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Biomedical subjects

J V Simone

Publications and source records attributed to J V Simone.

At least 37 records · Page 2Linked to original sources

Cytokinetically based induction chemotherapy and splenectomy for childhood acute nonlymphocytic leukemia.

A four-drug regimen, based on cell kinetic principles, induced complete remissions in 68 of 95 children (72%) with acute nonlymphocytic leukemia (ANLL). Patients entered remission after 2-5 weekly cycles of vincristine-daunorubicin (day 1) followed by sequential cytosine arabinoside and 6-azauridine (days 4-7). With continuation therapy of monthly vincristine-doxorubicin-cyclophosphamide, weekly cytosine arabinoside, and daily 6-mercaptopurine, the median duration of complete remission was 10 mo and the median survival time 21 mo. Portal triaditis, evident in 11 of 23 patients with liver biopsies, was associated with long remissions. A larger spleen size (greater than 5 cm) and a higher myeloblast labeling index (greater than 10%) at diagnosis were clearly related to shorter durations of remission. Splenectomy within 1 mo of remission had no statistically significant effect on the frequency of relapse or length of remission. Patients without central nervous system (CNS) leukemia at diagnosis, all treated prophylactically with intrathecal methotrexate, had a low frequency of initial CNS relapse (3/56, 5%). The 2-yr disease-free survival rate is 29% (20 of 68 patients attaining complete remission). fifteen patients have completed 2.5 yr of therapy, and each remains in continuous complete remission, off treatment, for 1+ -36+ mo. This induction chemotherapy was as effective as more intensive regimens, with the advantage of less toxicity and shorter periods of hospitalization.

Acute Disease

Progression of methotrexate-induced leukoencephalopathy in children with leukemia.

From 1972-1974, 228 children began treatment for acute lymphocytic leukemia and were prospectively assessed for neurologic complications. After CNS irradiation (2,400 rad) and intrathecal methotrexate (MTX), they received weekly intravenous maintenance therapy with MTX alone (40-60 mg/m2; 20 patients) or MTX (10-30 mg/m2) with other drugs (208 patients). Signs of leukoencephalopathy appeared in 11 children (nine without CNS leukemia) after 4-15 months of IV MTX alone, and included lethargy, seizures, spasticity, paresis, drooling, and dementia. Before or during the clinical onset, EEG frequencies slowed (all ten patients tested). Radionuclide scans showed periventricular accumulation of 99mTc (9/11 patients) and remained abnormal for greater than or equal to six months in eight patients. Cranial computed tomograms or neuropathology findings (five patients each) demonstrated leukoencephalopathy (nine patients) and radiation-related microangiopathy (ten patients). Severe neurologic and neuropsychologic dysfunctions were present in four long-term survivors.

Brain

Outlook for acute lymphocytic leukemia in children in 1982.

The treatment of childhood ALL has been remarkedly successful over the past 30 years of the chemotherapy era. A substantial proportion of patients, perhaps 40--50%, are apparently cured with currently available therapy. However, optimal therapy has not yet been devised because of substantial therapeutic failures in the form of relapse and unacceptable side-effects. Remission induction therapy is the most settled aspect of therapy. The addition of asparaginase or an anthracycline to prednisone and vincristine is highly effective. Preventive central nervous system therapy is under revision and study. It is likely that a variety of approaches will be equally effective. Continuation (maintenance) therapy is in the most need of revision because of a majority of therapeutic failures are due to bone marrow relapse--the failure of systemic therapy to prevent emergence of resistant leukemia cells. The optimal duration of therapy has not been established, the relapse rate after cessation of therapy lasting 2-3 years currently being 20-25%. Bone marrow transplantation during remission shows promise as a therapeutic modality, particularly if autologous techniques are successful. The most promising development, however, is our increasing understanding of biological subpopulations of leukemia cells. This ultimately may help us develop more effective and specific therapy for childhood ALL.

Bone Marrow Transplantation

Optimal current treatment of childhood acute lymphoblastic leukemia.

The treatment of childhood acute lymphoblastic leukemia (ALL) has been remarkably successful over the past 30 years of the chemotherapy era. A substantial proportion of patients, perhaps 40%-50%, are apparently cured with currently available therapy. However, optimal therapy has not yet been devised because of substantial therapeutic failures in the form of relapse and unacceptable side effects. Remission induction therapy is the most settled aspect of therapy. The addition of asparaginase or an anthracycline to prednisone and vincristine is highly effective. Preventive central nervous system therapy is under revision and study, with a variety of approaches likely to prove equally effective. Continuation (maintenance) therapy is in the most need of revision because a majority of therapeutic failures are due to bone marrow relapse--the failure of systemic therapy to prevent emergence of resistant leukemia cells. The optimal duration of therapy has not been established, the relapse after cessation of therapy lasting 2-3 years currently being 20%-25%. Bone marrow transplantation during remission shows promise as a therapeutic modality. The most promising development, however, is our increasing understanding of biological subpopulations of leukemia cells. This ultimately may help us develop more effective and specific therapy for childhood ALL.

Antineoplastic Agents

Long-term neurological implications of somnolence syndrome in children with acute lymphocytic leukemia.

A longitudinal study of 49 children with acute lymphocytic leukemia (ALL) assessed the long-term effects of central nervous system (CNS) prophylaxis on brain function. From 10 to 12 electroencephalograms (EEGs) were done before and at intervals during after 30 months of treatment that included 2,400 rads of CNS irradiation plus intrathecal methotrexate therapy. None of the children had CNS leukemia, and all remained in first complete remissions. All 49 had abnormally slow EEG background frequencies during the four-year study, and 29 (60%) developed somnolence syndrome six to eight weeks after CNS prophylaxis. During this syndrome, EEG background frequencies decreased more than 3 standard deviations below the expected mean values for normal children. Thereafter, 7 of the 29 began to show signs of learning disabilities and 7 developed recurrent seizures. Of the 20 children who did not have the syndrome, none showed later evidence of CNS dysfunction. Somnolence may be an early indicator of long-term neurological sequelae after cranial irradiation.

