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Biomedical subjects

G Rivera

Publications and source records attributed to G Rivera.

At least 55 records · Page 3Linked to original sources

Multiple-dose pharmacokinetics of imipenem-cilastatin.

We characterized the pharmacokinetic profile of imipenem-cilastatin administered intravenously to six normal volunteers in a dose of 1,000 mg of each drug every 6 h for 40 doses. The plasma concentrations of imipenem and cilastatin 1 h after the end of a 30-min infusion were 18.7 (+/- 2.1) and 19.1 (+/- 4.6), 20.0 (+/- 3.2) and 17.8 (+/- 4.8), and 23.4 (+/- 2.3) and 19.1 (+/- 3.5) micrograms/ml in the 1st, 17th, and 37th dosing intervals, respectively. The central compartment volumes of distribution for imipenem and cilastatin were 0.16 (+/- 0.05) and 0.14 (+/- 0.03) liter/kg, respectively. Elimination half-lives were short: 0.93 (+/- 0.09) h for imipenem and 0.84 (+/- 0.11) h for cilastatin. Plasma clearances were 12.1 (+/- 0.06) liters/h per 1.73 m2 for imipenem and 12.4 (+/- 1.1) liters/h per 1.73 m2 for cilastatin. Renal clearance accounted for 54% of the plasma clearance of imipenem and 69% of the plasma clearance of cilastatin. The concentrations of imipenem in plasma and urine remained above the MICs of the vast majority of pathogens throughout the dosing interval.

Adult↗

Continuous infusion high-dose cytosine arabinoside in refractory childhood leukemia.

Ten pediatric patients with refractory leukemia received continuous infusion high-dose cytosine arabinoside (ara-C) according to one of two escalating dosage schedules: (1) a 500-mg/m2 rapid infusion loading dose followed by 3.5 g/m2 per day continuous infusion daily for four consecutive days, or (2) a 600-mg/m2 rapid infusion loading dose followed by 5.0 g/m2 per day continuous infusion daily for four consecutive days. Major toxicity at the lower dosage level was grade IV hematopoietic aplasia of three weeks' duration. At the higher dosage level, there was a prohibitive toxicity in multiple organ systems including transient noncardiogenic pulmonary edema, fungal infections, peritonitis, severe diarrhea, transaminase elevations, and one treatment-related death due to acute renal failure. In contrast to other methods of administration of high-dose ara-C, no CNS toxicity occurred. Oncolytic responses were seen in all patients and two achieved brief, partial remissions. Steady-state plasma ara-C concentrations were 13 to 40 mumol/L at the 3.5-g/m2 dosage level and 10 to 225 mumol/L at the 5-g/m2 dosage level; CSF concentrations at both dosages ranged from 2 to 5 mumol/L. Intracellular levels and ratios of 1-beta-D-arabinofuranosylcytidine-5' triphosphate and endogenous deoxycytidine 5' triphosphate in marrow blasts varied widely at steady state during infusion. No positive correlation existed between steady-state plasma ara-C levels, toxicity, oncolytic effect, or intracellular nucleotide concentration.

Acute Disease↗

Isolated testicular relapse in acute lymphocytic leukemia of childhood: categories and influence on survival.

Isolated testicular relapse complicating first hematologic remission was identified in 31 of 521 boys with acute lymphocytic leukemia (ALL). Three categories of involvement were apparent and could be related to presenting clinical features, duration of initial complete remission, and length of hematologic remission. Among 12 patients with early testicular relapse, most had unfavorable prognostic features when ALL was first diagnosed. All but two of these children experienced marrow recurrence within seven months of testicular relapse. In contrast, the 12 patients who developed testicular disease late in their clinical course have responded much better to further therapy; ten remain in bone-marrow remission for a median of four years beyond testicular relapse. Similarly, five of the seven patients with subclinical testicular leukemia, found at elective biopsy, continue in marrow remission for prolonged periods. Early testicular recurrence is a sign of drug-resistant disease; late recurrence after elective cessation of therapy may represent residual, incompletely treated but still responsive leukemia.

Adolescent↗

Response of recurrent acute lymphoblastic leukemia to glucocorticoids: serial studies of receptor content, in vivo cytokinetic changes and clinical responses.

