[Psychosocial care of children with cancer and their families: requirements and reality].
Explore the source record for details and available documents.
Biomedical subjects
Publications and source records attributed to G Schellong.
Explore the source record for details and available documents.
The initial findings and the course of 20 children and adolescents with adult CML from 10 children hospitals were analyzed retrospectively. The Philadelphia chromosome was found in 18 patients. Initial findings, the course and the prognosis were similar to those published from adult patients. 7 of the 11 children who received chemotherapy alone are still alive with a median survival time of 26 months (range: 14 to 68 months). One patient survived the third blast crisis. For 9 children with a bone marrow transplantation during the chronic phase (median time before transplantation 30 months) the follow-up of 7 months is still too short. 4 of these patients died following graft versus host reaction, 5 show no signs of a renewed occurrence of CML so far. Since CML is rare in children, there is little large scale experience. Hence, there is an urgent need for the prospective and cooperative study of these patients.
Analyses of the cellular DNA content were carried out in 226 patients with acute lymphoblastic leukemia (ALL) and in 61 children with acute myeloid leukemia (AML) to assess the incidence and clinical significance of DNA aneuploidies. All children were treated within the BFM studies ALL 79/81 and 81/83 as well as AML 78 und 83. DNA aneuploidies were identified in ALL in 39,8% and in AML in 36,1% of cases. Within the ALL group a significantly higher rate of aneuploid DNA stemlines was observed for non-T/non-B ALL with 44,1% as compared to T-ALL with 14,3% (p less than 0,01). In AML the morphologic subgroups M 1/2 revealed a lower frequency of 21,7% DNA aneuploidies than M 4/5 leukemias with 44,4%. The rates of complete remissions were not different between patients with and without DNA aneuploidy neither in ALL nor in AML. In the study ALL 79/81, however, a tendency towards longer remissions for patients with DNA aneuploidy was found (p = 0.053) which could not be confirmed at present by the study ALL 81/83. In both ALL trials patients with the lowest pretherapeutic risk-score revealed the highest rate of aneuploid DNA stemlines.
Analysis of the cellular DNA content was carried out in 162 children with ALL and 34 children with AML admitted to the university children's hospital Münster between 1979 and 1984. DNA aneuploidies were identified at a similar frequency in ALL (40%) and AML (44%). However, the degree of DNA aneuploidies (DNA-index) was significantly lower in aneuploid AML (median 1.09) than in aneuploid ALL (median 1.19). We found a significantly lower incidence of DNA-aneuploidies in T-ALL (3/21; 14%) as compared to non-T/non-B-ALL (60/137; 44%). No differences were found between children with and without DNA aneuploidy in PAS score and TdT activity. In non-T/non-B-ALL DNA aneuploidy is highly correlated with a long pretherapeutic history, with a low WBC and blast count and with a low serum LDH. Under the conditions of the ALL protocols BFM-79/81 and 81/83 no difference in the remission rate was found between the two patient groups. However, more relapses occurred so far within the group of children without DNS aneuploidy.
Between December, 1978, and October, 1982, 151 children with acute myelogenous leukemia from 30 pediatric clinics entered the cooperative study. The treatment consisted of a 10-week intensive induction therapy and a subsequent maintenance therapy, which is terminated for children in complete continuous remission after 2 years. The induction treatment during the first 4 weeks consisted of a combination of prednisone, 6-thioguanine (TG), vincristine, adriamycin (ADR) and cytosine-arabinoside (ARA-C). In the following 4 weeks i.v. cyclophosphamide, i.th. methotrexate and prophylactic cranial irradiation were administered in addition to TG, ARA-C and ADR. 119 of the 151 patients (79%) achieved complete remission. 13 children (9%) died of early hemorrhages, 2 of them before onset of therapy. 5 patients died initially of other complications, another 6 after remission has been achieved. 13 children did not respond or responded poorly to the induction therapy. So far, 40 relapses occurred, mainly in the bone marrow. In 6 relapses the central nervous system was involved. The probability for a continuous complete remission for the total group is 0.41 +/- 0.05 (life table analysis) and for the total group 0.56 +/- 0.06 after 45 months. The corresponding probability for survival after 46 months are 0.43 +/- 0.06 for the remission group. The risk for occurrence of early fatal hemorrhages was higher in children with acute monocytic leukemia than in the other morphological subtypes. An initial leukocyte count of more than 100,000/microliters was found significantly more often in patients who did not achieve remission (early deaths and nonresponders) than in children of the remission group. So far, no factors could be identified which influence the risk for relapse. The present results of the study allow the conclusion, that with the applied treatment strategy it is possible to achieve not only in a high portion of children with AML remission but also to improve the chances for long-time remission and perhaps cure.
