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J H Rodman

Publications and source records attributed to J H Rodman.

At least 55 records · Page 3Linked to original sources

Pharmacokinetics of continuous infusion of methotrexate and teniposide in pediatric cancer patients.

Laboratory studies have demonstrated the ability of teniposide to markedly enhance the intracellular accumulation of methotrexate suggesting that combination therapy with these agents may produce clinical benefit. Studies of methotrexate and teniposide were conducted in 19 children with relapsed acute lymphocytic leukemia to evaluate the pharmacokinetics of this previously untested combination of agents given alone or in combination and to demonstrate the feasibility of a Bayesian dose optimization strategy. Patients were randomly assigned to receive intermediate dose methotrexate as a 24-h continuous infusion, administered either simultaneously with continuous infusion teniposide or sequentially with the teniposide infusion beginning 12 h after the end of the methotrexate infusion. Plasma samples were obtained during and after infusions at appropriate times for a comprehensive pharmacokinetic study of each drug. Two measured drug concentrations obtained during the infusion were used to adjust each patient's dose rate to achieve target values of 10 microM for methotrexate and 15 microM for teniposide. Pharmacokinetic parameters for teniposide were not different for patients given simultaneous methotrexate from parameters estimated for patients receiving teniposide 12 h after the end of the methotrexate infusion. Despite similar end of infusion methotrexate concentrations, 24-h postinfusion methotrexate concentrations were lower (0.137 versus 0.235 microM; P less than 0.05) in the patients receiving simultaneous infusions. The patient specific dose regimens yielded acceptably precise, minimally biased steady state drug concentrations. These pharmacokinetic results provide the basis for further clinical studies with this combination of antileukemic agents.

Antineoplastic Combined Chemotherapy Protocols↗

Relationship between dose rate of [6RS]Leucovorin administration, plasma concentrations of reduced folates, and pools of 5,10-methylenetetrahydrofolates and tetrahydrofolates in human colon adenocarcinoma xenografts.

[6RS]Leucovorin (5-formyltetrahydrofolate; 5-CHO-H4PteGlu) administered in different regimens in combination with 5-fluorouracil (FUra) has increased the response rates to FUra in patients with colon adenocarcinoma. Using preclinical models of human colon adenocarcinomas as xenografts in immune-deprived mice, the effect of the rate of administration of racemic [6RS]leucovorin on the concentration-time profile of reduced folates in plasma, size of intratumor pools of 5,10-methylenetetrahydrofolates (CH2-H4PteGlun) and tetrahydrofolates (H4PteGlun), and the distribution of their polyglutamate species have been examined. Bolus injection i.v., or 4-h or 24-h infusion of [6RS]leucovorin (500 mg/m2) yielded similar concentration profiles of the biologically active [6S] and inactive [6R] isomers of 5-CHO-H4-PteGlu and 5-methyltetrahydrofolate (5-CH3-H4PteGlu) in mouse plasma to those previously reported in humans, but with more rapid elimination half-lives (t1/2 = 11 to 16 min, 23 to 41 min, and 30 to 35 min, respectively). Thus, reduced folates remained elevated in plasma during the period of [6RS]leucovorin administration. In HxELC2 and HxGC3 tumors, pools of CH2-H4PteGlun and H4PteGlun were increased from 350% to 700% of control, but only during [6RS]leucovorin infusion. Intracellular levels subsequently declined rapidly, similar to the loss of reduced folates from plasma. Increasing the rate of [6RS]leucovorin delivery by decreasing the time for administration from a 24-h to a 4-h infusion did not further increase the intratumor pools of CH2-H4PteGlun and H4PteGlun, suggesting saturation in the cellular metabolism of [6RS]leucovorin. In HxGC3 tumors, CH2-H4PteGlu4-5 were elevated more rapidly than in line HxELC2, which accumulated predominantly a shorter chain length species following i.v. bolus injection. During the 4-h infusion schedule, di- and triglutamate species in particular accumulated in both tumors with no elevation in CH2-H4PteGlu5 until the infusion was discontinued, when this species increased as the shorter chain length forms were declining. However, during the 24-h infusion of [6RS]leucovorin, CH2-H4PteGlu3-5 were elevated in tumors. Since these species have been reported to increase the binding affinity of [6-3H]5-fluorodeoxyuridine monophosphate ([6-3H]FdUMP) to thymidylate synthase, and intratumor pools of CH2-H4PteGlun and H4PteGlun were elevated during the 24-h infusion of [6RS]leucovorin, this was considered to be the preferred schedule for administration.(ABSTRACT TRUNCATED AT 400 WORDS)

