Search PubMed⌕ Search

Biomedical subjects

M V Relling

Publications and source records attributed to M V Relling.

At least 109 records · Page 6Linked to original sources

Chlorpromazine with and without lorazepam as antiemetic therapy in children receiving uniform chemotherapy.

We prospectively studied the efficacy and adverse effects of chlorpromazine (30 mg/m2 given intravenously) plus lorazepam (0.04 mg/kg given intravenously) versus chlorpromazine alone in a controlled, double-blind, randomized, parallel-design investigation in 25 children (1.5 to 17.3 years of age) with acute lymphoblastic leukemia. Response to other antiemetics in eight children refusing random assignment to treatment was also evaluated. All children were receiving intravenous infusions of teniposide plus cytarabine, the pharmacokinetics of which were characterized for each of the one to four courses. There were no differences between the 11 patients randomly assigned to receive chlorpromazine alone and the 14 randomly assigned to receive lorazepam plus chlorpromazine in the number of emesis episodes (6.0 vs 5.9; p = 0.53), frequency of dystonic reactions (3% vs 5%), or akathisia (13 vs 10%). The only serious adverse event, symptomatic hypotension, occurred in a boy receiving chlorpromazine plus lorazepam. An exploratory pharmacodynamic analysis revealed that the only variable that correlated with vomiting was cytarabine 1 1/2-hour plasma concentration (p = 0.007). Children who received either chlorpromazine plus lorazepam or chlorpromazine alone had fewer episodes of vomiting than those who received "conventional" antiemetic therapy (6.0 vs 8.6; p = 0.01). We conclude that the severity of emesis is related to the plasma concentration of cytarabine; that intravenously administered chlorpromazine is as effective as chlorpromazine plus lorazepam in preventing chemotherapy-induced vomiting; and that the potential for adverse effects with the addition of lorazepam may be a disadvantage.

Adolescent↗

Genetic basis for a lower prevalence of deficient CYP2D6 oxidative drug metabolism phenotypes in black Americans.

Debrisoquin hydroxylase (CYP2D6) is a cytochrome P450 enzyme that catalyzes the metabolism of > 30 commonly prescribed medications. Deficiency in CYP2D6 activity, inherited as an autosomal recessive trait, was found to be significantly less common in American blacks (1.9%) than whites (7.7%). To determine the genetic basis for this difference, inactivating CYP2D6 mutations were assessed by allele-specific PCR amplification and RFLP analyses of genomic DNA from 126 unrelated whites and 127 unrelated blacks. Blacks had a twofold lower frequency (8.5 versus 23%, P = 0.001) of the CYP2D6(B) mutation (point mutation at intron 3/exon 4 splice site), while complete deletion of the CYP2D6 gene (5.5% blacks, 2.4% whites), and the CYP2D6(A) mutation (single nucleotide deletion in exon 5; 0.24% blacks, 1.4% whites) were not different between the two groups. The prevalence of heterozygous genotypes was significantly lower in blacks (25 versus 42% of extensive metabolizers, P = 0.009), consistent with the observed prevalence of the deficient trait in blacks and whites. We conclude that the same CYP2D6 mutations lead to a loss of functional expression in blacks and whites, but American blacks have a lower prevalence of the deficient trait due to a lower frequency of the CYP2D6(B) mutation. This could explain racial differences in drug effects and disease risk.

Base Sequence↗

Phase I trial of paclitaxel in children with refractory solid tumors: a Pediatric Oncology Group Study.