From 1970 to 1979, two subsequent BFM studies were performed with different modalities of systemic chemotherapy and preventive central nervous system (CNS) therapy. Eighteen out of 275 children experienced isolated CNS relapses within 2 years after diagnosis. The present analysis should clarify the following questions: 1. Could the risk for CNS relapse be assessed by initial diagnostic findings? 2. Is the CNS relapse rate influenced by more intensive systemic chemotherapy? 3. Is the CNS relapse rate altered by different doses of radiation therapy? The risk for relapse was assessed using a risk index (RI) based on findings at diagnosis. All patients were treated with an 8 weeks induction and consolidation chemotherapy protocol. In part, children with increased risk for relapse (RI greater than = 3) received an additional 6 weeks reinduction protocol within the first six months after diagnosis. Preventive treatment to the CNS consisted of radiotherapy at doses of less than = 18 Gy or 24 Gy and intrathecal methotrexate given during the consolidation phase. The results are as follows: 1. The RI proved to be predictive also for the risk of CNS relapse. However, CNS relapse rates were not substantially higher in children with RI greater than = 3 when they had been exposed to radiation doses of 24 Gy instead of less than = 18 Gy. 2. Intensive systemic reinduction therapy did not influence the CNS relapse rate in children with RI greater than = 3. 3. Three percent of children with RI less than = 2 experienced CNS relapses, irrespectively of lower or higher radiation doses. In patients with RI greater than = 3, however, irradiation at doses of less than = 18 Gy instead of 24 Gy led to a 3-4 fold higher incidence of CNS relapses, irrespectively of chemotherapy. We conclude that radiation doses of less than = 18 Gy are capable of preventing CNS relapses effectively in children with RI less than = 2. The exposure of patients with RI greater tha = 3 to doses of 24 Gy is justified.
Testicular function was evaluated in 8 boys with acute lymphoblastic leukemia (ALL) and testicular relapse following another course of intensive chemotherapy with unilateral or bilateral orchidectomy and/or testicular irradiation. LH- and FSH-secretion was studied in all using a standardized LHRH-test. In addition, a HCG-test was performed in 6 boys. In prepuberty, all boys examined showed normal LH- and FSH-values. Beginning at 9 to 10 years, elevated basal and/or stimulated LH- and FSH-values were occasionally noted in contrast to the consistently elevated values after the age of 12. Using the HCG-test, we found a testosterone response only in patients receiving gonadal irradiation of 1 100 and 1 500 rads (2 patients). No response was elicited in those with radiation doses of 2 400 and 3 000 rads. We conclude that high dose gonadal irradiation and chemotherapy cause temporary and possibly permanent impairment of spermatogenesis and Leydig cell function in boys with ALL and testicular relapse.
The Philadelphia chromosome is rarely observed in acute myelogenous and acute lymphoblastic leukemias. There are only a few case reports about pediatric patients, the prognosis of whom seems to be extremely poor. Reviewing the case of a girl aged 18 months with Philadelphia chromosome positive acute lymphoblastic leukemia, the differences between this entity and blast crisis of chronic myelogenous leukemia are described. This subgroup of Philadelphia chromosome positive acute lymphoblastic leukemia may represent a new risk group.