Adenocarcinoma↗

Patterns of antibiotic use and expenditures during 7 years at a university hospital.

Before 1982, annual retrospective drug-use audits clearly established the pattern of increased antibiotic use and expenditures at the University of Minnesota Hospital. At that point, a concurrent trend analysis system was developed to track this use by individual drug and therapeutic class, to identify trends in use for qualitative evaluation, and to provide an assessment of any intervention intended to alter use. Monthly use of all injectable antibiotics and antifungal agents, and selected oral antifungals has been tracked since 1982 as both defined daily doses and dollars. Use patterns in 1981 served as baseline. The defined daily dose index, which captures changes associated with intensity of antibiotic use per patient, increased 62% from baseline through 1988. This increase, however, resulted in a disproportionate 228% rise from baseline in antibiotic expenditures to nearly $3 million/year for 1988. The defined daily dose index peaked in 1985, declined in 1986, and remained stable for 1987 and 1988. Qualitative drug-use review programs were associated with this positive change. These results demonstrate the utility of concurrent trend analysis as a resource-management tool and as a measure of effectiveness for collaborative physician-pharmacist programs to foster safe, appropriate, and economical use of antiinfective agents.

Anti-Bacterial Agents↗

Measurement of skin-to-kidney distance in children: implications for quantitative renography.

Variation in skin-to-kidney center distance has been shown to have a significant influence on quantification of renal function with the gamma camera. Several techniques to compensate for this variability have been proposed in adults, yet it has been suggested that depth correction is not necessary for quantitative renography in children. Skin-to-kidney center distances were measured from computed tomograms in 53 supine pediatric patients. Nearly 40% of the kidneys examined varied more than 1 cm from the average renal depth, and 8% deviated more than 2 cm. Right kidney depth differed from left kidney depth by more than 1 cm in less than 10% of the patients. Measurements were in agreement with regression equations based on lateral scintigraphy in children, but were consistently underestimated by nomograms developed for skin-to-kidney center distance in adults. Failure to recognize interindividual variability in skin-to-kidney center distance can introduce significant errors in quantitative pediatric renography.

Body Constitution↗

Hepatic drug clearance in children: studies with indocyanine green as a model substrate.

For several drugs metabolized by the liver, higher dosages (mg/kg body weight) are required in children to attain serum concentrations comparable to those in adults. Indocyanine green (ICG), a commonly used model substrate for hepatic elimination of high intrinsic clearance drugs, has been extensively evaluated in adults but not in children. We evaluated the disposition of ICG in 115 children with leukemia and nine healthy adult volunteers. The mean (SD) ICG plasma clearance (CLp) for all 115 children (age 0.9-17.8 years) was significantly greater (p = 0.0006) than for adults [14.8 (7.8) versus 10.6 (2.4) mL/min/kg]. When clearances from only children less than 10 years of age (N = 85) were compared with those from adults, the difference was even greater [15.6 (7.3) versus 10.6 (2.4) mL/min/kg; p = 0.0001]. However, when ICG CLp was normalized to body surface area, values for children did not differ significantly from adults [378 (204) versus 422 (102) mL/min/m2]. These data provide insight as to why dosage (mg/kg) requirements of certain drugs are higher in children.

Adolescent↗

Clinical pharmacology of cancer chemotherapy in children.

