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Biomedical subjects

F M Balis

Publications and source records attributed to F M Balis.

At least 127 records · Page 7Linked to original sources

Pediatric phase I trial and pharmacokinetic study of piritrexim administered orally on a five-day schedule.

Piritrexim, a new nonclassical antifolate, was evaluated in a multiinstitutional phase I trial in children. The starting dose was 290 mg/m2/day, administered p.o. every 12 h for 5 consecutive days, with courses repeated every 21 days. Dose reduction, initially to 200 mg/m2/day and subsequently to 140 mg/m2/day, was required because dose limiting myelosuppression and mucositis were encountered at the 290- and 200-mg/m2/day dose levels. Non-dose limiting toxicities included transient elevations in liver function tests, mild nausea, and skin rashes. The maximum tolerated dose was 140 mg/m2/day for 5 days. Pharmacokinetic monitoring was performed at steady state during the first course. For the 140-, 200-, and 290-mg/m2/day dose groups, the mean +/- SE peak plasma concentrations were 5.3 +/- 0.84, 9.3 +/- 1.7, and 10.2 +/- 2.3 microM, respectively, and occurred at a median of 1.5 h following the p.o. dose. The mean area under the plasma concentration-time curves were 18.1 +/- 2.3, 45.4 +/- 8.9, and 56.9 +/- 16.3 microM.h, respectively. Absolute bioavailability in two patients who were also monitored following a single i.v. dose of 140 and 200 mg/m2/day of piritrexim was 35 and 93%, respectively. Dose limiting toxicities were observed in 9 of 10 patients with 12-h trough piritrexim concentrations greater than 0.5 microM, whereas only 2 of 7 patients with trough concentrations less than 0.5 microM experienced dose limiting toxicities. A limited pharmacokinetic sampling strategy that allowed the area under the plasma concentration-time curve to be accurately predicted from the 3- and 6-h plasma drug concentration was developed. The recommended dose for future phase II trials is 140 mg/m2/day administered p.o. every 12 h for 5 consecutive days. Pharmacokinetic monitoring at 3, 6, and 12 h postdose may be useful for estimating bioavailability and for predicting which patients are at greatest risk for developing toxicity.

Adolescent↗

High-performance liquid chromatographic method for analysis of 2',3'-dideoxyinosine in human body fluids.

A paired-ion high-performance liquid chromatographic method was developed to measure concentrations of 2',3'-dideoxyinosine (ddI) in human plasma, urine and cerebrospinal fluid. Samples were prepared using a solid-phase extraction technique which allows for a five-fold concentration of the drug. 2'-Deoxyguanosine was added as an internal standard prior to the extraction. Recoveries for 2'-deoxyguanosine and ddI were 80 +/- 15 and 85 +/- 10%, respectively. Extracted samples were then injected onto a C18 column and eluted isocratically with a mobile phase containing 0.1% of the ion-pairing reagent, heptafluorobutyric acid, and 5% acetonitrile. The retention time was 7.4 min for 2'-deoxyguanosine and 8.4 min for ddI. The lower limit of detection for ddI is 0.1 microM. Using this technique the acid lability of ddI was demonstrated and the plasma concentration versus time profile from a patient receiving the drug was examined.

Administration, Oral↗

Penetration of SCH-39304, a new antifungal triazole, into cerebrospinal fluid of primates.

We characterized the cerebrospinal fluid (CSF) penetration and pharmacokinetics of SCH-39304 in adult rhesus monkeys receiving a single oral dose of SCH-39304 (2.0 mg/kg of body weight). The mean CSF-to-plasma area under the curve ratio was 0.63 (+/- 0.18, standard error of the mean); maximum concentrations were 1.34 micrograms/ml (+/- 0.18) in CSF and 1.96 micrograms/ml (+/- 0.43) in plasma. The mean plasma half-life was 45.7 h (+/- 11), and mean CSF half-life was 38.7 h (+/- 3.5). The mean levels of SCH-39304 at 24 h were 1.48 micrograms/ml (+/- 0.3) in plasma and 0.96 microgram/ml (+/- 0.12) in CSF. We conclude that SCH-39304 effectively penetrates into CSF and achieves concentrations considered active against many opportunistic yeasts and that these concentrations are sustained in CSF for greater than or equal to 24 h.

Animals↗

A rhesus monkey model for continuous infusion of drugs into cerebrospinal fluid.