The sensitivity of relapsed acute lymphoblastic leukemia (ALL) to treatment with steroids was assessed by measuring bone marrow blast, whole-cell glucocorticoid receptor (GR) levels and serial cytokinetic and clinical responses to steroids, both as single agents and in combination reinduction chemotherapy. GR levels ranged widely, from 1800 to 47,800 sites/cell (median 16,000), and did not differ significantly from levels measured in newly diagnosed patients (p = 0.50). Nineteen of the 48 children studied had GR levels measured both at diagnosis and relapse, and in 14 the values at relapse were either decreased or increased by more than 25%. For nine children, the sensitivity to a three-day oral course of dexamethasone alone (6 mg/m2 per day) was estimated from daily leukocyte counts and serial bone marrow cytokinetic studies. A clinical oncolytic effect of dexamethasone was associated with a reduction in the marrow cell proliferating compartment, as judged from labeling indices, mitotic indices and percent S + G2 + M in five patients. We found, however, that GR levels either alone or combined with clinical or cytokinetic responses to dexamethasone as a single agent did not reliably identify patients who were likely to respond favorably to reinduction with steroid-containing combination chemotherapy. The 35 children who successfully attained subsequent remissions had GR levels similar to those who failed (p = 0.35). While not statistically significant, two observations suggest an association between lower receptor content and drug resistance. Receptor levels from patients with ALL who relapsed while on chemotherapy were appreciably lower (median 15,700, n = 31) than GR levels from patients who relapsed off therapy (median 20,300, n = 17) (p = 0.08). Moreover, three of seven patients with serial studies, whose GR levels at relapse were lower than at diagnosis, failed reinduction--compared to only one of twelve whose levels were either increased or remained unchanged (p = 0.11). Although not having any obvious clinical utility, studies of GR at diagnosis and at relapse may aid in clarifying mechanisms of drug resistance in leukemic blasts.

Acute Disease↗

Methotrexate cerebrospinal fluid and serum concentrations after intermediate-dose methotrexate infusion.

Twenty-nine children with acute lymphocytic leukemia were given 24-hr infusions of intermediate-dose methotrexate (MTX, 1000 mg/m2) with and without intrathecal (IT) MTX (12 mg/m2), followed by leucovorin rescue. There was substantial interpatient variability in MTX systemic clearance (98.3 +/- 51 ml/min/m2), inducing total steady-state serum MTX concentrations ranging from 5.4 to 33.7 microM. The cerebrospinal fluid (CSF) concentration at the end of the infusion was 0.27 (+/- 0.1) microM when no IT-MTX was given and correlated with total steady-state (24-hr) serum concentration of MTX. By stepwise regression, the CSF MTX concentration correlated better with the nonprotein bound (free) steady-state serum MTX concentration (r = 0.66, P less than 0.01) than with total steady-state serum MTX concentration. Mean CSF: serum MTX concentration ratio was 0.023 (+/- 0.04) when no IT MTX was given. When an IT MTX dose (12 mg/m2) was given at the start of the MTX infusion, the steady-state CSF MTX concentration was 1.1 (+/- 0.4) microM, leading to a mean CSF: serum ratio of 0.073 (+/- 0.05). Despite 7-hydroxy-MTX serum concentrations exceeding MTX concentrations immediately after infusion, 7-hydroxy-MTX was not detectable in CSF of most patients (21 of 29), and was less than 50% of the concurrent MTX concentration when detectable. These data establish the substantial interpatient variability in CSF distribution of MTX after intermediate-dose MTX infusions and establish a significant correlation between steady-state free concentration of MTX in serum and CSF MTX concentration.

Child↗

Phenotypic conversion of acute leukaemia from T-lymphoblastic to myeloblastic induced by therapy with 2'-deoxycoformycin.