The pharmacokinetics of most anticancer drugs are highly variable in children, and are commonly different when children are compared to adults. Several recent studies have demonstrated that variability in systemic exposure due to interpatient pharmacokinetic variability, may be related to the probability of oncolytic effects or toxicity for some anticancer drugs. This review has exemplified differences in the clinical pharmacology of several anticancer drugs, when children are compared to adults. Such age-related differences in the pharmacokinetics and pharmacodynamics of these drugs, together with biologic differences between pediatric and adult cancers, provide the rationale for systematically conducting pediatric phase I through IV studies of anticancer drugs and denote the risks of relying on adult trials to identify new therapeutic strategies for childhood cancers.

Adult↗

Anticancer therapy as a pediatric pharmacodynamic paradigm.

A series of clinical pharmacokinetic and pharmacodynamic studies of anticancer drugs has been conducted in children with cancer. Since these drugs typically have narrow therapeutic indices, frequently producing toxicities at dosages required for therapeutic effects, they represent an exemplary class of drugs for pediatric pharmacodynamic studies. Reviewed herein are pediatric pharmacokinetic studies of teniposide and high-dose methotrexate, which demonstrate age-related differences in the disposition of these two highly active anticancer drugs, and pharmacodynamic studies which demonstrate a relation between the disposition of these drugs and their clinical effects (efficacy and toxicity) in children with acute lymphocytic leukemia.

Antineoplastic Agents↗

Phase I clinical trial of orally administered 4-demethoxydaunorubicin (idarubicin) with pharmacokinetic and in vitro drug sensitivity testing in children with refractory leukemia.

Fifteen children with acute leukemia in relapse, refractory to conventional therapy, were treated with idarubicin administered orally for 3 consecutive days in dosages ranging from 30 to 50 mg/m2 per day at 19- to 21-day intervals. Gastrointestinal complications, including nausea, vomiting, abdominal pain, diarrhea and stomatitis, were the major forms of dose-limiting toxicity, affecting the majority of patients at all levels of idarubicin dosage. Two patients who had received total-body irradiation for bone marrow transplantation developed life-threatening gastrointestinal toxicity suggestive of a radiation "recall" phenomenon. Echocardiographic evidence of depressed cardiac function, without clinical symptoms or signs, was noted in six of 11 patients, although the changes were judged to be significant in only one child. The maximal tolerated oral dose of idarubicin was 40 mg/m2 per day. The medium terminal plasma half-life of idarubicin was 9.2 h (range, 6.4-25.5 h). Both idarubicin and its metabolite, idarubicinol, accumulated during the 3 days of therapy. Among the five patients with acute nonlymphoblastic leukemia whose cells were tested for drug sensitivity in vitro, the idarubicin concentration resulting in 50% inhibition (IC50) of cluster and colony formation ranged from 1.6 x 10(-10) M to 5 x 10(-7) M. There was no obvious relationship between the IC50 for idarubicin and that for epirubicin or daunorubicin. Oral idarubicin produced definite antileukemic effects, clearing blast cells from the circulation in 13 of the 14 evaluable patients. Future studies should define an optimal dose schedule to circumvent the limiting gastrointestinal complications associated with this agent.

Acute Disease↗

Pharmacokinetics and pharmacodynamics of urapidil in severe hypertension.

The clinical response and pharmacokinetics of intravenous urapidil were studied in patients with uncontrolled severe hypertension. Six of nine patients achieved a diastolic blood pressure (DBP) of 100 mm Hg after initial administration of serial bolus doses and were then placed on maintenance infusions. Three of these six patients maintained a DBP 100 mm Hg or lower at infusion rates of 10 to 20 mg/hr, whereas the remaining three patients experienced a loss of DBP control despite rates of 40 mg/hr. Mean DBP was significantly reduced from 126 +/- 6 mm Hg (N = 9) to 105 +/- 15 mm Hg after the bolus phase (N = 9, P less than .05) and 99 +/- 18 mm Hg after the infusion phase (N = 6, P less than .05). Significant reductions in systolic blood pressure were also achieved after bolus and infusion phases. Adverse reactions included drowsiness, tachycardia, nausea and vomiting but were considered mild. Estimated pharmacokinetic parameters included Vz (0.80 +/- 0.20 L/kg), CL (2.53 +/- 0.99 mL/min/kg) and t1/2 (4.0 +/- 1.5 hr). Urapidil safely reduces blood pressure in patients with severe hypertension. An alternative dosing regimen is suggested.

