Hypergammaglobulinemia in histiocytosis X.
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Biomedical subjects
Publications and source records attributed to D Hammond.
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A retrospective review of all 115 infants less than 1 year of age with acute lymphoblastic leukemia (ALL) entered on a consecutive series of recent Children's Cancer Study Group (CCSG) leukemia protocols was undertaken to examine in detail the outcome and clinical course of a large group of similarly treated infants. In comparison to the 4,392 children older than 1 year, entered on the same studies, infants had a significantly (P = .0001) increased incidence of leukocytosis, hepatosplenomegaly, meningeal leukemia at presentation, hypogammaglobulinemia, and failure to achieve complete remission (CR) status by day 14 of induction therapy. In contrast, lymphadenopathy, non-L1 French-American-British (FAB) morphology, mediastinal mass, and T cell leukemia were not more frequently observed. Ninety percent of these infants successfully completed the induction phase of therapy. With a median follow-up of 35 months, life table estimate of disease-free survival is only 23% at 4 years. Identical disease-free survival rates for infants were observed in each of the individual studies reviewed. Excessive toxicity resulting in limitation of therapy delivered was not a causative factor for the disappointing outcome of these patients. Rather, early disease recurrence, characterized by bone marrow relapse (55%) and CNS (22%) relapse, was the major factor responsible for the extremely poor prognosis of this patient group. Identical CNS relapse rates were observed in those patients who received cranial irradiation as part of CNS prophylaxis (21.8%) and in those patients who did not receive cranial radiotherapy (24%). Results of salvage therapy for patients who experienced systemic or extramedullary relapse were dismal. Debilitating neuropsychologic sequellae, presumably related to CNS irradiation, have been observed in 50% of the small number of long-term survivors. Infants less than 1 year of age with ALL present with a constellation of features which predict a poor outcome and constitute the group of children with ALL at greatest risk for treatment failure.
Therapeutic efficacy and toxicity were evaluated in 28 children with acute lymphoblastic leukemia, in ten with acute nonlymphoblastic leukemia (ANLL), and in 13 with metastatic neuroblastoma. All were refractory to standard chemotherapeutic agents and 25 were refractory to an investigational drug. The initial dose was 12 mg/m2/day and was based on an established maximal dose tolerated in adults. This dose was found to be intolerable in 5 of 5 children with leukemia. Similarly an initial dose of 9 mg/m2/day was intolerable in 4 of 5 patients with leukemia. The starting dose in the next 28 children with leukemia or neuroblastoma was 3 mg/m2. This drug was gradually increased to the highest tolerated dose by 3-mg/m2 increments. Fifteen children with acute lymphoblastic leukemia, 3 children with ANLL, and 2 children with neuroblastoma received the drug daily. Seven patients with ANLL and 7 patients with neuroblastoma received the drug biweekly. Seventeen patients with acute lymphoblastic leukemia, 6 patients with ANLL, and 5 patients with neuroblastoma had an adequate trial of the drug. An adequate trial was defined as a minimum of 5 weeks of therapy unless progressive disease developed. Side effects of the drug were striking and included fever, hypotension, myalgia, bone pain, arthralgia, arthritis, abdominal pain, liver toxicity, thrombocytopenia, and neurotoxicity. No complete remission occurred although interferon levels above 100 units/ml were induced in nearly 50% of the patients.
A Phase II study of poly(I,C)-LC was performed in 28 children and adolescents with acute lymphoblastic leukemia (ALL), 10 with acute nonlymphoblastic leukemia (ANLL), and 13 with metastatic neuroblastoma. All were refractory to standard chemotherapeutic agents and 25 to an investigational drug. Initial doses of 12 mg/m2 and 9 mg/m2 were intolerable. However, 9 mg/m2 was tolerable in the majority of patients when the drug was started at 3 mg/m2 and increased by 3 mg/m2 increments. Fifteen children with ALL, three with ANLL, and two with neuroblastoma received the drug daily. Seven patients with ANLL and seven children with neuroblastoma received the drug biweekly. Twenty-eight patients received an adequate trial, which was defined as a minimum of 5 weeks at the maximal tolerated dose, unless there was progressive disease at the maximal tolerated dose. Side effects of the drug were striking, and included fever, hypotension, myalgia, bone pain, arthralgia, arthritis, abdominal pain, liver toxicity, thrombocytopenia, and neurotoxicity. No complete remissions occurred in spite of interferon levels above 100 U in nearly 50% of patients.