A 6-year-old boy with T-cell acute lymphoblastic leukaemia (ALL) in relapse was treated with the adenosine deaminase inhibitor, 2'-deoxycoformycin (DCF). Remarkably, his residual leukaemia underwent an abrupt phenotypic shift, coincident with a massive anti-leukaemic effect of DCF. Both at diagnosis and prior to therapy with DCF, blast cells had typical lymphoblastic morphology and T-cell characteristics (terminal transferase +, T-antigen +, Ia -, cALLa -, myeloperoxidase -, and high in adenosine deaminase content). After four courses of DCF by constant infusion, the blast cells were myeloid in appearance and reactivity to a variety of tests (terminal transferase -, myeloperoxidase +, Sudan black B +, esterase +, My-1 +). We hypothesize that DCF therapy created a selection pressure, blocking pathways of T-cell differentiation and proliferation, permitting the emergence of a newly dominant myeloid subclone of a multipotential leukaemic cell progenitor with the innate capacity for both T-lymphocytic and myeloid differentiation.

Adenosine Deaminase Inhibitors↗

End results of treating children with localized non-Hodgkin's lymphomas with a combined modality approach of lessened intensity.

From 1978 to 1982, 28 children with localized non-Hodgkin's lymphomas, stages I and II, were treated with a combined modality protocol, reduced in intensity in comparison to our previous institutional protocol (1975-1978, reported in Cancer 45: 630-637, 1980), and modest by comparison to many current intensive regimens in widespread use. Induction consisted of vincristine (6 weekly doses, 1.5 mg/m2), cyclophosphamide (3 doses, on days 0, 21, and 42, 600 mg/m2 IV), and oral prednisone (40 mg/m2, daily for 1 mo) combined with low-dose, involved-field, supervoltage radiotherapy (2000 rads). Prophylactic treatment of the central nervous system was not given to all children, but only to those with primary tumors in the head and neck region, and consisted of intermittent intrathecal methotrexate only (12 mg/dose, three times in induction, and subsequently every 6 wk). Maintenance therapy, consisting of oral daily 6-mercaptopurine (75 mg/m2) and oral weekly methotrexate (30 mg/m2), was continued for a total duration of 15 mo from diagnosis. Overall, there were 15 children with stage I and 13 with stage II disease, and the majority of the cases (17 of 28) were localized to the head and neck. In addition, 7 children, all stage II, had completely resected gastrointestinal tumors; the other 4 cases presented in inguinal nodes. Histologically, 27 of the 28 tumors were high-grade diffuse (13 undifferentiated, i.e., small noncleaved cell type; 11 histiocytic, i.e., 5 large noncleaved cell type, and 6 immunoblastic type; and 3 lymphoblastic type); 1 case was mixed cell type, nodular and diffuse. All children were judged to be in complete remission at the end of induction, and 24 of 28 (85.7%) remain free of disease 4+ mo to nearly 4 yr from diagnosis (median 24+ mo); 19 have completed all planned therapy and are in unmaintained remission. The 4 cases failing therapy all were characterized by diffuse undifferentiated (small noncleaved cell) histology and exhibited regrowth of local tumor, resulting in a failure rate for this group (4 of 13, 30%) significantly different than for all remaining cases of other histologies (0 of 15), p less than 0.02 by log rank analysis. Patient tolerance to therapy was excellent, with negligible acute toxicity, and ambulatory outpatient management was the norm. Long-term follow-up will be necessary to judge whether adverse late consequences of treatment have been reduced by this approach. We conclude that a reduction in the intensity of therapy for children with stage I and II non-Hodgkin's lymphomas is feasible, apparently without significantly jeopardizing their excellent chance for cure.

Adolescent↗

Second central nervous system prophylaxis in children with acute lymphoblastic leukemia who relapse after elective cessation of therapy.

A treatment plan to achieve better disease control in patients with acute lymphoblastic leukemia (ALL) who relapse after elective cessation of therapy was assessed. The principal modifications were (1) a second preventive treatment of the central nervous system (CNS) at relapse and every six weeks throughout therapy, using intrathecal methotrexate with cytosine arabinoside, and (2) a four-week course of systemic chemotherapy given immediately before therapy was stopped a second time. Twenty-four patients were studied. There have been no meningeal relapses, in contrast to seven among 16 similar patients who were retreated without CNS prophylaxis. Although the median length of second hematologic remission was not significantly different from the outcome in the comparison group, a much higher proportion of patients (eight of 24 versus zero of 17) remain in prolonged reinduced complete remission (48-79 months). Children whose first relapse occurred later than six months after cessation of therapy had significantly longer subsequent remissions. These end results establish the value of intrathecal CNS prophylaxis in relapsed ALL and suggest that a late intensive phase of therapy will extend remissions in a substantial proportion of patients.

