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Biomedical subjects

A P Early

Publications and source records attributed to A P Early.

9 recordsLinked to original sources

Acute nonlymphocytic leukemia in a glue sniffer.

A 17-year-old white male with a past history of chronic inhalational abuse of plastic glue was referred to our institution for sore throat, cervical adenopathy, and an abnormal peripheral blood smear. A diagnosis of acute myelomonocytic leukemia was made and abnormalities in cytogenetic studies were demonstrated. Specific inquiry regarding this form of drug exposure should be pursued when searching for possible etiologies of malignant disease.

Adhesives

Relationship between plasma adriamycin levels and the outcome of remission induction therapy for acute nonlymphocytic leukemia.

Plasma adriamycin and adriamycinol levels were measured in 45 patients with acute nonlymphocytic leukemia 3 h after the drug was administered. A wide range of levels as found. Plasma levels increased after the administration of each of the three daily doses of the drug. High plasma levels were associated with both death during remission induction therapy and, for patients who entered remission, long remissions.

Acute Disease

The treatment of acute myelocytic leukemia in patients 30 years of age and younger.

The treatment of acute myelocytic leukemia in childhood and young adults has lagged behind that for acute lymphocytic leukemia. The studies described here were directed towards evaluating the role of intensive chemotherapy in the treatment of this illness. Intensive remission induction therapy combining cytosine arabinoside with an anthracycline antibiotic produced a complete remission rate comparable to that achieved in acute lymphocytic leukemia (45 of 49 patients or 92%). Intensive consolidation chemotherapy produced a median duration of complete remission of 160 weeks with 40% of patients projected to be in remission at 4 years. By contrast, the median duration of remission for patients treated with moderate consolidation/maintenance therapy was 23 weeks with only 10% of patients in remission at 4 years. These studies demonstrate that intensive chemotherapy can be administered to pediatric patients and young adults and that this approach to therapy produces a high remission rate with a 3 year median duration of remission.

Adolescent

Relationship between plasma Ara-C and intracellular Ara-CTP pools under conditions of continuous infusion and high-dose Ara-C treatment.

Plasma level Ara-C and Ara-U in vivo and intracellular Ara-CTP pools in vivo and in vitro were measured using high-performance liquid chromatography and radioimmunoassay. Plasma Ara-C during High Dose therapy was found in two phases; one, a peak at t1/2 of approximately 5-8 minutes, the other approaching that of Continuous Infusion with a t1/2 of about 6 to 8 hours. There appears to be no relationship between peak levels of plasma Ara-C and intracellular Ara-CTP formed during High Dose therapy. Intracellular Ara-CTP pools were found to be higher in peripheral blood than in bone marrow during High Dose treatment and were also higher in bone marrow of patients treated with High Dose rather than conventional dose Ara-C. In vitro experiments with various concentrations of Ara-C on patient cells prior to treatment suggest that patients may benefit from High Dose therapy when an increase in intracellular Ara-CTP occurred with higher extracellular concentrations of Ara-C. In patients with metabolically sensitive cells containing the necessary enzymes to activate Ara-C to Ara-CTP, where resistance is due to limited drug transport, High Dose therapy may prove beneficial. Conversely, in patients with no increase in Ara-CTP pools in vitro due to a depletion of activating enzymes, High Dose treatment may not be warranted. Therefore, it may be possible to determine patients most likely to benefit from High Dose chemotherapy by measuring pre-treatment in vitro intracellular Ara-CTP.

Arabinofuranosylcytosine Triphosphate

A pilot study of high-dose 1-beta-D-arabinofuranosylcytosine for acute leukemia and refractory lymphoma: clinical response and pharmacology.

1-beta-D-Arabinofuranosylcytosine (ara-C), 2 or 3 g/sq m, was administered as a 1-hr i.v. infusion every 12 hr for 10 or 12 doses to patients with acute leukemia and refractory lymphoma. Four of seven patients with relapsed or refractory acute myelocytic leukemia and two of four patients with previously untreated acute myelocytic leukemia achieved complete remission. Of five treatment failures, two patients had leukemia which was clearly resistant to high-dose ara-C, and three patients died of infections or hemorrhagic complications during periods of pancytopenia. Three patients with acute myelocytic leukemia in remission received high-dose ara-C as consolidation therapy following previous courses of intensive, multiagent consolidation chemotherapy. Two of these three patients had prolonged thrombocytopenia following high-dose ara-C. Five patients with refractory acute lymphocytic leukemia were treated. Three patients achieved partial remission, and two patients had drug-resistant disease. Complete or partial disappearance of measurable disease parameters was seen in three of three patients with refractory lymphoma. Response was seen in five of five patients with meningeal leukemia, including complete response in one patient with extensive meningeal infiltration. Toxicity of this regimen was generally moderate and limited to pancytopenia and mild nausea. Patients who had received prior multiagent consolidation chemotherapy appeared to be at greater risk for hematopoietic toxicity. Patients who had received prior cranial irradiation or intrathecal chemotherapy appeared to be at greater risk for neurological toxicity. Plasma levels of ara-C immediately after completion of the infusion were 17.96 +/- 8.02 (S.D.) and 35.0 +/- 2.8 micrograms/ml for doses of 2 and 3 g/sq m, respectively. From 160 to 720 min following completion of the infusion, the plasma levels of drug were comparable to steady-state levels achieved with a continuous infusion of ara-C at 100 mg/sq m over 24 hr. A high degree of penetration into the central nervous system was demonstrated. High-dose ara-C has substantial activity against leukemic and lymphomatous cell populations, including cell populations resistant to conventional doses of the drug, and is an effective treatment modality for patients with these diseases. The high degree of penetration into the central nervous system suggests that this drug regimen may be useful as consolidation therapy for patients at high risk for central nervous system disease.

Adolescent

Treatment of refractory adult acute lymphocytic leukaemia and acute undifferentiated leukaemia with an anthracycline antibiotic and cytosine arabinoside.

Ten patients with acute lymphocytic leukaemia (ALL) and four patients with acute undifferentiated leukaemia (AUL) in relapse or refractory to conventional therapy were treated with remission induction therapy consisting of an anthracycline antibiotic and cytosine arabinoside. Twelve patients had previously demonstrated resistance to vincristine-prednisone and nine patients had prior anthracycline therapy. Nine patients achieved complete remission after one course of therapy with a median time to remission of 30 d. Of five nonresponders, three died of sepsis with marrow hypocellularity and no evidence of residual leukaemia. Only two patients had unequivocal evidence for resistance to an anthracycline-cytosine arabinoside regimen. Myelosuppression and infection were the most significant complications of therapy. The data presented indicate that marrow ablative chemotherapy with an anthracycline antibiotic and cytosine arabinoside is an effective regimen for remission induction in adults with ALL and AUL refractory to vincristine-prednisone. The use of these agents in remission consolidation therapy may offer the possibility of providing a reduction in residual resistant cells that are present after successful remission induction therapy with conventional agents.

Adolescent

Multiple myeloma.

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Antineoplastic Agents