A new rhesus monkey model with two intraventricular catheter systems was developed to examine the pharmacokinetics and neurotoxicity of chemotherapeutic agents administered by continuous intraventricular infusion. A lateral ventricular catheter system implanted in the lateral ventricle and attached to a subcutaneous access port on the animal's back is used for infusion of drugs into the ventricle. A Pudenz catheter implanted in the fourth ventricle and connected to a subcutaneous Ommaya reservoir permits repetitive CSF sampling in unanesthetized animals. The model was evaluated in five animals for over 12 months for catheter patency, surgical complications, and utility in studying the pharmacokinetics of continuous intraventricular infusion of methotrexate. There were no perioperative complications. Three of the five monkeys maintained both systems successfully. The other two animals developed staphylococcal ventriculitis, one at 7 days as a result of manipulation of the incision by the animal leading to cellulitis around the catheter site and subsequent ventriculitis, the other at 5 months. Both animals were treated successfully with antibiotics and catheter removal. An infusion of 0.05 mg of methotrexate over 24 hours maintained ventricular drug concentrations of 1 mol/L without evidence of neurotoxicity. This new model has applications both for the development of continuous intraventricular infusion as a therapeutic approach for the treatment of meningeal cancers in humans and as a research tool to study the distribution and elimination of drugs from the CSF.

Animals↗

Pharmacology and drug resistance in childhood lymphoblastic leukemia.

In the first part of this article, the pharmacology of the chemotherapeutic agents used in the treatment of childhood lymphoblastic leukemia is reviewed, detailing their mechanisms of action, pharmacokinetics, and toxicities. A section on central nervous system pharmacology discusses advances made in the treatment of meningeal leukemia. Mechanisms of drug resistance are discussed in the second section of the article, outlining the biochemical basis for and clinical implications of both agent-specific resistance and multidrug resistance.

Antineoplastic Agents↗

Phase I trial and pharmacokinetic evaluation of fazarabine in children.

A phase I trial of fazarabine (1-beta-D-arabinofuranosyl-5-azacytosine, NSC 281272) administered as a 24-h continuous infusion was performed in 16 children with refractory malignancies. Dose-limiting toxicity consisting of reversible granulocytopenia and thrombocytopenia was observed in 4 of 4 solid tumor patients treated at the starting dose of 20 mg/m2/h. Subsequent patients were treated at a dose of 15 mg/m2/h which was determined to be the maximum tolerated dose. Moderate nausea and vomiting were the only other toxicities observed. Plasma steady-state concentrations of fazarabine were attained by 2-4 h in all patients and were 1.8 and 2.5 microM at the 15- and 20-mg/m2/h doses, respectively. The total body clearance of fazarabine was 571 and 550 ml/min/m2 at the 15- and 20-mg/m2/h doses, respectively. In three of four patients evaluated, fazarabine was detectable in the cerebrospinal fluid (CSF). Steady-state CSF concentrations ranged from 0.29 to 0.74 microM in these three individuals and the steady-state CSF:plasma ratios ranged from 0.22-0.25. Both the plasma and CSF steady-state concentrations were within the 0.1 to 1 microM range reported to be cytotoxic in vitro against the Molt-4 human T-lymphoblastic leukemia cell line. Based on the above, the optimal dose for phase II trials of fazarabine administered as a 24-h infusion is 15 mg/m2/h (360 mg/m2/day).

Antimetabolites, Antineoplastic↗

The pharmacokinetics of zidovudine administered by continuous infusion in children.

STUDY OBJECTIVE: To define the pharmacokinetics of zidovudine (azidothymidine) in children with human immunodeficiency virus infection. DESIGN: Plasma, urine, and cerebrospinal fluid were obtained following a single 80 mg/m2 body surface dose infused over 1 hour (n = 9), and during a continuous infusion of 0.5 (n = 3), 0.9 (n = 8), 1.4 (n = 7), or 1.8 (n = 3) mg/kg body weight per hour. SETTING: Outpatient clinic and inpatient ward of the Pediatric Branch of the National Cancer Institute. PATIENTS: Twenty-one children (seventeen boys) ranging in age from 14 months to 12 years with symptomatic human immunodeficiency virus infection who were being treated on a phase I-II study of continuous intravenous infusion zidovudine. MEASUREMENTS AND MAIN RESULTS: Zidovudine disappearance following bolus administration was rapid and biexponential with half-lives of 9.6 and 92 minutes, and a total clearance of 705 +/- 330 mL/min.m2. Zidovudine remained above 1 mumol/L, the optimal virostatic concentration in vitro, for only 1.5 hours. In contrast, with continuous infusion steady-state plasma zidovudine concentrations (Css) were maintained above 1 mumol/L continuously, even at the lowest infusion rate. At steady state the ratio of cerebrospinal fluid zidovudine concentration to plasma was 24% +/- 9%. Patients who developed severe neutropenia (absolute neutrophil count less than 0.5 X 10(9)/L) on the continuous infusion regimen had significantly higher plasma Css. Six of eight had a Css greater than 3.0 mumol/L. CONCLUSIONS: Pharmacokinetic parameters show that continuous infusion is better than an intermittent schedule in maintaining minimal virostatic concentrations of the drug with a lower daily dose.