Antineoplastic Combined Chemotherapy Protocols↗

Anaphylactoid reactions to Escherichia coli and Erwinia asparaginase in children with leukemia and lymphoma.

The incidence and clinical characteristics of anaphylactoid reactions to intravenous asparaginase were assessed in 196 patients given E. coli asparaginase and 49 patients given Erwinia asparaginase. All patients were given a 50 IU intravenous test dose followed in 30 min by the full dosage (10,000 IU/m2), if no reaction occurred to the test dose. Twenty-nine of 196 patients (14.8%) given E. coli asparaginase had an anaphylactoid reaction, occurring after their first through 12th doses. The probability of an anaphylactoid reaction was significantly greater in those patients not receiving concomitant prednisone-vincristine and patients with a hiatus between courses of asparaginase therapy. By logistic regression analysis, other variables such as age, sex, race, diagnosis, total number of doses and concurrent methotrexate or arabinosylcytosine did not contribute significantly to the probability of a reaction. Twenty-three of the patients who had reacted to E. coli asparaginase and 26 patients who had not reacted to E. coli asparaginase were subsequently given Erwinia asparaginase. Seven of these 49 patients (14%) had an anaphylactoid reaction. The probability of a reaction to Erwinia asparaginase was significantly related to a prior reaction to E. coli asparaginase, concomitant prednisone-vincristine therapy, total number of asparaginase doses, number of prior E. coli asparaginase doses, and diagnosis, when assessed by a logistic regression model. However, after adjusting for prior reaction to E. coli asparaginase and the total number of asparaginase doses given, the other variables did not contribute significantly to the probability of a reaction. Only 5/29 patients reacting to E. coli asparaginase and 1/7 reacting to Erwinia asparaginase had a reaction to the test dose. None of the reactions were fatal.

Adolescent↗

VM-26 with prednisone and vincristine for treatment of refractory acute lymphocytic leukemia.

Fifty-six children with refractory acute lymphocytic leukemia (ALL) were assessed for remission-induction responses to VM-26 (250 mg/m2 per week) in combination with prednisone (40 mg/m2 per day) and vincristine (1.5 mg/m2 per week). Each child had been treated intensively with steroids, vincristine, daunorubicin and L-asparaginase. In fact, all patients had failed to respond to previous reinduction therapy with prednisone-vincristine or had relapsed while receiving vincristine. Our intent in this study was to test whether or not addition of VM-26 to prednisone-vincristine would overcome clinical resistance to these established agents. Complete remissions were induced in 17 patients (0.30) over 4 to 6 weeks. Five of these children, all clinically unresponsive to prednisone-vincristine alone, had complete remissions that lasted longer than 1 year; two remain in remission for 2 1/2 years and both are now off therapy. Myelosuppression, the most serious treatment complication, was documented in 20 of 26 evaluable patients. The median time to recovery of normal marrow function was 15 days. These results demonstrate further the potential of VM-26 in combined-drug treatment of refractory ALL. Whether the effectiveness of this combination represents potentiation of prednisone and vincristine activity by VM-26 or some other, as yet unidentified interaction, remains to be determined.

Adolescent↗

Pharmacokinetics of Teniposide (VM26) and etoposide (VP16-213) in children with cancer.

The clinical pharmacokinetics of VM26 and VP16-213 were assessed in 15 children (median age 10 years) with acute leukemia, using a new high-performance liquid chromatography-electrochemical assay. Pharmacokinetic parameters were calculated by both model-dependent and compartment model-independent methods. These studies demonstrated substantial differences in the central volumes of distribution (VDc), steady-state volumes of distribution (VDss) and systemic clearances (Cls) of VM26 and VP16-213; with the VDc, VDss, and Cls all being smaller for VM26, Systemic clearances determined by model-independent methods were 5.2 +/- 1.0 ml/min/m2 (mean +/- SD) for VM26 and 17.8 +/- 11.2 ml/min/m2 for VP16-213. The major metabolites. detected in serum and urine were the hydroxy acids. Low levels of the picro-lactone isomers were detected in some patients while the aglycones were not detected in the serum or urine of any patients.

