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Biomedical subjects

V K Batra

Publications and source records attributed to V K Batra.

28 records · Page 2Linked to original sources

Pharmacokinetics of piperacillin and gentamicin following intravenous administration to dogs.

Piperacillin sodium was administered intravenously to dogs, alone or in combination with gentamicin, twice a day (approximately 5 hr apart) for 36-37 days. The pharmacokinetics of neither drug changed in the presence of the other; however, the percentage of the gentamicin dose recovered in the urine decreased significantly when coadministered with piperacillin. The data demonstrate that interaction between the two drugs in urine is feasible.

Animals↗

Intrathecal human tetanus immunoglobulin in early tetanus.

97 patients with symptoms of early tetanus at the time of admission to hospital were treated with sedation, antibiotics, and human tetanus immune globulin (TIG). After intrathecal TIG 250 IU 3 patients out of 49 got worse but only 1 died while in a closely similar group of 48 patients in whom TIG was administered intramuscularly in dose of 1000 IU, the clinical features of the disease became severer in 15 (31%) and 10 (21%) died. The intrathecal use of TIG was devoid of side effects.

Adolescent↗

Piperacillin kinetics.

Piperacillin was administered to normal, healthy volunteers by an intravenous infusion over 30 min at dosage regimens of 12 gm daily (4 gm every 8 hr) and 24 gm daily (6 gm every 6 hr) for 5 consecutive days. Mean peak serum level after 12 gm daily was 244 +/- 24 (SE) microgram/ml and after 24 gm daily, 353 +/- 7 microgram/ml. After infusion the serum level declined monoexponentially in most subjects. On the 12-gm daily dosage mean values were 60 min for half-life (t1/2), 16 1 for volume of distribution, 188 ml/min for body clearance, and 139 ml/min for renal clearance. The same values on day 4 were 47 min, 12 1, 181 ml/min, and 125 ml/min; the volume of distribution was lower than on day 1. On the 24-gm daily dosage regimen, t1/2 was 60 min; volume of distribution, 16 1; body clearance, 183 ml/min; and renal clearance, 101 ml/min on day 1 compared to 68 min, 15 1, 148 ml/min, and 71 ml/min on day 4, the last 2 being significantly lower than on day 1. High renal clearance values were observed at low serum concentrations and vice versa, suggesting saturation of the tubular secretion process at high piperacillin concentrations in serum.

Adolescent↗

Plasma naltrexone kinetics after intravenous bolus administration in dogs and monkeys.

This investigation generated data characterize a specific electron-capture GLC assay reported previously for naltrexone and applied the method to a determination of naltrexone pharmacokinetics. Extraction efficiencies are reported for the assay, and mass spectral evidence indicates that naltrexone forms a triester when derivatized for electron-capture GLC with pentafluoropropionic anhydride and a base catalyst. Plasma level-time data for intravenous naltrexone at two dose levels in monkeys yielded no evidence of dose-dependent kinetics. A two-compartment open pharmacokinetic model was fitted to plasma level-time data for naltrexone in two dogs and yielded a total body clearance of 51-55 ml/min/kg. Urine collected for 0-24 hr contained 36% of the dose as naltrexone conjugates with less than 1% as unchanged naltrexone. Plasma level-time data for intravenous naltrexone in six monkeys yielded an average terminal half-life of 7.8 hr and a total body clearance of 64 ml/min/kg. The total body clearance for naltrexone was greater than the hepatic plasma or blood flow in both dogs and monkeys. This finding, together with the extremely low renal excretion of naltrexone, suggests the existence of elimination mechanisms besides liver metabolism and renal excretion.

Animals↗

Pharmacokinetics of loratadine and pseudoephedrine following single and multiple doses of once- versus twice-daily combination tablet formulations in healthy adult males.