Brain

A reappraisal of the results of stopping therapy in childhood leukemia.

We examined the results of stopping therapy in children with acute lymphocytic leukemia. Of 639 patients in eight consecutive "total therapy" studies, 278 (44 per cent) had all treatment stopped, usually after 2 1/2 years of complete remission. About one fifth (55 of 278) of this group have relapsed, mainly in the bone marrow. The relapse rate for the first year off therapy was higher than that for the next three years (0.16 vs. 0.04, P less than 0.01). The life-table estimates of the four-year relapse rates were 0.24 for all patients and 0.22 for patients receiving adequate central-nervous system prophylaxis. Boys had a higher relapse rate than girls (0.33 vs. 0.15 P less than 0.01). None of the 79 patients who remained in complete remission for at least four years off therapy have yet relapsed. Acute lymphocytic leukemia appears curable in over one third of all newly diagnosed patients who receive treatment for approximately 2 1/2 years.

Antineoplastic Agents

Childhood leukemia as a model for cancer research: the Richard and Hinda Rosenthal Foundation Award Lecture.

Childhood acute lymphocytic leukemia (ALL) is a model for the study of disseminated cancer. It is always disseminated and relatively uniform, it is accessible to repetitive tissue sampling, and we have highly effective chemotherapy for it. The first systematic, controlled trials of cancer therapy were designed for patients with ALL by physicians with the courage and audacity to aim for cure of a "hopeless" disease. The concept of leukemia cell subpopulations in each patient received major clinical support from ALL. The pharmacological sanctuary, typified by the meninges, was first discovered and specifically attacked in ALL. Combination therapy, aggressive therapy during remission, phase-specific therapy, and the interrelationships of phases of therapy were developed first in ALL. Since leukemia cell features, such as T-cell characteristics, correlate with responsiveness to therapy, powerful new tools may be developed to improve the biological specifically of therapy. In addition to the gratifying results of therapy over the past two decades, childhood ALL continuity offers opportunities for biological research as well as improved therapy for ALL and other forms of disseminated cancer.

Adult

Childhood acute lymphocytic leukemia: study VIII.

This controlled study of children with ALL was designed to test the efficacy and toxicity of one-, two-, three- and four-drug therapy during remission and whether more aggressive therapy in the first eight weeks prolongs remission in patients with features associated with a particularly poor prognosis. After inducing remission with prednisone, vincristine and asparaginase, patients received cranial irradiation and IT methotrexate and were randomized to receive: 1--methotrexate alone; 2--methotrexate plus mercaptopurine; 3--same as in group 2 plus cyclophosphamide; and 4--same as in group 3 plus arabinosyl cytosine. Patients with CNS leukemia at diagnosis received IT methotrexate weekly during the induction period and a higher dose of CNS irradiation. Patients with anterior mediastinal enlargement at diagnosis received radiotherapy to the mass during the induction period. Patients who failed to attain bone marrow remission after four weeks of therapy were given daunorubicin and prednisone for 2--4 additional weeks. Of the 282 patients entering this study between January 1972 and November 1975, 268 (95%) attained complete remission and 228 (85%) were randomized to receive continuation chemotherapy with 1, 2, 3 or 4 drugs. In Group 1 (methotrexate alone), 14 of 20 patients relapsed and 9 developed leukoencephalopathy without antecedent CNS leukemia apparently due to higher doses of intravenous methotrexate; in Groups 2, 3 and 4 the results were equivalent, but without leukoencephalopathy in initial CR. The addition of cyclophosphamide and arabinosyl cytosine increased toxicity and complications without demonstrably increasing the leukemocidal effect. In the 40 patients given additional early therapy, the modalties employed in this study did not prolong remission.

Adolescent

Preventive central nervous system irradiation in children with acute nonlymphocytic leukemia.

In this study of children with acute nonlymphocytic leukemia an attempt was made to prevent central nervous system relapse and to determine whether this therapy, coupled with multiagent chemotherapy, would be successful in prolonging durations of complete remission. Central nervous system relapses were prevented by irradiation, although patients who received this therapy did no better than those who did not receive irradiation. A small group of patients received irradiation to the liver and spleen, but this modality also failed to improve the duration of remission. Control of extramedullary leukemia, in this study, failed to improve remission duration because bone marrow relapse was not prevented or delayed. It is unlikely that focal therapy will have a significant impact in acute nonlymphocytic leukemia until longer marrow remissions are achieved.

Acute Disease

Current progress in the treatment of the child with cancer.

Treatment for the child with cancer has increasingly been on a rational rather than an empiric basis. An understanding has developed of the importance for determining clinical and laboratory features present at diagnosis as an aid not only to establish a prognosis but also to design specific treatment regimens. A system has been developed for bringing new chemotherapeutic agents into clinical trials as effectively as possible. Through both clinical and laboratory studies, an increasing understanding of the biology of cancer is being developed. This understanding will provide the basis for more rational treatment programs in the future. Physicians of different specialty interests have learned to work together to develop coordinated programs of treatment so important to optimal care. By far the most important lesson learned, however, is that cancer in children is not of necessity a fatal disease, even when dissemination has occurred. For the furture, it will be necessary to develop even more effective methods of treatment, and research must provide a better understanding of this disease that may offer the opportunity for prevention, which, after all, is the number one interest of the pediatrician.

Adolescent