Acquired Immunodeficiency Syndrome↗

Pharmacokinetics of zidovudine administered intravenously and orally in children with human immunodeficiency virus infection.

Zidovudine pharmacokinetics were determined in 16 children with human immunodeficiency virus infection who were being treated intravenously and orally on an intermittent schedule (every 6 hours). The intravenous doses studied were 80 (n = 3), 120 (n = 4), and 160 (n = 5) mg/m2/dose, infused over 1 hour. Fourteen patients were monitored after an oral dose of zidovudine at 120 (n = 2), 180 (n = 7), or 240 (n = 5) mg/m2/dose. Zidovudine was assayed with a reverse-phase high-pressure liquid chromatography method. Zidovudine disappearance after intravenous administration was rapid and biexponential, with half-lives of 14 and 90 minutes and a total clearance of 641 +/- 161 ml/min/m2. The volume of distribution at steady state was 45 +/- 28 L/m2. These pharmacokinetics parameters are very similar to those reported in adults. When administered orally, zidovudine was rapidly absorbed. The fraction of the oral dose that was bioavailable was 0.68 +/- 0.25, so that a 50% increment in the dose, in the conversion from intravenous to oral administration, resulted in plasma zidovudine concentrations after oral dosing that were nearly identical to those achieved with the 1-hour intravenous infusion. However, a dose of 180 mg/m2 given orally every 6 hours maintained plasma zidovudine concentrations in the target range of 1 mumol/L for less than half of the dosing interval. Other schedules, routes of administration, or oral drug formulations may have to be considered if sustained continuous exposure to micromolar zidovudine concentrations is desired.

Acquired Immunodeficiency Syndrome↗

Central nervous system pharmacology of antileukemic drugs.

The blood-brain barrier provides a pharmacologic sanctuary for leukemic cells within the central nervous system (CNS), protecting them from the cytotoxic effects of systemic antileukemic therapy. Attempts to overcome this problem have included specific CNS-directed treatment in the form of direct intrathecal drug injection, cranial irradiation, and alteration in the dose and schedule of systemic agents to enhance their CNS penetration. Use of these treatments and strategies has led to the effective prevention and control of meningeal leukemia. Intrathecal therapy, primarily with methotrexate or cytosine arabinoside, is a form of regional chemotherapy that can achieve very high drug concentrations at the target site [i.e., in the meninges and cerebrospinal fluid (CSF)] with a low total dose. Therefore, there is minimal systemic toxicity. The dose and schedules, clinical pharmacology, and toxicities of the commonly used intrathecal agents are discussed in detail in this article. Another approach to overcoming the limited penetration of antileukemic drugs into the CNS has been the use of high-dose systemic therapy. Methotrexate and cytosine arabinoside in high doses have produced favorable clinical responses in patients with overt meningeal disease, and pharmacokinetic studies have documented cytotoxic concentrations of these drugs within the cerebrospinal fluid. A clear understanding of the CNS pharmacology of the antileukemic drugs is required in order to use these agents in the safest and most efficacious manner for the treatment of meningeal leukemia.

Antineoplastic Agents↗

Pharmacokinetics of subcutaneous azidothymidine in rhesus monkeys.

The pharmacokinetics of subcutaneous bolus and continuous infusion azidothymidine (AZT) was studied in rhesus monkeys. Three animals received 100 mg/m2 as a bolus injection both intravenously and subcutaneously, with the order of administration randomly determined. Two animals received a continuous subcutaneous infusion of 25 mg/m2 per h for 12 or 24 h. AZT was measured in plasma by a reverse-phase high-pressure liquid chromatographic assay. Following intravenous bolus administration, AZT elimination was rapid, with a mean half-life of 1.2 h and a mean clearance of 318 ml/min per m2 (range, 200 to 441 ml/min per m2). The bolus subcutaneous dose was rapidly (time to peak concentration, 15 to 30 min) and nearly completely (fraction absorbed, 92%) absorbed without evidence of local tissue toxicity. With continuous subcutaneous infusion of AZT, the steady state was attained within 4 h and steady-state concentrations in plasma in the two animals exceeded 3.0 mumol/liter. No local tissue toxicity was observed at the infusion site. The subcutaneous route may be a practical alternative to intravenous administration of AZT and deserves further clinical study.

