Primitive neuroectodermal tumor of the brain in a girl with Turner syndrome diagnosed after 4 years of growth hormone therapy.
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PURPOSE: Because Ewing's sarcoma (EWS) is extremely rare in the hand and forearm, only limited data are available for planning treatment or predicting prognosis. METHODS: Data of 33 patients with EWS of the forearm or hand who were enrolled in studies of the German Association for Paediatric Oncology/Haematology and the European Intergroup Cooperative Ewing's Sarcoma Study Group were analyzed. Patients received neoadjuvant multi-agent chemotherapy according to the valid protocol. Local treatment consisted of surgery (n=7), radiotherapy (n=7), or a combination of both (n=19). RESULTS: The 5/10-year overall survival rate was 84.1% (95% CI: 71.2-96.9)/74.1% (95% CI: 56.8-91.5), and both 5/10-year event-free survival rate were 71.3% (95% CI: 55.4-87.1). Only one of seven patients with secondary metastases was in remission at the time of analysis. One patient with local recurrence and another with primary metastases died. Altogether, eight of 33 patients died of their disease. The event-free survival rate was 80.6% in patients with good response to chemotherapy and 33.3% in patients with poor response. Surgery in combination with radiotherapy achieved a higher survival rate compared with radiotherapy or surgery alone. One out of two patients with non-wide margins of resection died of disease. CONCLUSIONS: The results demonstrate a remarkably high survival rate for patients with EWS of the hand and forearm.
There are nearly 50 PNET cases in the literature with primary renal localization. The mean age for renal PNET is 28 but it can be seen in a wide range between 4 and 69 years. In this atypical localization PNET may be mistaken with a variety of small round cell tumors, particularly with blastema predominant Wilms' tumor and due to its distinctive prognostic and therapeutic features differential diagnosis is very important. Immunohistochemical studies are useful in discriminating PNET from other renal small round cell tumors. Renal PNETs tend to metastasize at early stages and they have a high rate of recurrence. Our case is a 45-year-old male presented with left flank pain and hematuria. In computerized tomography a mass in left kidney was observed and nephrectomy was performed. Histopathologic examination revealed a small round cell tumor with rosettes and pseudorosettes. Immunohistochemically the lesion was diffuse strong positive with CD99 and NSE, negative with LCA, pancytokeratin, vimentin, desmin, smooth muscle actin, chromogranine A and S-100. At the time of diagnosis the pathologic stage of the tumor was T1aN0Mx. The patient did not take any further therapy and in 1-year follow-up no local recurrence or distant metastasize occurred.
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PURPOSE: Children under 5 years old with medulloblastoma (MB) have a poor prognosis. They are more susceptible to the deleterious effects of craniospinal irradiation (CSART) and have a higher relapse rate when treated with low-dose CSART alone. We, thus, embarked on a prospective trial testing the usefulness of very low dose CSART and adjuvant chemotherapy. This is an update of a previous report on these patients. METHODS AND MATERIALS: Between January 1988 and March 1990, 10 patients with medulloblastoma were treated using 18 Gy radiation therapy (RT) to the craniospinal axis, a posterior fossa (PF) boost to 50.4-55.8 Gy and chemotherapy consisting of vincristine (VCR) weekly during RT. This was followed by VCR, cis-diamminedichloroplatinum (CDDP), and lomustine (CCNU) for eight, 6-week cycles. Patients between 18 and 60 months of age without evidence of tumor dissemination were eligible for study. Follow-up was available until September 1994 with a median follow-up for living patients of 6.3 years from diagnosis. RESULTS: Actuarial survival at over 6 years is 70 +/- 20%. Three of the 10 patients relapsed and died. In one patient, the relapse developed in the spine and brain outside the posterior fossa, in the second, concurrently in the posterior fossa, brain and spine, and the third, only in the spine. One surviving child developed a brain stem infarct 4.8 years after diagnosis and has since almost fully recovered. A mean intelligence quotient (IQ) score of 103 in six patients surviving at least 1 year is unchanged from the baseline group score of 107. Five children tested at baseline and 2 years following treatment had IQ scores of 101 and 102, respectively. Six children tested at baseline and at 3 years had IQ scores of 106 and 96, respectively. Excluding the child tested shortly after his brain stem infarct, baseline and 3 year IQ scores were 103 and 97, respectively. Five of the seven long-term survivors grew at rates significantly below their expected velocities during the follow-up period, while the others grew normally. Three patients have received growth hormone, and none have required thyroid replacement. CONCLUSIONS: These data suggest that medulloblastoma patients can be cured with chemotherapy and reduced doses of craniospinal irradiation. The low doses of CSART given by us in conjunction with cis-platin-based chemotherapy produce minimal neurocognitive damage. Growth velocities in very young children so treated are, however, dramatically reduced. Better means of improving the therapeutic ratio are still needed.
