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[Primitive neuroectodermal tumors of the minor pelvis in women--case report].

A primitive neuroectodermal tumour (PNET) of the minor pelvis is a rare malignant small-cell tumour developing from the neural groove. It metastatizes into the lungs, bones, liver and brain. Treatment involves radical surgical extirpation followed by chemotherapy and actinotherapy. The author presents the case-history of PNET of the pelvis minor in a 33-year-old woman.

Adult↗

Neoplastic meningitis as the presentation of occult primitive neuroectodermal tumors.

Seven children and young adults initially presented with subacute meningitis and/or increased intracranial pressure. The diagnosis of neoplastic meningitis secondary to a primitive neuroectodermal neoplasm was delayed by the absence of an obvious primary tumor. The neuroradiologic appearance was that of a basimeningeal infiltrative process, complicated by communicating hydrocephalus or "pseudotumor cerebri." Myelography was important in the diagnosis of disseminated meningeal malignancy in four cases. Cerebrospinal fluid cytologic diagnosis was insensitive but ultimately confirmed in five cases. All seven patients experienced progressive disease despite neuraxis radiotherapy and intensive chemotherapy; six have died. Systemic dissemination to bone and/or peritoneum occurred in three patients while on therapy. In two, a primary parenchymal brain or spinal cord tumor could not be identified at postmortem examination. The presentation of a primitive neuroectodermal tumor as subacute meningitis without an evident primary tumor heralds an aggressive and refractory neoplasm.

Adolescent↗

Quantitative mRNA expression analysis of neurotrophin-receptor TrkC and oncogene c-MYC from formalin-fixed, paraffin-embedded primitive neuroectodermal tumor samples.

Most recent studies analyzing candidate biological prognostic factors (including neurotrophin receptor TrkC and proto-oncogene c-MYC) in childhood primitive neuroectodermal brain tumors (PNET) are limited by small patient numbers due to dependence on fresh-frozen tumor material. In contrast, large archives of formalin-fixed, paraffin-embedded PNET samples exist from homogeneously treated patients. The ability of real-time RT-PCR to assay very small mRNA fragments makes this assay amenable to studies where the RNA is moderately or even highly degraded. We have optimized RNA isolation from archive PNET samples and found that TrkC and c-MYC mRNA measurements significantly correlated with those obtained from matching fresh-frozen tissues. Exploitation of already existing archives of formalin-fixed paraffin-embedded PNET samples may accelerate the building of better stratification systems for PNET patients.

Adolescent↗

Hyperfractionated craniospinal radiation therapy for primitive neuroectodermal tumors: early results of a pilot study.

PURPOSE: To report the early results of hyperfractionated craniospinal radiation therapy with and without adjuvant chemotherapy for primitive neuroectodermal brain tumors (PNETs). METHODS AND MATERIALS: Thirty-nine patients with PNETs were classified as good-risk (23) or poor-risk (16), based on postoperative magnetic resonance imaging and a cytological examination of cerebrospinal fluid. All patients received hyperfractionated craniospinal radiation therapy; poor-risk patients subsequently received adjuvant chemotherapy with cisplatin, lomustine, and vincristine. The first six patients received 72 Gy to the primary tumor site and 24 Gy to the rest of the craniospinal axis. Subsequent patients received 30 Gy to the craniospinal axis. RESULTS: During a median of 1.9 years of follow-up (range 4 months to 3.5 years), there have been ten treatment failures in 39 patients, five in the good-risk group and five in the poor-risk group. Three failures occurred in the primary tumor site in areas that received 72 Gy; two were in poor-risk patients with residual disease after surgery; one was in a good-risk patient who had a gross total resection. Three failures occurred in the spine and craniospinal fluid of patients treated with 24 Gy. Four occurred in areas treated to 30 Gy; two of these were in areas thought to be undertreated because of treatment planning errors. Adjuvant chemotherapy was difficult to give to poor-risk patients because of poor bone marrow recovery, even with relatively low doses of lomustine (75 mg/m2). CONCLUSION: We think a dose of 24 Gy to the craniospinal axis is inappropriate because three of the six patients who received it had treatment failures outside the primary site. Whether 30 Gy is an appropriate dose for good-risk patients is still unclear. Even after a dose of 30 Gy, chemotherapy was difficult to give; this potentially limits the impact of adjuvant chemotherapy in poor-risk patients. Further follow-up is necessary to evaluate the use of hyperfractionated radiation therapy alone or with chemotherapy in patients with PNETs.