The pharmacokinetic profiles of single and multiple doses of loratadine, descarboethoxyloratadine (DCL) (the major active metabolite of loratadine), and pseudoephedrine were determined in a randomized, open-label, two-way crossover study in 24 healthy men. Subjects received a single dose (day 1) and multiple doses (days 3 to 10) of a once-daily (QD) formulation of loratadine 10 mg in an immediate-release coating and pseudoephedrine sulfate 240 mg in an extended-release core (CLAR-ITIN-D 24 HOUR tablets), and a twice-daily (BID) formulation of loratadine 5 mg in an immediate-release coating and pseudoephedrine sulfate 120 mg, with 60 mg in an immediate-release coating and 60 mg in the barrier-protected core (CLARITIN-D 12 HOUR tablets) in study sessions, each separated by a 10-day washout period. Both regimens were safe and well tolerated. On day 1, plasma loratadine, DCL, and pseudoephedrine concentrations were higher following the QD formulation than following the BID formulation, as expected. On day 10, loratadine and DCL maximum plasma concentration (Cmax) values were, on average, 87% and 35% higher, respectively, for the QD formulation than for the BID formulation; however, the values of the area under the plasma concentration-time curve from 0 to 24 hours (AUC0-24) for loratadine and DCL were equivalent (90% confidence interval [CI]: 83% to 110% for loratadine; 90% to 107% for DCL). On day 10, pseudoephedrine Cmax and AUC0-24 values were equivalent (90% CI for Cmax: 94% to 109%; for AUC: 91% to 106%) for the two formulations, and lower pseudoephedrine concentrations were observed from 16 to 24 hours with the QD formulation. Both loratadine/pseudoephedrine formulations produced equivalent loratadine and DCL AUC0-24 values and equivalent pseudoephedrine Cmax and AUC0-24 values following multiple dosing. The lower pseudoephedrine concentrations in the evening with the QD formulation may minimize the potential for insomnia in patients when compared with the BID formulation.

Adult↗

Toxicokinetics/toxicodynamic correlations: goals, methods, and limitations.

Toxicokinetic (TK) studies are the basis for demonstrating dose-related drug exposure in animals and for ensuring that drug exposure is substantially greater in animals than that expected in humans at therapeutic doses. The usefulness of TK studies can be further enhanced by correlating TK parameters with relevant toxicologic end points. The so-called TK/toxicodynamic (TD) correlations can be extremely useful in bridging data from studies both within and across species and in designing early Phase I clinical trials. These correlations assume that toxicologic responses are comparable among species at comparable plasma concentrations. This assumption may apply for certain drugs but not for others. Therefore, TK/TD correlations should be developed and utilized on a case-by-case basis. Such correlations have proven to be extremely useful with anticancer drugs in formulating dose escalation strategies in cancer patients to rapidly attain the maximum tolerated and/or effective dose. However, these correlations have not been utilized effectively in other therapeutic areas. The development of TK/TD correlations, their scope, and limitations are discussed in this paper.

Animals↗

Disposition of cefixime in the pregnant and lactating rat. Transfer to the fetus and nursing pup.

The disposition of cefixime, a potent, third generation, orally active cephalosporin, was characterized in the pregnant and lactating rat. After a single iv dose of 17.8 mg/kg 14C-cefixime to day 18 pregnant rats, the half-life for elimination of radioactivity from both maternal serum and placentas was 6.9 hr. Elimination from fetal plasma and tissues was somewhat longer, 12.5 and 13.7 hr, respectively. However, comparison of areas under the curve indicated that exposure of the fetuses to cefixime was far less than that of placentas. Whole body autoradiography showed the greatest radioactivity in maternal liver, kidney, and intestines. In the lactating rat, steady state plasma concentrations of 14C-cefixime were achieved by continuous ip infusion of 2.54 mg/kg/day via Alza osmotic Mini-pumps from days 10 to 14 postpartum. Plasma concentrations of radioactivity in the dams were, on the average, 70 times greater than in their nursing pups throughout the study. After 102 hr of drug infusion, total radioactivity in the body of the pups, including the stomach and intestinal contents, was 1% of the 14C-cefixime estimated to be in the mother's body at steady state. Overall, these data indicate that exposure of the developing rat fetus and nursing pup to cefixime after maternal drug administration is quantitatively small.

Animals↗