The Childrens Cancer Study Group (CCSG) has evaluated French-American-British (FAB) morphology in newly diagnosed children with acute lymphoblastic leukemia (ALL) since 1975. A modification of the FAB system was used in which individual lymphoblast cells were scored and designated as either L1 or L2 on the basis of distinctive morphologic characteristics. L1 ALL was defined as less than 10% L2 cells and greater than 90% L1 cells; L2 ALL was defined as greater than or equal to 10% L2 cells and less than 90% L1 cells. FAB morphology was an independent predictor of overall survival (P = 0.02) in CCSG-141 and a highly significant predictor of successful induction of complete remission and event-free survival in the CCSG-160 series (P = 0.00001). These studies involved nearly 3900 patients. Two concordance studies have been performed. In the first (1981) study, overall concordance between the FAB reference laboratory and member institutions was 76% using a two-category system (L1, non-L1), 86% for L1 cases, and 47% for non-L1 cases. In the second (1984) concordance study, the use of more stringent, semiquantitative definitions of L1 and L2 lymphoblasts did not improve overall (75%), L1 (89%), or non-L1 (46%) concordance. The results of reference laboratory classification more powerfully predicted event-free survival than did member institutions (P = 0.016 vs P = 0.125). Quality control factors (slide preparation, cellularity, staining quality, and discipline of the reviewer) did not influence concordance. These results justify the continued assignment of patients to protocols of the CCSG-100 series on the basis of the modified FAB classification. The biological significance of the FAB morphologic variants remains to be determined.
Ferritin was measured in sera obtained at diagnosis from 241 patients with neuroblastoma to determine (a) the incidence of elevated ferritin and (b) the relationship between ferritin level and outcome. Ferritin was infrequently elevated in sera from patients with Stages I and II disease but was abnormally elevated in 37 and 54% of those with Stages III and IV neuroblastoma, respectively. The mean and median levels for each stage were compared and were highest for Stages III and IV disease. Analysis of progression-free survival for children with Stages III and IV disease indicated that elevated ferritin was associated with a significantly poorer prognosis than was normal ferritin and that this correlation was independent of stage and age at diagnosis. Progression-free survival at 24 months of follow-up for patients with Stage III disease with normal ferritin was 76% and with elevated ferritin was 23%. For those with Stage IV disease, progression-free survival was 27 and 3% with normal and elevated ferritin, respectively. We conclude that determination of the level of ferritin in serum at diagnosis is useful for selecting appropriate therapy for patients with Stage III neuroblastoma. Those with normal ferritin (63% of patients) have a good outcome with current therapy, but those with elevated ferritin (37%) do poorly and require more effective therapy. Although ferritin defines subgroups with Stage IV disease, the outcome of all groups must be improved.
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1466 children with acute lymphoblastic leukaemia had routine bone-marrow aspiration at the end of each 84-day cycle of maintenance therapy. Relapses detected by routine bone-marrow aspiration were classified according to whether or not they could be predicted by clinical signs or peripheral blood counts. In the low-risk, moderate-risk, and high-risk leukaemic patients 0.4%, 0.5%, and 0.8%, respectively, of the total routine bone-marrow aspirations yielded an unpredicted bone-marrow relapse. 19.4% of relapses were detected by routine surveillance marrow aspirations before any clinical signs of relapse on physical examination or peripheral blood count. The median survival after relapse in the predicted group was significantly shorter than that in the unpredicted group, but the eventual outcome was the same in both groups, 95% of all patients dying within 24 months of relapse.
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Patients with acute lymphoblastic leukemia who have a mediastinal mass at the time of diagnosis are said to have a poor prognosis. However, many factors which may not be independent contribute to the success of treatment. We compared the disease characteristics and results of therapy in children having large mediastinal masses and lymphoblastic leukemia without mediastinal mass. Patients with a mediastinal mass had less evidence of marrow failure but were burdened with considerably more leukemic cells as measured by peripheral blood white count and extent of lymphadenopathy. Since the presence of mediastinal mass was strongly associated with these and other poor prognostic characteristics, we used multivariate techniques to determine which characteristics were independently associated with an increased risk for relapse. White count, extent of lymphadenopathy, age, and sex were significant predictors of early relapse, but when controlled for these variables the presence of a mass did not predict prognosis.
A study of children in relapse with acute nonlymphocytic leukemia (ANLL) previously maintained in remission with combination chemotherapy including cytosine arabinoside (Ara-C) was undertaken by Children's Cancer Study Group (CCSG) to assess the efficacy of cyclocytidine (Cyclo-C), a depot Ara-C, compared to parenteral Ara-C given every 12 hr. The reinduction protocol consisted of daunomycin combined with either Ara-C (Regimen 1) or Cyclo-C (Regimen 2). One-hundred thirty eligible patients were entered on the randomized study. Hematologic toxicity was significant in both regimens and resulted in four drug-related deaths. Cardiac toxicity was observed in five patients, manifested only by abnormal echocardiogram or electrocardiogram patterns in three and congestive heart failure in two patients. Seventy-seven of 112 evaluable patients achieved M-1 or M-2A marrow remissions (69%): 46 of 60 on Regimen 1 (75%), 30 of 52 on Regimen 2 (60%). The remission rate between the two regimens was not significantly different. There was no significant difference in the duration of remission comparing maintenance cyclophosphamide combined with Ara-C or with Cyclo-C. Addition of VP-16 and CCNU to the maintenance therapy did not prolong the duration of remission. This study indicates that patients with childhood ANLL previously treated with Ara-C and daunomycin can obtain a successful second remission. A single daily subcutaneous dose of Cyclo-C was found to be as efficacious as Ara-C given intravenously every 12 hr. The single dose schedule provides a convenient way to treat patients with relapsed ANLL in the outpatient setting.