Adolescent↗

Phenytoin pharmacokinetics in critically ill trauma patients.

Preliminary data have suggested that phenytoin systemic clearance may increase during initial therapy in critically ill patients. The objectives for this study were to model the time-variant phenytoin clearance and evaluate concomitant changes in protein binding and urinary metabolite elimination. Phenytoin was given as an intravenous loading dose of 15 mg/kg followed by an initial maintenance dose of 6 mg/kg/day in 10 adult critically ill trauma patients. Phenytoin bound and unbound plasma concentrations were determined in 10 patients and urinary excretion of the metabolite p-hydroxyphenyl phenylhydantoin (p-HPPH) was measured in seven patients for 7 to 14 days. A Michaelis-Menten one-compartment model incorporating a time-variant maximal velocity (Vmax) was sufficient to describe the data and superior to a conventional time-invariant Michaelis-Menten model. Vmax for the time-variant model was defined as V'max + Vmax delta (1 - e(-kindt)). Vmax infinity is the value for Vmax when t is large. The median values (ranges) for the parameters were Km = 4.8 (2.6 to 20) mg/L, Vmax infinity = 1348 (372 to 4741) mg/day, and kind = 0.0115 (0.0045 to 0.132) hr-1. Phenytoin free fraction increased in a majority of patients during the study period, with a binding ratio inversely related to albumin. Measured urinary p-HPPH data were consistent with the proposed model. A loading and constant maintenance dose of phenytoin frequently yielded a substantial, clinically significant fall in plasma concentrations with a pattern of apparently increasing clearance that may be a consequence of changes in protein binding, induction of metabolism, or the influence of stress on hepatic metabolic capacity.

Adult↗

Clinical pharmacodynamics of continuous infusion teniposide: systemic exposure as a determinant of response in a phase I trial.

Teniposide (VM-26) is an effective anticancer drug usually administered as a short infusion in doses of 150 to 165 mg/m2. The objectives of the trial reported here were to evaluate clinical responses and assess pharmacokinetic parameters as a determinant of outcome when VM-26 was administered as a 72-hour continuous infusion (CI) with doses escalated from 300 to 750 mg/m2 per course. Twenty-eight patients with recurrent leukemia, lymphoma, or neuroblastoma received 53 courses of CI VM-26 and 16 had measurable responses. There were two partial remissions and one stable disease among seven neuroblastoma patients and 13 of 21 leukemia/lymphoma patients had oncolytic responses (greater than or equal to 75% decrease in circulating blasts). Toxicity included moderate to severe mucositis and myelosuppression. Pharmacokinetic parameters determined during 35 courses administered to 23 patients were highly variable. Clearance (CI) ranged between 3.7 and 43.8 ml/min/m2, resulting in VM-26 plasma concentrations from 2.8 to 30.6 mg/L across all dose levels. The interpatient pharmacokinetic variability reflected in CI and VM-26 steady state concentrations (Css), obscured any dose-response relationship. However, when pharmacokinetic parameters for responding and nonresponding patients were compared, statistically significant relationships were observed. For responders, the mean Css was 15.2 mg/L and mean CI was 12.1 mL/min/m2; for nonresponders, mean Css was 6.2 mg/L (P less than .01) and mean CI was 21.3 mL/min/m2 (P less than .05). Thus, patients with higher CI and lower Css were less likely to respond. Clinical responses occurred in ten of ten patients with Css greater than 12 mg/L, and only five of 13 patients with Css less than 12 mg/L (P less than .01). In this study, interpatient pharmacokinetic variability yielded a four- to sixfold difference in intensity of systemic exposure (Css) within the same dose level, which was an important determinant of clinical response. These data indicate that achieving a VM-26 target concentration for individual patients could ensure an increased intensity of systemic exposure in patients with a high CI and improve the likelihood of effective therapy.