PURPOSE: A phase I study was performed to describe the principal toxicities and identify the maximum-tolerated dose (MTD) of Taxol (paclitaxel; Bristol-Myers Squibb Co, Wallingford, CT) in children with therapy-resistant solid tumors. Additionally, the pharmacokinetic disposition of Taxol in children was studied, and preliminary evidence of the activity of Taxol against pediatric solid tumors was assessed. PATIENTS AND METHODS: Twenty-four-hour continuous infusions of Taxol were administered every 21 days to children (median age, 12 years; range, 2 to 22) with refractory solid tumors. Doses ranged from 200 to 420 mg/m2, there was no intrapatient dose escalation. RESULTS: A total of 62 courses of Taxol were administered to 31 patients. Two patients developed acute anaphylaxis during their second infusion of taxol at doses of 200 mg/m2 and 350 mg/m2, respectively. No other allergic reactions were documented. Myelosuppression occurred at all dose levels, but was of short duration (< or = 7 days) and did not appear to increase with consecutive courses or at higher dosage levels. A stocking-and-glove peripheral neuropathy became evident at doses > or = 290 mg/m2. Dose-limiting neurotoxicity occurred at 420 mg/m2 and comprised a significant fine-motor and peripheral neuropathy in one patient, and a tonic-clonic seizure in another. End-of-infusion plasma concentrations ranged from 0.40 to 6.4 mumol/L, and were not found to be dose-dependent over the range of doses studied. A complete response was documented in one patient, partial response in two, and minimal response in one for an overall response rate of 13%. CONCLUSION: Neurotoxicity was dose-limiting when Taxol was administered by 24-hour continuous infusion to pediatric patients with relapsed solid tumors. In this population, the recommended dose for phase II trials is 350 mg/m2/d.

Adolescent↗

Chemotherapy induced nausea and emesis in pediatric cancer patients: external validity of child and parent emesis ratings.

Children's and parent's subjective ratings of the frequency and severity of nausea and emesis were assessed among 33 children with acute lymphoblastic leukemia receiving identical chemotherapy. Parents were trained to record the frequency of the child's actual emesis episodes during chemotherapy. Although parent and child ratings of nausea were significantly correlated, children generally rated their nausea and emesis as more frequent and more severe than did their parents. Parent ratings showed inadequate external validity when compared with behavioral observations. Children with greater anxiety and higher subjective ratings subsequently exhibited more frequent episodes of emesis by observation, suggesting that their perceptions of symptoms based on previous chemotherapy experiences may predict emesis during different chemotherapy. In a stepwise multiple regression analysis, antiemetic regimen and the child's anxiety as rated by the parent combined to account for approximately 47% of the variance in number of episodes of emesis. These findings are discussed in the context of factors limiting validity of parent and child reports of children's symptomatology with implications for future epidemiologic and intervention research.

Adolescent↗

Clinical pharmacokinetics and pharmacodynamics of anticancer drugs in children.

Pharmacokinetic variability in children with cancer is substantial and confounds drawing conclusions regarding optimal therapy based only on dose-response relationships. Careful pharmacokinetic studies performed during drug development in conjunction with an assessment of patient characteristics, such as age, renal and hepatic function, and concomitant therapy, is essential for defining those factors that may alter drug disposition. By integrating pharmacokinetic studies with measures of efficacy and toxicity, a pharmacodynamic framework can be established for guiding therapy to minimize differences in systemic exposure among subpopulations of patients (eg, impaired renal function and neonates). In selected instances when pharmacokinetic variability cannot be predicted by patient covariates, the potential for individualizing dosages based on patient-specific pharmacokinetic parameters is now a clinically feasible option. The need for and benefits of incorporating such strategies into routine therapy represents an exciting area for further clinical research.

Adult↗

Automated high-performance liquid chromatographic assay for the determination of 7-ethoxycoumarin and umbelliferone.

An improved high-performance liquid chromatographic assay is presented for the determination of 7-ethoxycoumarin O-deethylase activity. Following a 30-min microsomal incubation, 7-ethoxycoumarin, 4-methylumbelliferone (internal standard), and the metabolite umbelliferone were extracted with chloroform. Separation was achieved with an isocratic mobile phase using a microBondapak phenyl (300 mm x 3.9 mm I.D.) analytical column. The effluent was monitored by fluorescence detection with an excitation wavelength of 360 nm and an emission wavelength of 470 nm. The intra- and inter-assay coefficients of variation were 10 and 6%, respectively. A detection limit of 0.07 micrograms/ml was achieved, making this method suitable for characterizing P-450 activity of human livers.

7-Alkoxycoumarin O-Dealkylase↗

Racial and gender differences in N-acetyltransferase, xanthine oxidase, and CYP1A2 activities.