Animals↗

Selective intraperitoneal biochemical modulation of methotrexate by dipyridamole.

Dipyridamole increases the toxicity of methotrexate in a concentration-dependent manner. We hypothesized that concurrent intraperitoneal administration of both drugs would result in high peritoneal concentrations with much lower plasma concentrations, permitting a selective increase in the activity of methotrexate against intraperitoneal tumors without enhancing systemic toxicity. Initially, 2.16 mg/m2/d methotrexate and 12 mg/m2/d dipyridamole were delivered together as a constant intraperitoneal infusion for 48 hours. With escalation of chemotherapy, eventually 4.32 mg/m2/d methotrexate was administered for 168 hours. Forty-seven courses were administered to 18 patients. The mean peritoneal to plasma concentration ratios of methotrexate and non-protein bound dipyridamole were 71.6 +/- 34.8 and over 2,300, respectively. Chemical peritonitis was the dose-limiting toxicity. Three patients had some evidence of a response (two with decreasing tumor markers, and the third with a reduction in ascites). We conclude that the drug concentrations are in an appropriate range for selective intraperitoneal biochemical modulation of methotrexate, and that it is feasible to expose tumors confined to the peritoneal cavity to these drugs for long periods of time.

Adult↗

Expression of the mdr-1/P-170 gene in patients with acute lymphoblastic leukemia.

Increased expression of the multidrug resistance gene (mdr-1/P-170) and the dihydrofolate reductase (DHFR) gene have been implicated in the development of in vitro drug resistance. Overexpression, with or without gene amplification, is seen in the development of drug resistance in culture and it has been postulated that genetic modulation of mdr-1/P-170 and DHFR may also be involved in the development of clinical drug resistance. We screened lymphoblasts from 28 patients with acute lymphoblastic leukemia (ALL) for evidence of overexpression of mdr-1/P-170 using RNAse protection, RNA in situ hybridization and immunohistochemistry. Overexpression of mdr-1/P-170 without gene amplification was detected in samples from four patients (three after multiple relapses, one at presentation). Overexpression of mdr-1/P-170 was heterogeneous within the population of malignant lymphoblasts as demonstrated by RNA in situ hybridization, immunohistochemistry, and drug uptake using daunomycin autofluorescence analysis. There was no evidence of overexpression of DHFR in any of the eight patient samples tested by RNAse protection nor was there any evidence of gene amplification in 11 patient samples on Southern blot analysis. From these observations it appears that overexpression without gene amplification of mdr-1/P-170 may be one mechanism of clinical drug resistance in ALL.

Adolescent↗

Chronopharmacokinetics of oral methotrexate and 6-mercaptopurine: is there diurnal variation in the disposition of antileukemic therapy?

The chronopharmacokinetics of the orally administered antileukemic drugs, 6-mercaptopurine and methotrexate, were examined in 13 children with acute lymphoblastic leukemia (ALL) to establish if there is a pharmacokinetic basis for the lower relapse rate associated with administration of these agents in the evening. Children with ALL in complete remission had plasma drug concentrations monitored for 8 h following an oral dose of either methotrexate or 6-mercaptopurine administered in the morning (8 a.m.) and the evening (8 p.m.). Total drug exposure to oral methotrexate, as measured by the mean area under the plasma concentration-time curve (AUC), was 2.75 microM.h following the morning dose and 2.77 microM.h in the evening. For 6-mercaptopurine, the mean morning AUC (198 ng.h/ml) was higher than that following the evening dose (167 ng.h/ml) (p greater than 0.05); but compared to the wide interpatient variability observed with this drug, this 20% difference is not likely to be clinically significant. These results indicate that the suggested benefit of evening drug administration is not likely to be a result of diurnal variation in drug disposition.

Administration, Oral↗

Effect of continuous intravenous infusion of zidovudine (AZT) in children with symptomatic HIV infection.