Child↗

Pharmacokinetics of anticancer drugs in children.

Interpatient pharmacokinetic variability normally observed in adults is often of even greater magnitude in paediatric patients because of age-related maturation of physiological processes responsible for drug disposition. Several antineoplastic agents have shown age-related changes, including alterations in volume of distribution, hepatic (doxorubicin, cyclophosphamide), and renal (bleomycin, methotrexate) clearances. These differences in pharmacokinetics as a function of age alter systemic exposure to chemotherapy, and may alter the efficacy and toxicity profile for standard doses of antineoplastic drugs. The relationship of systemic exposure to toxicity has been most clearly defined for methotrexate. Clinical monitoring of methotrexate serum concentrations, and adjustment of folinic acid dosages and duration of rescue based on methotrexate disposition is now routine. More recently, pharmacodynamic data have been published for high-dose methotrexate, epipodophyllotoxins, cisplatin, and cytarabine (cytosine arabinoside), indicating a relation between drug disposition and toxicity or efficacy. Collectively, these data suggest that the pharmacokinetics of many anticancer drugs in children is different from adults, and that variability in drug disposition may have an important influence on toxicity or efficacy.

Adult↗

Disposition of phenytoin in critically ill trauma patients.

Estimates of phenytoin pharmacokinetic variables and protein binding were determined in 10 adult critically ill trauma patients. Each study subject received phenytoin sodium as an intravenous loading dose of 15 mg/kg, followed by an initial intravenous maintenance dose of 6 mg/kg/day. Serial blood samples were obtained throughout the seven-day study period and analyzed for total and unbound serum phenytoin concentrations. The concentration data for each patients were fitted to a one-compartment model with elimination defined by the Michaelis-Menten constant Km and the maximum rate of metabolism (Vmax) and to a one-compartment model with first-order elimination. The Michaelis-Menten model used Bayesian parameter estimation while the linear model used weighted non-linear least-squares regression analysis. Unbound phenytoin fraction ranged from 0.073 to 0.25. Free fraction increased 7% to 108% in 9 of 10 patients (median increase 29%) from day 1 to day 7 of therapy. Variable estimates using the Michaelis-Menten model were as follows: volume of distribution, 0.76 +/- 0.15 L/kg (0.58-1.01 L/kg); Vmax, 568 +/- 197 mg/day (350-937 mg/day); and Km, 4.5 +/- 1.8 mg/L (1.8-6.2 mg/L). These estimates fell within the wide range of values obtained in studies using stable patients or healthy volunteers. The Michaelis-Menten model was significantly less biased and more precise than the linear model. Three of four patients who continued to receive their study maintenance dose had substantially lower measured total serum concentrations of phenytoin than predicted using the study variable estimates.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Pharmacist interventions to improve prescribing of vancomycin and tobramycin.

The effect of clinical pharmacist interventions that promoted the use of nafcillin rather than vancomycin and of gentamicin rather than tobramycin, when appropriate, was evaluated. Physician information sheets and criteria describing appropriate use of the target drugs vancomycin and tobramycin were developed by a clinical pharmacist and infectious disease physicians. When drugs were prescribed for indications that did not meet the established criteria, the clinical pharmacist either contacted the prescribing physician or left the sheet in the patient's chart if the physician was not available. The average use of the target drugs and their alternatives was evaluated monthly during two six-month study periods and compared with the average use of these drugs during a three-month period before the target-drug programs were initiated. Throughout the 12-month study, on a per-patient basis, nafcillin use increased 31% while vancomycin use decreased 27% compared with the reference period; gentamicin use increased 21% while tobramycin use decreased 12% during the same period. These changes in use resulted in a net decrease in drug expenditures of $161,396. Approximately 0.5 full-time equivalent was spent on the program, and the return on investment for the service was greater than 10 to 1. Clinical pharmacist interventions through target-drug programs were effective in improving the appropriateness of vancomycin and tobramycin prescribing based on literature-derived criteria. The effects achieved by these interventions may decrease with time, and ongoing drug-use monitoring and physician education are necessary.