BACKGROUND: The urinary molar concentration ratios of several caffeine metabolites are indicators of specific drug metabolizing enzyme activities. The ratios of 5-acetyl-amino-6-formylamino-3-methyluracil (AFMU) to 1-methylxanthine (1X), AFMU to 1X plus 1-methyluric acid (1U), and AFMU to 1X + 1U + AFMU are indicative of N-acetyltransferase (NAT) activity; the ratios of 1U to 1X and 1U to 1U + 1X indicate xanthine oxidase activity; and the ratio of the sum of 7-demethylated metabolites (AFMU + 1X + 1U) to the precursor for all three compounds, paraxanthine (PX), is a putative indicator of CYP1A2 oxidative activity. Our objective was to discern whether there are race-, gender-, and age-related differences in these indexes of drug-metabolizing activity. METHODS: In 342 normal healthy unrelated subjects, metabolites were measured in urine collected after administration of low-dose caffeine. RESULTS: By two-way analysis of variance, NAT activity was higher in black subjects than in white subjects when assessed as AFMU/(1U + 1X) or as AFMU/(AFMU + 1U + 1X) (p = 0.001 and p = 0.002, respectively), but less so by use of AFMU/1X (p = 0.08). Xanthine oxidase activity, as assessed by 1U/1X or as 1U/(1U + 1X), was lower in black subjects than in white subjects (p = 0.02 and p = 0.001, respectively) and was lower in males than in females (p = 0.001 for both ratios). Females had higher AFMU/1X ratios (p = 0.03) because of higher xanthine oxidase activity. In a model in which AFMU/1X was the dependent variable and race, sex, age, and an index of xanthine oxidase (1U/1X) were independent variables, only race and 1U/1X were significant determinants of this NAT index (p = 0.003 and p < 0.001, respectively). The CYP1A2 ratio was lower in black subjects (p = 0.036) and in females (p = 0.015). CONCLUSION: Racial and gender differences in xanthine oxidase activity render the AFMU/1X ratio less reliable as an assessment of NAT activity in a heterogeneous population compared with the AFMU/(1U + 1X) or AFMU/(AFMU + 1U + 1X) ratios. The observed racial and gender differences in NAT, xanthine oxidase, and CYP1A2 activities may have implications for racial and gender differences in drug effects and carcinogen biotransformation.

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↗

Human cytochrome P450 metabolism of teniposide and etoposide.

Although teniposide (VM26) and etoposide (VP16) are eliminated mostly by nonrenal mechanisms, their cytochrome P450 metabolism in humans has not been reported. Our objective was to determine the affinity and capacity of P450 O-demethylation of VM26 and VP16 in a variety of human livers. Formation of catechols of VM26 and VP16 was detected in 24 and 26 of 26 liver microsomal preparations, respectively, with wide variability in maximum catechol formation rates from VM26 (41-fold) and VP16 (39-fold range), even among normal livers. Maximal activity measurements at 500 microM substrate were lower for VM26 catechol formation (mean = 1.5 nmol/mg/hr) than for VP16 catechol (mean = 3.2 nmol/mg/hr) in 26 livers (P less than .001). Maximal activities for VP16 and VM26 O-demethylation, and ethoxycoumarin O-deethylation were significantly higher in normal than in diseased livers. No differences were found in activities related to age, sex or race of the liver donor. In all five livers tested over a range of substrate concentrations, Km (19.7, 23.2, 43.5, 30.1 and 22.0 microM) and Vmax values (1.0, 1.2, 4.4, 8.2 and 4.0 nmol/mg/hr) for VM26 were lower compared to values for VP16 (Km = 60.2, 115.1, 87.3, 42.1 and 81.9 microM; Vmax = 1.4, 3.3, 10.3, 27.5 and 10.1 nmol/mg/hr). Despite higher VP16 catechol formation, VM26 underwent greater overall reduced nicotinamide adenine dinucleotide phosphate-dependent metabolism than VP16, consistent with greater nonrenal clearance of VM26 in vivo.(ABSTRACT TRUNCATED AT 250 WORDS)

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↗

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↗

Age-related differences in hepatic drug clearance in children: studies with lorazepam and antipyrine.