Biotransformation↗

Prognostic importance of chromosome number in 136 untreated children with acute lymphoblastic leukemia.

Leukemia cell karyotypes were determined at diagnosis for 136 of 159 consecutive patients with acute lymphoblastic leukemia (ALL) who were followed for up to 35 mo. Ninety patients (67%) had abnormal karyotypes. Five chromosome categories were designated, based on the distribution of modal numbers: hyperdiploid greater than 50 (n = 41), hyperdiploid 47-50 (n = 18), pseudodiploid (n = 28), normal (n = 46), and hypodiploid (n = 3). Treatment response was assessed for the categories in terms of time to failure (induction failure, first relapse, or death). Children in the hyperdiploid greater than 50 category had the best responses to treatment, with only 2 failures, and those in the pseudodiploid category had the poorest (p less than 0.001). The remaining 3 chromosome categories had intermediate responses and formed a third prognostic group. This same influence of chromosome number on time to failure was evident within the 2 clinical prognostic groups: high risk, signified by a leukocyte count greater than 100 X 10(9)/liter, meningeal leukemia, mediastinal mass, or the presence of blasts that formed rosettes with sheep erythrocytes at 37 degrees C, and standard risk, indicated by the absence of these features. The influence of chromosome number on time to failure was also the same within the historically favorable prognostic group that had common ALL. Results of a multivariate analysis indicated that chromosome number was the strongest single predictor of outcome (p less than 0.001) and was the only variable that added significant prognostic information to leukocyte count (p less than 0.001). The combination of chromosome number and leukocyte count should more clearly distinguish patients with ALL at low or high risk of relapse.

Asparaginase↗

Phase I study of 2'-deoxycoformycin in acute lymphoblastic leukemia.

2'-Deoxycoformycin (2'-dCF), a tight-binding inhibitor of adenosine deaminase, was administered to 26 pediatric patients with acute lymphoblastic leukemia in a Phase I study. Doses ranged from 0.25 to 1.0 mg/kg given i.v. for 3 consecutive days. Common toxicity included nausea, vomiting, diarrhea, hepatocellular enzyme elevations, and conjunctivitis. Lymphopenia occurred in all patients. The most serious adverse effects were acute tubular necrosis and central nervous system toxicity, which appeared to be dose related. In addition, two patients given the 0.75-mg/kg dose developed severe hepatic toxicity, although this could not be ascribed definitively to 2'-dCF. Antitumor activity was observed in eight patients, two of whom experienced a complete remission. Inhibition of lymphoblast adenosine deaminase activity was noted in the majority of cases and was observed at all doses. Antileukemic activity occurred at doses of 2'-dCF which were not associated with limiting toxicities. These results suggest that 2'-dCF is active against acute lymphoblastic leukemia and that a starting dose of 0.5 mg/kg/day be utilized in Phase II studies.

Adenosine Deaminase Inhibitors↗

Levels of 2'-deoxycoformycin, adenosine, and deoxyadenosine in patients with acute lymphoblastic leukemia.

2'-Deoxycoformycin (dCF), a potent inhibitor of adenosine deaminase, has recently undergone Phase I clinical trials and has been found to be therapeutically active in acute lymphoblastic leukemia. In this report, levels of dCF in plasma, plasma concentrations of adenosine and deoxyadenosine, and urine levels of deoxyadenosine were measured in leukemic patients undergoing treatment with dCF during a Phase I clinical trial. dCF was administered i.v. at a dose of 0.25 to 1.0 mg/kg (7.5 to 30 mg/sq m) for 3 consecutive days. Plasma drug levels of 2 to 6 microM were observed following the third dose of dCF, and drug accumulation occurred only at the 1-mg/kg dosage. In this limited series of patients, the plasma concentrations of adenosine and deoxyadenosine and the urine concentrations of deoxyadenosine did not show an obvious correlation with dCF dose, therapeutic response, or toxicity.

Adenosine↗