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Biomedical subjects

J H Rodman

Publications and source records attributed to J H Rodman.

At least 19 recordsLinked to original sources

Pharmacokinetics of subcutaneous recombinant human granulocyte colony-stimulating factor in children.

Fifteen children (age 1.2 to 9.4 years) with advanced neuroblastoma were treated with myelosuppressive chemotherapy (cyclophosphamide, cisplatin, doxorubicin) followed by 5 (n = 5), 10 (n = 5), or 15 (n = 5) micrograms/kg recombinant granulocyte colony-stimulating factor (rG-CSF) subcutaneously (SC) once daily for 10 days, starting the day after chemotherapy. Serial serum samples obtained on days 1 and 10 were analyzed for G-CSF activity by a specific proliferation assay using NFS-60 cells. G-CSF serum concentration-time data were best described by a one-compartment model, with zero-order absorption and first-order elimination. After SC injection, absorption was prolonged, with peak concentrations of G-CSF (3 to 117 ng/mL) being reached after 4 to 12 hours. The relatively slow absorption, with a mean elimination half-life of 5.8 hours on day 1 and 4.5 hours on day 10, provided measurable G-CSF concentrations for the entire 24-hour dosing interval in all patients at each dosage level. The median apparent clearance of G-CSF on day 10 was significantly higher than on day 1 (0.57 v 0.31 mL/min/kg, P = .02), and was positively correlated with the absolute neutrophil count (ANC) (r2 = .33, P = .003). Systemic exposure to G-CSF was dose-related, but interpatient pharmacokinetic variability yielded overlap in area under the concentration-time curve (AUC) at all three dosage levels. Stepwise regression analysis showed that G-CSF AUC could be predicted by a model that includes rG-CSF dosage and ANC on the day of administration (r2 = .82, P = .0001).

Absorption

The pharmacokinetics of high-dose carboplatin in pediatric patients with cancer.

Carboplatin disposition was studied in 18 pediatric patients with cancer over a dosage range of 400 to 700 mg/m2 given on an alternate-day schedule (total doses of 1200 to 2100 mg/m2) with high-dose etoposide. Median age was 7.7 years, hepatic functions were normal, and serum creatinine levels were less than or equal to 1.0 mg/dl. Carboplatin pharmacokinetics were determined by atomic absorption spectroscopy. Median pharmacokinetic parameters for ultrafilterable platinum were as follows: clearance 45.8 ml/min/m2 (range, 25.5 to 65.3 ml/min/m2) and a terminal half-life of 3.6 hours (range, 2.1 to 14.2 hours). Carboplatin clearance (CL) values and volume of distribution (VC) were highly correlated to body size (CL = 55 x Body surface area in [BSA, in square meters] - 6.7, r2 = 0.73; VC = 5 x BSA [in square meters] + 0.26, r2 = 0.69). However, carboplatin doses normalized to BSA still resulted in twofold to threefold variability in area under the concentration-time curve. Carboplatin CL was significantly lower in those subjects (n = 9) who had previously received cumulative cisplatin doses of greater than or equal to 960 mg/m2 (p less than 0.05) but was not influenced by age, gender, or diagnosis.

Adolescent

Increased teniposide clearance with concomitant anticonvulsant therapy.

PURPOSE: A possible pharmacokinetic interaction between teniposide and anticonvulsant medications was evaluated in pediatric patients. PATIENTS AND METHODS: The systemic clearance of teniposide was determined in six pediatric patients with acute lymphocytic leukemia receiving concomitant therapy with anticonvulsants. Clearance was then compared with a control group of patients treated with the same protocol therapy and matched for age at diagnosis, sex, and race but not receiving anticonvulsants or other agents known to induce hepatic metabolism or alter protein binding of drugs. Eight blood samples were obtained during and after 4-hour infusions of teniposide, and plasma concentrations were measured by a specific high-performance liquid chromatography (HPLC) assay. A two-compartment model was fitted to each subject's data. RESULTS: The mean systemic clearance (range) for the six anticonvulsant-treated patients studied during 22 courses of therapy was 32 mL/min/m2 (range, 21 to 54 mL/min/m2), significantly higher (P less than .001) than the mean value of 13 mL/min/m2 (range, 7 to 17 mL/min/m2) for the control patients studied during 26 courses of therapy. Clearance estimates for control patients were similar to previously published values for pediatric patients. CONCLUSION: These data indicate that the systemic clearance of teniposide is consistently increased two- to three-fold by concomitant phenobarbital or phenytoin therapy. The consequent substantial reduction in systemic exposure may reduce teniposide's efficacy.

Adolescent

Disposition of antineoplastic agents in the very young child.