Based on concepts of the successful German-Austrian pediatric Hodgkin studies DAL-HD 78 until-90, a new trial was initiated addressing the question whether radiotherapy can be further reduced or can be omitted in case of complete remission after initial chemotherapy, aiming at reduction of sequelae after radiotherapy, especially radiogenic second malignancies. In respect to CHEMOTHERAPY patients are stratified into 3 therapy groups (TG) according to stage and gender: 2 courses of OPPA (girls) or OEPA (boys) in TG1 (stage IA/B, IIA), and in addition 2 (TG2: stage IEA/B, IIEA, IIB, IIIA) or 4 (TG3: stage IIEB, IIIEA/B, IIIB, IVA/B) COPP courses. Boys with stage IIIB and IIIEB receive OPPA instead of OEPA. RADIOTHERAPY is administered according to response to chemotherapy independent of stage: patients with complete remission or minimal residues do not receive irradiation; patients with more than 75% tumor regression are irradiated to involved fields at a dose of 20 Gy. Doses of 30 or 35 Gy are given to regions with tumor regression below 75% or residual bulky tumor of > 50 ml, respectively. INTERIM RESULTS: From 8/95 till 1/98 we registered 385 patients under the age of 18 years from Germany, Austria, Switzerland, Sweden and the Netherlands. Therapy has been completed in 334 patients. Three patients with solitary nodular paragranuloma were treated with surgery only. Out of 331 patients 89 (26.9%) achieved a complete remission with chemotherapy. Tumor regression of more than 75% was seen in 193 (58.3%) patients and below 75% in 39 (11.8%) patients. Tumor progression during chemotherapy occurred in 1 (0.3%) patient. Response after chemotherapy was not evaluable for 9 (2.7%) patients. Radiotherapy was omitted in 91 (27.1%) patients: in TG1 50 of 142 (34%) patients, TG2 24 of 98 (24.5%) patients and TG3 18 of 94 (19.2%) patients. Initially involved regions were irradiated at a dose of 20 Gy in 164 of 334 (49.1%) patients. Doses up to 30 Gy or 35 Gy were given to 19 (5.7%) or 57 (17.1%) patients respectively. Events (tumor progression, relapse or death) occurred in 23 of 334 patients until now. The event-free survival rate is 0.91 at 2 1/2 years for all study patients and 0.89 for patients without radiotherapy. Six relapses occurred in 91 patients without radiotherapy. No relapse occurred in TG1 (n = 49), but in 5 of 24 TG2-patients, and in 1 of 18 TG3 patients without radiotherapy. As yet, the results are not significantly inferior compared with trial DAL-HD 82. Therefore this trial aiming at omitting radiation therapy in patients with complete remission after a short lasting chemotherapy will be continued. Longer follow up is necessary for final evaluations and conclusions.
UNLABELLED: The main objective of the multicenter study DAL-HD-87 was to evaluate for the involved-field irradiation a dose reduction by 5 Gy compared with the precursor studies HD-82 and HD-85. Moreover, the decisional strategy for selective laparotomy developed on the basis of retrospective analyses in study HD-82 was to be tested in a prospective design. Chemotherapy in group 1 (stages I, IIA) consisted in 2 OPA cycles (vincristine, prednisone, adriamycin). Group 2 (stages IIEA, IIB, IIIA) received 2 x OPA + 2 x COP(P), and group 3 (stages IIEB, IIIB, IV) 2 x OPPA (with procarbacine) + 4 x COP(P). For the subsequent radiotherapy, doses of 30, 25, and 20 Gy respectively were applied in the 3 groups. Fields with incomplete lymphoma regression were to receive an additional boost of 5-10 Gy. -Exploratory laparotomy was considered indicated in the event of abnormal findings in abdominal CT/ultrasonography and/or enlargement of lymph nodes at the pulmonary hilus. RESULTS: From Dec. 1986 to Sept. 1990, 204 pts from 51 centres were enrolled in the study. 196 were evaluable. 109 pts (55.6%) were laparotomized, 58 (29.6%) splenectomized. The accuracy for the prediction of an abdominal involvement was 72.3% in case of abnormal findings in abdominal CT/ultrasound but only 36.4% in case of enlarged lymph nodes at the pulmonary hilus without abdominal abnormalities. 91.2% of the removed spleens were proven involved. -2 out of 196 pts suffered progression under treatment, and 22 relapsed (as of 1 Jan, 1994). 6 pts died, 4 of whom succumbed to Hodgkin's disease, and 2 to intercurrent infections. 2 pts in first remission developed a secondary malignancy, namely 1 malignant histiocytoma in radiation field and 1 ANLL. Another patient developed a thyroid carcinoma following salvage therapy for a relapse. The probabilities of event-free survival (EFS) and survival after 7 years are for the total group: 85% and 97%, in group 1: 84% and 99%, in group 2: 82% and 93%, and group 3: 89% and 95%. Comparison with the precursor studies HD-82 and HD-85 reveals that the dose reduction in radiotherapy has not affected the results. Differences in EFS are exclusively correlated with changes in chemotherapy.