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K K Matthay

Publications and source records attributed to K K Matthay.

At least 55 records · Page 3Linked to original sources

Molecular biology of neuroblastoma.

UNLABELLED: PURPOSE AND RESULTS: Neuroblastoma, the most common solid extracranial neoplasm in children, is remarkable for its clinical heterogeneity. Complex patterns of genetic abnormalities interact to determine the clinical phenotype. The molecular biology of neuroblastoma is characterized by somatically acquired genetic events that lead to gene overexpression (oncogenes), gene inactivation (tumor suppressor genes), or alterations in gene expression. Amplification of the MYCN proto-oncogene occurs in 20% to 25% of neuroblastomas and is a reliable marker of aggressive clinical behavior. No other oncogene has been shown to be consistently mutated or overexpressed in neuroblastoma, although unbalanced translocations resulting in gain of genetic material from chromosome bands 17q23-qter have been identified in more than 50% of primary tumors. Some children have an inherited predisposition to develop neuroblastoma, but a familial neuroblastoma susceptibility gene has not yet been localized. Consistent areas of chromosomal loss, including chromosome band 1p36 in 30% to 35% of primary tumors, 11q23 in 44%, and 14q23-qter in 22%, may identify the location of neuroblastoma suppressor genes. Alterations in the expression of the neurotrophins and their receptors correlate with clinical behavior and may reflect the degree of neuroblastic differentiation before malignant transformation. Alterations in the expression of genes that regulate apoptosis also correlate with neuroblastoma behavior and may help to explain the phenomenon of spontaneous regression observed in a well-defined subset of patients. CONCLUSION: The molecular biology of neuroblastoma has led to a combined clinical and biologic risk stratification. Future advances may lead to more specific treatment strategies for children with neuroblastoma.

Child↗

Engraftment after myeloablative doses of 131I-metaiodobenzylguanidine followed by autologous bone marrow transplantation for treatment of refractory neuroblastoma.

BACKGROUND: Metaiodobenzylguanidine (MIBG) labeled with 131I has been used for targeted radiotherapy of neural crest tumors, with bone marrow suppression being the primary dose-limiting toxicity. The purpose of this study was to examine the engraftment and toxicity of higher myeloablative doses of 131I-MIBG with autologous bone marrow support. PROCEDURE: Twelve patients with refractory neuroblastoma were given infusions of their autologous, cryopreserved bone marrow following 1-4 doses of 131I-MIBG. The median cumulative administered activity per kilogram of 131I-MIBG was 18.0 mCi/kg (range 14.1-50.2 mCi/kg), the median total activity was 594 mCi (range 195-1,353 mCi), and the median cumulative whole body irradiation from 131I-MIBG was 426 cGy (range 256-800 cGy). A median of 2.5 x 10(8) viable cells/kg (range 0.9-4.7 x 10(8) cells/kg) was given in the bone marrow infusion. RESULTS: All 12 patients achieved an absolute neutrophil count > 500/microliter with a median of 19 days, but only 5/11 evaluable patients achieved red cell transfusion independence, in a median of 44 days; and 4/11 evaluable patients achieved platelet count > 20,000/microliter without transfusion, in a median of 27 days. CONCLUSIONS: Autologous bone marrow transplantation may allow complete hematopoietic reconstitution following ablative 131I-MIBG radiotherapy in patients with neuroblastoma. Risk factors for lack of red cell or platelet recovery include extensive prior chemotherapy, progressive disease at the time of transplant, especially in the bone marrow, and a history of prior myeloablative therapy with stem cell support.

3-Iodobenzylguanidine↗

Hypercalcemia in malignant paraganglioma due to parathyroid hormone-related protein.

A 15-year-old boy had hypercalcemia in association with malignant retroperitoneal paraganglioma. He had suppressed circulating levels of intact parathyroid hormone, whereas parathyroid hormone-related protein (PTHrP) immunoreactivity was elevated in plasma. Both the serum 25-hydroxyvitamin D and 1,25-dihydroxyvitamin D levels were normal. Preoperatively the patient required control of hypercalcemia with intravenous pamidronate therapy. His circulating calcium and PTHrP concentrations became normal after a successful surgical resection of the primary retroperitoneal tumor. To our knowledge, this is the first reported case of elevated PtHrP levels in a patient with paraganglioma which resolved postoperatively.

Adolescent↗

Phase I dose escalation of 131I-metaiodobenzylguanidine with autologous bone marrow support in refractory neuroblastoma.

