kg-1) of [3H] fluvastatin, absorption was rapid and amounted to c. 90 per cent compared with an intravenous reference dose. The drug was subject to considerable first-pass effect, its absolute bioavailability being 46 per cent. The steady-state volume of distribution of fluvastatin was 0.29 +/- 0.04 l kg-1 while the total body clearance was 0.33 +/- 0.05 1 h-1 kg-1. The administered radioactivity was excreted predominantly in feces, with the renal pathway accounting for 28 +/- 4 per cent of the oral dose and 32 +/- 3 per cent of the intravenous dose. In pregnant rabbits on a multiple oral dosing regimen, 1 mg kg-1 day-1 beginning day 6 post-conception (p.c.), steady-state concentrations in maternal blood and tissues were achieved within 5 days. The concentrations in the reproductive organs were c. 25-50 per cent of that in maternal blood while those in the kidneys and liver were considerably higher. In contrast, radioactivity levels in the fetuses and amniotic fluid decreased significantly during repeated drug administration. The fetus: placenta and amniotic fluid: placenta concentration ratios declined from 0.92 and 0.97, respectively, on day 10 p.c. to 0.10 and 0.04, respectively, on day 18 p.c., indicating a limited transfer of fluvastatin and/or its metabolite(s) across the placenta at the later stage of pregnancy. After cessation of dosing, radioactivity levels in all tissues and fluids showed a progressive and nearly parallel decline, suggesting no tissue retention of the drug.

Administration, Oral↗

Pharmacokinetics of fluvastatin after single and multiple doses in normal volunteers.

The pharmacokinetics of fluvastatin, a potent inhibitor of hydroxymethylglutaryl-CoA reductase and thus cholesterol synthesis, have been studied in 24 normal male volunteers who received [3H] fluvastatin in three different studies: a single-dose study using oral doses of 2 or 10 mg, an absolute bioavailability study using doses of 2 mg intravenously or 10 mg orally, and a multiple-dose study using 40 mg orally once daily for 6 days. Serial blood and plasma samples and complete urine and feces were collected and analyzed for total radioactivity as well as for intact fluvastatin. Fluvastatin was rapidly and almost completely (greater than 90%) absorbed from the gastrointestinal tract, although the estimated bioavailability from the 2- and 10-mg doses was only 19 to 29% because of extensive first-pass metabolism. Fluvastatin pharmacokinetics appeared to be linear over the 2- to 10-mg dose range, as indicated by dose-proportional blood levels of total radioactivity and the parent drug. Absorbed fluvastatin was completely metabolized before excretion, the biliary/fecal route being the major excretory pathway. The recovery of radioactivity after a single dose was virtually complete within 120 hours. The terminal half-lives of fluvastatin and total radioactivity averaged 0.5 to 1 hour and 55 to 71 hours, respectively, whereas the total body clearance of fluvastatin was 0.97 L/hour/kg. Repeated oral administration of 40-mg doses of [3H]fluvastatin resulted in no time-related change in pharmacokinetic characteristics, but this dose yielded greater than proportional increases in circulating levels of the parent drug, thus suggesting a saturable first-pass effect on fluvastatin.(ABSTRACT TRUNCATED AT 250 WORDS)

Administration, Oral↗

Bioavailability of isradipine in young and old rats: effect of mode of administration.

The bioavailability of isradipine has been examined in 7- and 52-week-old rats after oral (12.5 mg kg-1) or intravenous (2.5 mg kg-1) doses as a solution and administration of various doses (1.8-85.5 mg kg-1) in the diet. Serial plasma samples were obtained from each rat and the drug concentration was determined by radioimmunoassay. Absorption from the dose given by gavage was rapid but when administered in a drug diet mixture, isradipine appeared in the plasma slowly and in a manner reflecting the feeding pattern. Its absolute bioavailability from the drug-diet mixture averaged 3% over the dose range tested. By gavage its bioavailability was enhanced to 5% of dose with peak plasma values approximately 7 times higher than from a comparable dose in the diet. The low oral bioavailability of isradipine in the rat was most likely due to extensive first-pass metabolism. The decline in plasma concentrations was biexponential, with a mean terminal half-life of 3.6-3.7 h after oral or intravenous dosing. The pharmacokinetic characteristics of isradipine examined were independent of the age of the rat, except that its volume of distribution decreased with age. The older rats also showed a greater inter-animal variability in isradipine bioavailability from the drug-diet mixture.

Aging↗