Anti-Bacterial Agents↗

Pharmacokinetics of fentanyl in neonates.

The pharmacokinetics of fentanyl were studied in fourteen neonates undergoing major surgical procedures. Five patients were less than 1 day of age, seven were 1-4 days old, and two were 7-14 days old. Fentanyl was given intravenously, 10 micrograms/kg (n = 1), 25 micrograms/kg (n = 4), or 50 micrograms/kg (n = 9), and plasma concentrations measured at intervals of up to 18 hr. Average weight was 2.9 kg. The injection of 25 or 50 micrograms/kg of fentanyl over 1-3 min was hemodynamically well-tolerated by all patients. Four newborns without respiratory impairment secondary to surgery or disease needed ventilatory support for an average of 24 hr (range 11-40 hr). Plasma concentrations of fentanyl were most appropriately described by a two-compartment model. The mean +/- SEM values of selected model parameters were volume of the central compartment, 1.45 +/- 0.34 L/kg; volume of distribution at steady state, 5.1 +/- 1 L/kg; clearance, 17.94 +/- 4.38 ml X kg-1 X min-1; and terminal elimination half-life (t 1/2 beta), 317 +/- 70 min. In seven patients transient rebound in plasma fentanyl concentrations of 0.5 ng/ml or greater occurred. In three patients with markedly increased intraabdominal pressure, the t 1/2 beta was 1.5-3 times the population mean. Thus fentanyl disposition in neonates is highly variable, but the t 1/2 beta is predictably prolonged in the presence of increased abdominal pressure.

Age Factors↗

Clinical studies with computer-assisted initial lidocaine therapy.

A randomized prospective study compared achievement and maintenance of therapeutic plasma concentrations in patients receiving computer-assisted (CA) initial lidocaine hydrochloride therapy, designed pharmacokinetically to achieve and maintain a chosen plasma concentration, v conventional lidocaine therapy (CT). A separate audit of outcome was also conducted. The CA regimens provided more effective concentrations in the first hour than did CT, 2.65 v 1.5 micrograms/mL average. In the audit, ventricular fibrillation occurred in two of 78 CA v eight of 78 CT patients. Dosage adjustments were required in two CA patients v 33 CT patients. The CA therapy improved therapeutic precision, reduced dosage adjustments, and may have improved safety during initial lidocaine therapy before fitting to plasma concentration data for subsequent feedback. An improved clinical computer program now also fits to plasma concentration data. It is accessed and used routinely by hospitals over an international time-sharing network.

Aged↗

N-Acetylprocainamide kinetics and clinical response during repeated dosing.

Kinetics of and clinical responses to N-acetylprocainamide (NAPA) were evaluated in 10 patients with chronic ventricular arrhythmias who had not responded to usual doses of currently available antiarrhythmic drugs. Kinetic data analysis was by measured NAPA concentrations (n = 149) collected during repeated dosing. Response was evaluated with serial 24-hr ambulatory ECGs. An a priori kinetic model based on earlier studies predicted NAPA concentrations well (r = 0.94, SEE = 3.6 mg/l). The capability for defining patient-specific estimates for drug disposition with six or seven serum concentrations measured at the outset of therapy was subsequently confirmed with larger data sets from the same patients. Mean values for elimination rate (0.082 hr -1 +/- 0.017) and volume of distribution (1.25 l/kg +/- 0.28) were of the same order as in earlier single-dose studies. A substantial degree of interpatient and intrapatient variability in the absorption rate for NAPA was observed. NAPA was not found to be clinically effective in any of the 10 patients, although two patients demonstrated a greater than 70% reduction in frequency of premature ventricular contractions. There were adverse effects in all patients, which frequently required dose reduction or cessation of therapy. In this group of patients with resistant arrhythmias, NAPA was no more effective than baseline therapy, and adverse effects often limited complete evaluation. The kinetic analysis demonstrated the feasibility of a strategy for developing patient-specific kinetic models that may have applications to other antiarrhythmic drugs.

Acecainide↗