Maturation of physiologic process which govern the disposition of pharmacologic agents can yield significant changes in absorption, distribution, metabolism, and elimination of drugs in neonates, infants and children. However, there are very little data concerning the disposition of anticancer drugs in young children. Pharmacokinetic data for six anticancer agents were compared in infants less than 1 year of age and children greater than 1 year of age treated at St Jude Children's Research Hospital. No pharmacokinetic data were available for infants less than 2 months of age. Median methotrexate clearance tended to be lower in four infants (0.26-0.99 years) vs 108 children (1-19 years): 80 vs 103 ml min-1 m-2, respectively (P = 0.01). There was no difference in the median 42 h methotrexate concentration. Teniposide systemic clearance and terminal half-life and cytarabine systemic clearance were not different between the two groups. There was no significant difference in etoposide systemic clearance when normalised to body surface area (ml min-1 m-2), however a significantly lower systemic clearance relative to body weight (ml min-1 kg-1) was observed in two infants, 0.5 to 1 year of age, vs 23 children, 3-18 years of age. Doxorubicin systemic clearance was not significantly different between the two groups when systemic clearance was expressed in ml min-1 kg-1. However, there was a trend toward a lower rate of systemic clearance in ml min-1 m-2 in infants.(ABSTRACT TRUNCATED AT 250 WORDS)

Age Factors

Variability in teniposide plasma protein binding is correlated with serum albumin concentrations.

Teniposide is a widely used anticancer drug that is extensively bound to plasma proteins (greater than 95%). We evaluated the drug's plasma protein binding in nine patients with acute lymphocytic leukemia who were in their first complete remission, and in a second group of nine patients at the time of relapse and subsequently after achieving another complete remission. Plasma protein binding was assessed by equilibrium dialysis, with direct high-performance liquid chromatographic measurement of total and free teniposide. The mean unbound fraction was 0.44% (0.21-0.88%) in the plasma of patients in first remission. It was significantly higher in patients at the time of relapse (mean = 0.86%; range 0.68-1.08%) and after achieving another complete remission (mean = 1.25%; range 0.51-2.11%). Serum albumin values were significantly lower at the time of relapse (mean = 4.6 vs 4.0 mg/dl; p less than 0.014), and decreased further during intensive postremission therapy containing L-asparaginase (mean = 3.2; p less than 0.05). For all 18 patients, a significant negative correlation (r2 = 0.667; p less than 0.001) was found between serum albumin and unbound teniposide, with low albumin being associated with higher unbound fraction. Such patients have higher systemic exposure to unbound (presumably active) teniposide at any given total plasma concentration of the agent.

Adolescent

Differences in teniposide disposition and pharmacodynamics in patients with newly diagnosed and relapsed acute lymphocytic leukemia.

Teniposide, a widely used investigational anticancer drug, is extensively bound to plasma proteins (greater than 95%). The present study evaluated the clearance and pharmacodynamics of total and unbound teniposide in patients with acute lymphocytic leukemia who were either in first complete remission or who had relapsed and achieved a subsequent complete remission. When compared to values of patients in first remission, the mean total systemic clearance of teniposide in relapsed patients was significantly lower at the time remission reinduction therapy was initiated, but increased to values greater than first remission patients after a subsequent remission was achieved. However, the mean clearance of unbound teniposide (ml/min/m2) was 3-fold lower in relapsed patients during reinduction therapy (1224 vs. 4261, P less than .0001), and improved but remained low after these patients achieved a subsequent remission (1965, P = .025). Changes in plasma protein binding accounted for the increase in total clearance when unbound clearance decreased. Continuous therapy with L-asparaginase was the major treatment difference in those patients with hypoalbuminemia and lower clearance of unbound teniposide. In 15 evaluable patients in complete remission, there was a statistically significant (P = .039) linear correlation between the percentage decrease in white blood cell count and the systemic exposure (AUC) to unbound teniposide, with higher exposure associated with a greater decrease in white blood cell count. There was not a significant correlation between the percent decrease in white blood cell count and the dosage given or the systemic exposure to total teniposide.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent

Hypersensitivity reactions to epipodophyllotoxins in children with acute lymphoblastic leukemia.

The incidence, clinical characteristics, and outcome of hypersensitivity reactions to teniposide (VM-26), etoposide (VP-16), or both were determined in 108 children with acute lymphoblastic leukemia (ALL) treated with a contemporary regimen of intensive multiagent chemotherapy. Fifty (46%) of the 108 patients had one or more hypersensitivity reactions. The risk of any child having an initial reaction over the cumulative dose range studied was 52% (95% confidence limits, 41% and 63%) for VM-26, compared with 34% (95% confidence limits, 24% and 44%) for VP-16. The risk of having an initial reaction to VM-26 or VP-16 was clearly related to the cumulative dose. This risk peaked at 1500 to 2000 mg/m2 for VM-26 and at 2000-3000 mg/m2 for VP-16. All reactions were Type 1 reactions according to the Gell and Coombs classification, characterized by urticaria, angioedema, flushing, rashes, or hypotension, and 86% of reactions were of Grade 1 or 2 severity according to standard criteria. There was no evidence of increasing clinical severity on repeated rechallenge with premedication, and no deaths occurred. The findings suggested that hypersensitivity reactions to epipodophyllotoxins in children with ALL are more common than previously reported, but only rarely constitute dose-limiting toxicity.