To produce concentrations of zidovudine (AZT) in plasma and cerebrospinal fluid that would provide constant inhibition of the replication of human immunodeficiency virus (HIV), we gave AZT by continuous intravenous infusion to 21 children ranging in age from 14 months to 12 years who had acquired HIV infection through transfusions or perinatally. All patients were symptomatic before AZT treatment (Class P2 of the Centers for Disease Control); 13 (62 percent) had evidence of neurodevelopmental abnormalities. The mean CD4/CD8 ratio was 0.18; 11 patients had CD4 counts below 0.2 x 10(9) per liter. We administered AZT at four dose levels: 0.5, 0.9, 1.4, and 1.8 mg per kilogram of body weight per hour. The plasma drug concentrations achieved at the respective dose levels were 1.9 +/- 0.3, 2.8 +/- 1.4, 3.1 +/- 1.1, and 4.5 +/- 1.0 microM. The steady-state cerebrospinal fluid:plasma ratio was 0.24 +/- 0.07. The only evidence of toxicity was bone marrow suppression. Transfusion was required in 14 patients because of low levels of hemoglobin (5 mmol per liter [less than 8 g per deciliter]). Dose-limiting neutropenia (less than 0.5 x 10(9) polymorphonuclear leukocytes per cubic millimeter) occurred in most patients who received doses of 1.4 mg per kilogram per hour or more. Improvement in neurodevelopmental abnormalities occurred in all 13 children who had presented with encephalopathy before treatment. Serial measurements of IQ before therapy and after three and six months of continuous therapy with AZT showed that IQ scores, including those for verbal and performance IQ, rose in these 13 patients and in 5 other children who had no detectable evidence of encephalopathy before treatment. Most patients also had increased appetite and weight, decreased lymphadenopathy and hepatosplenomegaly, decreased immunoglobulin levels, and increased numbers of CD4 cells. In some patients the improvement in the features of encephalopathy occurred despite the absence of immunologic improvement. We conclude that AZT is beneficial in children with symptomatic HIV infection, especially those with encephalopathy (which may be subclinical), and that the optimal continuous intravenous dose of AZT in children is between 0.9 and 1.4 mg per kilogram per hour.

Acquired Immunodeficiency Syndrome↗

Preclinical pharmacology of arabinosyl-5-azacytidine in nonhuman primates.

The plasma and cerebrospinal fluid (CSF) pharmacokinetics of arabinosyl-5-azacytidine (AAC) were studied in rhesus monkeys following a 15-min, 1-h, or 12-h i.v. infusion of 200 mg/kg. No clinically significant toxicity was observed with these schedules. The plasma elimination of AAC is rapid and characterized by a triphasic decay with t1/2 alpha = 3.6-5.4 min, t1/2 beta = 18-24 min, and t1/2 gamma = 94-144 min for the above infusion schedules. The CSF penetration of AAC as measured by the CSF:plasma Css ratio for the 12-h infusion was 0.15. The stability of AAC in pooled plasma, phosphate buffered saline, and RPMI 1640 culture media at 37 degrees C was compared with the terminal half-life of AAC observed in vivo. The shorter in vitro AAC half-life in plasma with or without tetrahydrouridine versus that in phosphate buffered saline suggests that the terminal half-life of AAC in vivo is most likely a result of enhanced nucleophilic attack and hydrolytic degradation of the unstable triazine ring in plasma. A triexponential equation modeling the disappearance of AAC was constructed from the in vivo experimental data. Use of this equation in computer-aided simulations of current Phase I doses and schedules of AAC correctly predicts the human plasma concentrations which have been observed. The preclinical pharmacokinetic data provided here may be useful in helping to develop rational human studies with specific concentration x time goals.

Animals↗

Cerebrospinal fluid penetration of active metabolites of cyclophosphamide and ifosfamide in rhesus monkeys.

The penetration of the active metabolites of cyclophosphamide (CP) and ifosfamide (IF) into cerebrospinal fluid (CSF) was determined in rhesus monkeys following an i.v. infusion of 1 gm/m2 of CP and IF. Active metabolites were measured using a high-performance liquid chromatography assay with fluorometric detection following derivatization with m-aminophenol. CSF to blood ratios of the active metabolites of CP and IF were found to be 0.17 and 0.13 following systemic dosing of CP and IF, respectively. The levels achieved in the CSF, however, were equivalent to levels known to be cytocidal to malignant cell lines derived from tumors which metastasize to the central nervous system. Only one animal demonstrated neurotoxicity with IF. CSF levels of active metabolite in this animal were similar to those observed in the other animals.

Animals↗