The disposition of intravenous antipyrine and lorazepam, administered as model substrates for hepatic oxidative metabolism and conjugation, was evaluated in 50 children (mean age, 7.8 years; range, 2.3 to 17.8 years) with acute lymphocytic leukemia in complete remission and compared with a group of ten healthy adults. Antipyrine clearance normalized to body weight was significantly greater in children than in adults (0.91 versus 0.59 ml/min/kg; p = 0.012), but was not different when normalized to body surface area. In contrast, lorazepam total clearance (CL) and unbound clearance (CLu) normalized to body weight were not significantly different between children and adults but were smaller in children when normalized to body surface area (CL = 31.9 versus 40.6 ml/min/m2, p = 0.036; CLu = 352 versus 485 ml/min/m2, p = 0.010). The mean lorazepam fraction unbound in children was 0.087, which was not different from adult volunteers (0.084). This study has identified significant differences between children and adults in the disposition of these two compounds, with higher milliliter per minute per kilogram clearance for antipyrine but not lorazepam.

Adolescent↗

Lower prevalence of the debrisoquin oxidative poor metabolizer phenotype in American black versus white subjects.

Our objective was to determine whether there are differences in debrisoquin hydroxylase (P450IID6) activity between American black subjects and white subjects. Phenotype was assigned in a group of 586 unrelated white and black children with use of dextromethorphan as the substrate probe. Restriction fragment length polymorphism analysis of genomic deoxyribonucleic acid (DNA) was performed in a subset of subjects by use of a full length complementary DNA for P450IID6. Thirty-seven of 480 (7.7%) white children were poor metabolizers compared with 2 of 106 (1.9%) black children (p = 0.03). Among 41 white subjects and 18 black subjects, there were significant differences (p less than 0.05) in two XbaI DNA restriction fragments; the 44 kb fragment was more common and the 29 kb fragment was less common in black versus white extensive metabolizers. There is a lower prevalence of the debrisoquin poor metabolizer phenotype among American black persons, which could have implications for efficacy or toxicity of drugs metabolized by this enzyme, as well as for racial differences in the prevalence of diseases associated with the debrisoquin oxidative phenotype.

Black People↗

Phase I study of flavone acetic acid (NSC 347512, LM975) in patients with pediatric malignant solid tumors.

To evaluate the anticancer agent flavone acetic acid (FAA), we conducted a Phase I trial involving 17 pediatric patients with various malignant solid tumors. Dosages investigated included 5,120 and 6,144 mg/m2 given as 3-hour intravenous infusions; and 10,000, 12,500, 15,000, and 17,500 mg/m2 delivered in a 24-hour constant infusion with alkalinization. Grade 2 or worse toxicity was minimal, with 2 patients having nausea/vomiting, 2 having diarrhea, 1 becoming hypertensive, 1 becoming hypotensive, and 2 having myalgia. Three patients who received a 17,500 mg/m2 dose had no toxicity. Disease was stabilized for a brief period in 2 patients--1 with brain stem glioma and 1 with astrocytoma. The FAA pharmacokinetics varied with an average (SD) terminal half-life of 27.9 hr (18.7), clearance of 2.04 L/hr/m2 (0.37), and steady-state volume of 19.9 L/m2 (10.6). This study was discontinued because FAA caused no significant toxicity or therapeutic responses at doses 2.5 gm/m2 greater than had been tolerated by adults.

Adolescent↗

Mephenytoin phenotyping: lack of haematologic effect and timing of urine collections.

Mephenytoin is the prototype substrate for the genetically regulated, polymorphically distributed cytochrome P450, mephenytoin hydroxylase. Mephenytoin is an anticonvulsant which has been associated with leukopenia when used chronically. The haematologic effects of a single dose of oral mephenytoin, as is typically used to determine drug metabolism phenotype for this polymorphism, have not been reported. We administered 100 mg oral racemic mephenytoin to 30 healthy male volunteers and measured complete blood count three times weekly for 23 days. The time dependency of the urinary ratio of S to R mephenytoin in five serial urine samples (0-4, 4-8, 8-16, 16-24 and 24-32 h after the dose) was evaluated. There were no significant decreases from baseline in any subject in leukocyte count, haematocrit or platelet count. Two of the 30 subjects both of Indian extraction, were poor metabolizers of mephenytoin. The S:R ratio decreased with time (p = 0.001). Using the 0-4 h urine, one subject would have been misphenotyped as a poor metabolizer; phenotype assignments were in agreement with each other based on all subsequent urine collections. We conclude that there is no evidence that single dose mephenytoin is associated with haematologic toxicity in healthy male volunteers, and that the 4-8 h post-dose urine is as reliable as the 24-32 h collection for assignment of phenotype.

Adult↗