Adolescent

Concept of maximum tolerated systemic exposure and its application to phase I-II studies of anticancer drugs.

The traditional approach to conducting Phase I studies of anticancer drugs is to select a starting dosage for humans based on preclinical data (e.g., mg equivalent of 1/10 LD10 in mice), then empirically escalate dosages in cohorts of patients until the maximum tolerated dosage (MTD) is established. More recently, NCl and EORTC investigators have advocated the use of pharmacokinetic data from preclinical studies to facilitate more rapid dose escalation (e.g., double the dose until the area under the concentration-time curve [AUC] in humans equals the AUC in mice at the LD10). The present paper describes a strategy which builds on the above approach, by extending the application of pharmacokinetic principles to systematically escalate systemic exposure (AUC) instead of dosage in Phase I trials. Human trials are initiated at whatever patient-specific dosage is required to achieve an AUC equal to 1/10 the AUC in mice at the LD10, such that three patients at the first treatment level might receive three different dosages. If no dose-limiting toxicity is observed, the next cohort of patients receives whatever dosage is required to achieve 2 x AUC of the first dosage level, with AUC escalation continuing until the maximum tolerate systemic exposure (MTSE) is reached. By escalating systemic exposure instead of dosage, one adjusts for interpatient pharmacokinetic variability. This strategy will permit more rapid and precise dosage escalations and, more importantly, it should more precisely establish the maximum level of treatment intensity for future Phase II trials.

Antineoplastic Agents

Somnolence, hypotension, and metabolic acidosis following high-dose teniposide treatment in children with leukemia.

This report describes an unexpected adverse effect in three children receiving teniposide at 3-5 times the conventional dosage (i.e. 200 mg/m2) plus cytarabine as part of continuation therapy for acute lymphocytic leukemia. Pharmacokinetic studies in each patient had demonstrated high teniposide clearances, and thus the increased dosage requirements were necessary to attain plasma concentrations similar to those expected for patients with average drug clearance. At 3-4 h after the beginning of the 4-h simultaneous infusions of teniposide and cytarabine, these patients experienced somnolence, hypotension, and metabolic acidosis. The adverse events were associated with elevated teniposide plasma concentrations during the infusions compared with those in patients receiving similar doses without toxicity, and clinically significant ethanol concentrations, presumably from the teniposide formulation. Blood concentrations of cremophor and histamine, which are also constituents of the teniposide formulation, were not measured. In addition, concomitant therapy with antiemetic agents in patients who may have been mildly volume-depleted due to emesis may also play a contributory role. Prolonging the infusion time for patients receiving teniposide doses above 500 mg/m2 will avoid excessive teniposide and ethanol plasma concentrations and minimize the risk of this potentially serious side effect.

Acidosis

Pharmacokinetics of continuous-infusion amsacrine and teniposide for the treatment of relapsed childhood acute nonlymphocytic leukemia.

The systemic disposition of both amsacrine and teniposide was determined in children receiving treatment for resistant acute nonlymphocytic leukemia. As part of a phase I-II study, amsacrine and teniposide were given as continuous 72-h i.v. infusions at doses of 75-150 and 150-250 mg m-2 day-1, respectively. Plasma samples obtained during steady state were analyzed for drug concentrations by high-performance liquid chromatography assays specific for each compound. Clearance and systemic exposure values for both amsacrine and teniposide were calculated for 14 patients, and data were available for teniposide alone in an additional 14 subjects. Interpatient variability in clearance was substantial for each drug, producing overlapping systemic exposure across dose levels. No evidence of dose-dependent drug clearance was evident. Clearance values for teniposide given in combination with amsacrine were similar to previous values obtained when teniposide was given in an identical manner but as a single agent. In all, 80% of patients experienced some degree of mucositis after chemotherapy administration. Severe mucositis (Pediatric Oncology Group grades 3-4) occurred in 18% of cases, all of whom showed teniposide steady-state plasma concentrations above the median population value (11.9 micrograms/ml; P less than 0.0001). A comparison of the results of the present study on teniposide combined with amsacrine with those previously obtained for single-agent teniposide suggest that amsacrine produced little additive gastrointestinal toxicity. The evaluation of anti-cancer drug pharmacokinetics in individual patients during combination chemotherapy regimens helps to determine the relative importance of each agent when toxicity patterns are similar.

Adolescent

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