Adolescent↗

[Diagnosis and therapy of neuroectodermal tumors].

Computed tomography (CT) and 123I- or 131I-meta-iodo-benzyl-guanidine (MIBG) scintigraphy were compared for accuracy in tumor detection in 47 patients with neuroectodermal neoplasms. MIBG concentration was found in 12 of 13 pheochromocytomas, 12 of 12 neuroblastomas, 5 of 9 carcinoids, and 1 of 4 glomus tumors. MIBG uptake was not observed in medullary thyroid carcinomas, oat-cell carcinomas, Merkel tumors, 1 gastrinoma, and 2 unclassified neuroectodermal neoplasms. With regard to the different tumor manifestations, the sensitivity in detecting pheochromocytomas, neuroblastomas, and carcinoids was 87%, 77%, and 100% for CT, and 83%, 100% and 71% for MIBG scintigraphy, MIBG scintiscan was superior in the detection of small adrenal pheochromocytomas (less than 1 cm diameter) and in the depiction of small bone metastases and bone marrow infiltration from neuroblastoma. In all, 25 cycles of high-dose MIBG therapy were performed in eight patients with surgically incurable tumors (4 malignant pheochromocytomas, 1 neuroblastoma, 3 carcinoids). The total therapeutic activity applied was 3.55-43.29 GBq 131I-MIBG. Tumor kinetics of MIBG were investigated before and during treatment. One patient with metastatic pheochromocytoma has been in complete remission for a follow-up period of 36 months since completion of treatment, and another patient is in partial remission. Tumor reduction or no change was observed in four patients. Two patients died of non-concentrating recurrence and metastases.

3-Iodobenzylguanidine↗

Results of treatment of children with recurrent medulloblastoma/primitive neuroectodermal tumors with lomustine, cisplatin, and vincristine.

Primitive neuroectodermal tumors/medulloblastoma (PNET/MB) are the most common posterior fossa tumors in childhood. Despite surgery and radiation therapy, 40% to 50% of children with PNET/MB will have recurrent disease. Various chemotherapeutic agents are transiently effective in recurrent PNET/MB, but long-lasting responses are rarely attainable. To increase the rate and duration of response in children with recurrent PNET/MB, the authors treated seven patients (ages 2-18 years; median, 10 years) with lomustine (CCNU) (100 mg/m2), cisplatin (CPDD) (90 mg/m2) and vincristine (VCR) (1.5 mg/m2; maximum, 2 mg) in a 6-week cycle for a maximum of eight cycles. Six of six evaluable patients responded to chemotherapy. Four patients had a complete response; three with complete disappearance of tumor by imaging studies; and one with eradication of extraneural disease for a median of 24 months from relapse (13-29 months). Overall disease-free survival was 18.5 months. All six patients have subsequently died of recurrent tumor. Major toxicities consisted of reversible bone marrow suppression (six of six), high frequency hearing loss (six of six) and decreased renal function (three of six). All patients required dosage modification for toxicity. A regimen of CCNU, VCR, and CPDD is effective therapy in children with relapsed PNET/MB and can produce relatively long-term disease control with good quality of life. Further investigation into the efficacy of this combination as adjuvant chemotherapy in newly diagnosed high-risk PNET/MB is now being performed.

Adolescent↗

Hyperfractionated craniospinal radiation therapy for primitive neuroectodermal tumors: results of a Phase II study.