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There has been an explosion of new knowledge regarding the Ewing family of tumors over the past 5 to 10 years. Classical Ewing's sarcoma and PNET are now known to be the same tumor with variable differentiation, defined by a translocation between the EWS gene on chromosome 22 with one of three ETS-like genes, especially the FLI-1 gene on chromosome 11. Molecular techniques used to identify this translocation along with the knowledge that the protein product of the MIC2 gene is highly expressed on the cell surface have greatly improved our diagnostic abilities in this family of tumors. Controversy still exists as to whether surgery improves event-free survival when compared with radiotherapy in Ewing's sarcoma. The high second tumor rate, if nothing else, has started moving many physicians to preferentially use surgery when the functional results are predicted to be reasonable. The addition of ifosfamide and etoposide to standard therapy in Ewing's sarcoma has improved survival for patients without metastases at presentation. However, outcome for patients with metastases or who develop metastases while on therapy or shortly thereafter remains poor. Preliminary reports of better outcome with megatherapy are interesting but not yet definitive. The decades ahead will probably see marked changes in therapy for Ewing's sarcoma. The unique translocation seen in virtually all of these tumors is a potential target for a "magic bullet" therapy, because the protein product of this translocation is present only in the malignant cells. Hopefully either immune modulation against this unique protein or further knowledge of how to use antisense genes will move us toward exquisitely targeted therapy in the Ewing family of tumors.
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A search of TP53 mutations was undertaken in a series of 51 pediatric brain tumors. The only germ-line mutation was detected in a 9-year-old girl with a PNET. Her family history was unremarkable for neoplastic disease, except for the paternal grandfather, who died of a gallbladder carcinoma at an advanced age. The mutation was a thymine deletion at the first base of codon 241, leading to termination codon at position 246 that has not previously been reported. This mutation was found to be inherited from the proband's father, who was healthy at age 40. In the tumoral sample, loss of heterozygosity in several 17p markers was found, the only TP53 allele preserved in the tumor was the mutated one. The presence of two short tandem repeats and two different palindromic sequences spanning the deletion lead us to propose the predisposition of this region to forming a complex secondary structure during replication. Consequently, it could have facilitated the present deletion. Furthermore, six other short deletions affecting--partially or totally--the region implicated in the folding model that we propose have been described in the literature. These findings confirm that this sequence represents a hotspot of deletion in the TP53 gene.
PURPOSE: Very young children with medulloblastoma are considered to have a worse prognosis than older children. As radiotherapy remains an important part of the treatment, the adverse prognosis could be due to inadequate radiation treatment rather than biological factors. We analyzed the published literature to examine the impact of radiotherapy on survival in this group. METHODS AND MATERIALS: A Medline search was performed and we reviewed studies of treatment of medulloblastoma where radiotherapy was delivered using megavoltage equipment and the minimum follow-up allowed the calculation of 5-year survival rates. RESULTS: Thirty-nine studies were published between 1979 and 1996 with a treatment including craniospinal irradiation and boost to the posterior fossa. Eleven studies comprising 1366 patients analyzed survival by age at diagnosis. Eight of 11 studies showed a worse 5-year survival for the younger patient group which reached statistical significance in two. There is also a suggestion of a higher proportion of children with metastatic disease at presentation in the very young age group. The usual policy in younger children was to give a lower dose of radiotherapy to the craniospinal axis (CSA) and posterior fossa (PF) with reduction of dose in the range of 15 to 25% compared to standard treatment. As dose reduction to the posterior fossa is associated with worse survival and local recurrence is the predominant site of failure, the major determinant of worse survival in very young children with medulloblastoma may be suboptimal radiotherapy. Protocols including postoperative chemotherapy with delayed, omitted, or only local tumor irradiation do not reach survival rates of protocols with standard radiotherapy, also suggesting a continued importance for irradiation. CONCLUSION: Very young children with medulloblastoma have a worse prognosis than older children. Inadequate radiation dose and technique to the primary tumor region may be a major contributing factor. Current chemotherapeutic regimes alone are not sufficient to compensate for reduced radiation doses and volumes.
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Medulloblastomas represent about 25% of all pediatric intracranial neoplasms. These highly malignant tumors arise from the cerebellum, affecting mainly children between ages 5 and 15. Although the etiology of medulloblastomas has not yet been elucidated, several reports suggest that both the cellular protein insulin-like growth factor I (IGF-I) and the early protein of the human polyomavirus JC (JCV T antigen) may contribute to the development of these tumors. The results of this study show a potential functional cooperation between these two proteins in the process of malignant transformation. Both medulloblastoma cell lines and medulloblastoma biopsies are characterized by the abundant presence of the IGF-I receptor (IGF-IR) and its major signaling molecule, insulin receptor substrate 1 (IRS-1). Importantly, IRS-1 is translocated to the nucleus in the presence of the JCV T antigen. Nuclear IRS-1 was detected in T antigen-positive cell lines and in T antigen-positive biopsies from patients diagnosed with medulloblastoma. The IRS-1 domain responsible for a direct JCV T antigen binding was localized within the N-terminal portion of IRS-1 molecule and the competition for IRS-1 T antigen binding by a dominant-negative mutant of IRS-1 inhibited growth and survival of JCV T antigen-transformed cells in anchorage-independent culture condition.
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