Review of 5406 children with acute lymphoblastic (ALL) or nonlymphoblastic leukemia (ANLL) registered with Childrens Cancer Study Group (CCSG) since 1972 identified 115 patients (2.1%) with Down syndrome. The proportion of patients with Down syndrome was the same for ALL (2.1%) and ANLL (2.1%). Patients with ALL with and without Down syndrome did not differ significantly with respect to age at diagnosis, sex, race, morphology (FAB classification), cell surface markers, initial white blood cell count, pretreatment hemoglobin value, hepatomegaly, lymphadenopathy, presence of mediastinal mass, CNS disease at diagnosis, or prognostic group as defined by age and initial white blood cell count. Patients with ALL-Down syndrome less frequently had splenomegaly, had lower pretreatment platelet counts, and more often had normal or elevated IgG or IgA levels. In addition, they had a significantly lower rate of remission (81% versus 94%), a higher mortality during induction therapy (14% versus 3%), and a poorer overall survival with 5-year life table rates of 50% versus 65% (P less than 0.001). If an initial remission was achieved, there were no significant differences with respect to remission duration, survival, or disease-free survival. Patients with ANLL-Down syndrome were younger at diagnosis than those without Down syndrome. There was no significant difference in the remission rates between these patients. Analysis of findings in patients with ANLL provided results similar to those obtained for patients with ALL with regard to clinical outcome after achievement of an initial remission.
Members of children's cancer study group designed Study CCG 351 to determine whether three drug chemotherapy improved the survival experience of children with localized neuroblastoma. Patients in stages I-III were treated with surgical removal of the primary tumor and those in stages II and III received radiation therapy to the tumor bed and chemotherapy. Treatment included cyclophosphamide, imidazolecarboxamide, and vincristine given in 5-day pulses each month for 12 courses. The results were compared to those from a previous study, CCG 011, for localized neuroblastoma, in which children were randomized between a treatment regimen that included cyclophosphamide and one with no chemotherapy. There were 133 evaluable patients, subdivided as follows: stages I-26, stages II-74, and stages III-33. The 3-year life-table survival rates by stage of 96, 89 and 50% were not significantly different from the patients in CCG 011 similarly staged who received either no chemotherapy or oral CPM. These data suggest that multiagent chemotherapy, as prescribed, did not improve the outlook for children with locally advanced but nonmetastatic neuroblastoma. The staging criteria employed showed a modest difference in outcome between patients in stages I and II, but a significant poorer survival for stage III as compared to either stage I or II.
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Pentamidine isethionate and sulfamethoxazole-trimethoprim are effective in the treatment of Pneumocystis carinii pneumonia in the immunosuppressed pediatric patient. To compare their efficacy and toxicity, 25 pediatric cancer patients with biopsy-proved P carinii pneumonia were randomly assigned to receive either pentamidine intramuscularly or sulfamethoxazole-trimethoprim orally for 14 days. No differences in response or frequency of side effects were noted between the two drug regimens, with recovery occurring in 24 (96%) of 25 children. Skin eruptions and hematologic abnormalities were the most common side effects of sulfamethoxazole-trimethoprim therapy, while local reactions at injection sites, abnormal renal function, and hypoglycemia were the most frequent complications of pentamidine treatment. The ease of administration and less serious side effects of sulfamethoxazole-trimethoprim make it the drug of first choice for treating P carinii pneumonia. Pentamidine remains an important drug for patients who fail to respond to this initial therapy.
Serum levels of neuron-specific enolase (NSE) were measured by radioimmunoassay at diagnosis in 122 children with widespread metastatic neuroblastoma (clinical stage IV). 96% of these patients had NSE levels more than three standard deviations above the mean for age-matched normal children. Mean serum NSE was 207 +/- SD257 ng/ml (range 10-1240 ng/ml), whereas that in normal age-matched children was 7.5 +/- 2.1 ng/ml (range 5.4-12.9 ng/ml). Analysis of survival in relation to the level of NSE at diagnosis suggested that serum levels greater than 100 ng/ml were associated with a poor outcome. This relation was highly significant in the subgroup of infants less than 1 year old at diagnosis; all 7 with serum NSE below 100 ng/ml were alive up to 36 months after diagnosis, whereas 7 of 8 with serum NSE above 100 ng/ml died within 12 months of diagnosis. Serum NSE may be a useful disease marker and a prognostic indicator in children with metastatic neuroblastoma.