PURPOSE: To report the results of a Phase II study of hyperfractionated craniospinal radiation therapy, with and without adjuvant chemotherapy for primitive neuroectodermal brain tumors (PNETs) and malignant ependymomas. METHODS AND MATERIALS: Newly diagnosed PNET or malignant ependymomas were treated with hyperfractionated craniospinal radiation therapy. The primary tumor site was treated to a dose of 72 Gy, with 30 Gy given to the rest of the craniospinal axis. The fraction size was 1.0 Gy, given twice a day. Patients with poor risk factors also received adjuvant chemotherapy with CCNU, cisplatin, and vincristine. Patients had follow-up for survival, time to tumor progression, and patterns of relapse. RESULTS: A total of 39 patients (21 males/18 females) were treated between March 12, 1990 and October 29, 1992. The median age was 16 years (range 3-59 years). Tumor types included 25 medulloblastomas, 5 pineoblastomas, 5 cerebral PNETs, 1 spinal cord PNET, and 3 malignant ependymomas. Twenty cases were staged as poor-risk and received adjuvant chemotherapy following radiation. Three-year progression-free survival (PFS) was 60% and 63% for poor-risk and good-risk patients, respectively. Overall 3-year survival for these groups was 70% and 79%, respectively. For the 25 patients with medulloblastoma, there were 16 good-risk and 9 poor-risk patients. Three-year PFSs were 63% and 56%, respectively. The 5-year survival for good-risk medulloblastoma was 69% with 43.7% of these patients having failures outside the primary site. CONCLUSIONS: Survival in patients with good-risk medulloblastoma was no better than that seen in previous studies with single-fraction radiation, and the rate of failure outside the primary site is excessive. Those with poor-risk features had comparable survival to that seen in patients with good risk factors, but these patients were treated with chemotherapy, and the role that hyperfractionated radiation played in their outcome is uncertain.

Adolescent↗

Effect of desferrioxamine and hydroxypyridones on hemopoietic progenitors and neuroectodermal tumor cells.

The iron chelator desferrioxamine (DFO) has been shown to inhibit the proliferation of hemopoietic progenitors and several tumor cell lines. We have compared the in viro hemopoietic inhibitory effect of desferrioxamine (DFO) and hydroxypyridones (HPOs) on hemopoietic progenitors and two human neuroectodermal (NE) tumor cell lines, NB 100 and SKNMC. Both DFO and HPOs showed a direct dose-related inhibitory effect on BFU-E and CFU-GM obtained from purified human non-T MNAC (T-lymphocyte-depleted nonadherent mononuclear cells) and CD34+ cells. DFO and HPOs displayed both an inhibitory and a cytotoxic effect on NE cell lines. We calculated the ratio between NE cell and hemopoietic cell growth inhibition for a range of concentrations of chelators. DFO showed the most satisfactory ratio. This suggests that DFO is still the most preferable chelating agent for the treatment of neuroblastoma, since it combines the highest antineuroblastoma effect with the lowest hematopoietic toxicity.

Antithyroid Agents↗

[Intracardiac metastases of primary neuroectodermal tumor].

BACKGROUND: Cardiac metastases from malignant tumors are rare in children and are usually found only at necropsy. CASE REPORT: A girl aged 6 months developed a swelling in the area of her left shoulder. Surgical excision was incomplete and pathological examination indicated neuroectodermic soft-tissue tumor. Chemotherapy with cyclophosphamide, doxorubicin then vincristine and actinomycin D was instituted, followed by second course of cyclophosphamide-doxorubicin. Three months after cessation of chemotherapy, the child developed manifestations of congestive cardiac failure that could not be induced by anthracycline (total cumulative dose: 275 mg/m2). Cardiac ultrasonography showed a metastatic tumor (diam = 3 cm) on the wall of the right ventricle and atrium, which was pedunculated inside the infundibular chamber. It was partly excised, and the patient was treated with etoposide and carboplatin. But a second metastatic tumor formed in the paravertebral area. CONCLUSION: This is the first description, to our knowledge, of cardiac metastases from neuroectodermic tumor. They were diagnosed by cardiac ultrasonography, as this imaging technique differentiates this complication from the anthracycline-induced cardiomyopathy usually seen in children developing cardiac failure under chemotherapy.

Female↗

Differentiation of a primitive neuroectodermal tumor into a benign ganglioglioma.

We describe a case of cerebellar neuroblastoma with histologic documentation of maturation into a ganglioglioma sixteen months later. Only chemotherapy was administered following the initial surgery and the child is well and disease-free three years following her final surgical procedure. The outcome of this patient supports previous hypotheses that the cerebellar neuroblastoma may be a less malignant tumor than its other primitive neuroectodermal posterior fossa counterparts. Furthermore, this case suggests a role for second-look surgery in the management of selected pediatric brain tumors.

Cell Differentiation↗