PURPOSE: The analogue 131I-metaiodobenzylguanidine (MIBG), which is specifically targeted to neuroblastoma cells, may provide more effective and less toxic treatment for neuroblastoma than conventional external-beam radiotherapy. We report a dose escalation study of 131I-MIBG to define dose-limiting toxicity without and with autologous bone marrow support. PATIENTS AND METHODS: Thirty patients with relapsed neuroblastoma were treated in groups of six with escalating doses of 3 to 18 mCi/kg of 131I-MIBG. After rapid escalation in the first three patients treated at 3 to 6 mCi/kg, treatment was escalated in 3-mCi/kg increments from 9 to 18 mCi/kg. Autologous tumor-free bone marrow was cryopreserved in all patients receiving 12 mCi/kg and more. Toxicity and response were assessed. RESULTS: Eighty percent of patients who received 12 mC/kg or more experienced grade 4 thrombocytopenia and/or neutropenia. Dose-limiting hematologic toxicity was reached at 15 mCi/kg, at which level two of five assessable patients required bone marrow reinfusion for absolute neutrophil count (ANC) of less than 200/microL for more than 2 weeks, and four of nine at the 18-mCi/kg level. Prolonged thrombocytopenia was common, with failure to become platelet-transfusion independent in nine patients. One patient with extensive prior treatment developed secondary leukemia and three became hypothyroid. Responses were seen in 37% of patients, with one complete response (CR), 10 partial response (PR), three mixed response, 10 stable disease, and six progressive disease. The minimum dose of 131I-MIBG for 10 of the 11 responders was 12 mCi/kg. CONCLUSION: Treatment with 131I-MIBG has mainly hematologic toxicity, which can be abrogated with bone marrow rescue. The high response rate in refractory disease suggests that this agent may be useful in combination with myeloablative chemotherapy and autologous stem-cell rescue to improve outcome in advanced neuroblastoma.

3-Iodobenzylguanidine↗

Successful treatment of stage III neuroblastoma based on prospective biologic staging: a Children's Cancer Group study.

PURPOSE: To identify a biologically favorable and unfavorable subset of patients with Evans stage III neuroblastoma and to determine whether treatment stratification would improve the event-free survival (EFS) for high-risk patients and maintain excellent EFS for the lower-risk patients. PATIENTS AND METHODS: Risk stratification was performed by age, MYCN gene copy number, Shimada histopathologic classification, and serum ferritin level. Lower-risk patients were treated on the less intensive Children's Cancer Group (CCG)-3881, whereas high-risk patients were treated on CCG-3891, which included more intensive multimodality therapy and, in some cases, autologous bone marrow transplantation (ABMT). RESULTS: Of 228 Evans stage III patients entered onto the study, 92% also met the definition of International Neuroblastoma Staging System (INSS) stage 3. One hundred forty-three patients met the lower-risk criteria, which included 89 patients less than 1 year of age and 54 patients 1 year of age or greater, and favorable biology, whereas 85 patients were 1 year of age or greater and biologically unfavorable. Biologically unfavorable patients 1 year of age or greater who underwent gross surgical resection had improved survival, whereas the outcome of infants or biologically favorable older patients did not change according to resection. The EFS rate at 4 years was 100% for the patients with favorable biology of any age, 90% for those less than 1 year of age but with at least one unfavorable characteristic, and 54% for Evans stage III patients 1 year of age or greater with unfavorable biology. Age, ferritin level, MYCN copy number, Shimada histopathology, primary site, and intraspinal extension were significant univariate prognostic factors for all patients, but only MYCN copy number and age were independent factors in multivariate analyses. CONCLUSION: The excellent survival of the biologically favorable group and the historically improved EFS of the biologically unfavorable group suggest that biologic staging should be used to define the prognosis and treatment of stage III neuroblastoma.

Antineoplastic Combined Chemotherapy Protocols↗

A phase I/IB trial of murine monoclonal anti-GD2 antibody 14.G2a plus interleukin-2 in children with refractory neuroblastoma: a report of the Children's Cancer Group.

BACKGROUND: The murine monoclonal antibody (MoAb) 14.G2a recognizes GD2, a disialoganglioside expressed in tumors of neuroectodermal origin, and facilitates antibody dependent cellular cytotoxicity (ADCC) in vitro. When given in vivo, interleukin-2 (IL-2) can increase ADCC by enhancing the activity and number of circulating lymphocytes. METHODS: Thirty-three pediatric patients with GD2 positive malignancies, ranging in age from 2 to 17 years (median, 9.9 years), received IL-2 and 14.G2a in this Phase I/IB study of the Children's Cancer Group (CCG) and were monitored for toxicities and response to therapy. Seven of these patients also received granulocyte-macrophage-colony stimulating factor. RESULTS: The maximum tolerated dose (MTD) of 14.G2a with IL-2 was 15 mg/m2/day. The most prevalent Grade 3-4 toxicities were generalized pain (n = 14 [42%]) and fever without documented infection (n = 17 [52%]). IL-2 was thought to be the causative agent in most cases of fever. Toxicities attributed to 14.G2a included pain, allergic or anaphylactic reactions, and rash. Human antimouse antibodies were demonstrated in 9 of 21 evaluated patients. One patient with neuroblastoma had a partial response, and one patient with osteosarcoma had a complete response. Immunocytology demonstrated that the number of neuroblastoma cells in bone marrow decreased in three patients. CONCLUSIONS: The murine MoAb 14.G2a was well tolerated at the MTD and appeared to have some antitumor activity. Further development of this approach will involve additional engineered forms of the antibody as well as testing in the adjuvant and minimal residual disease setting.

Adjuvants, Immunologic↗

Neuroblastoma in adults and adolescents: an indolent course with poor survival.

BACKGROUND: Neuroblastoma rarely occurs in adults, and less than 10% of cases occur in patients older than 10 years. It has been suggested that the behavior of this disease may be different in older patients than in young children. The purpose of this study was to investigate the presentation, biologic features, and outcome of adolescent and adult patients with neuroblastoma to define differences from childhood neuroblastoma. METHODS: Medical record and pathology reviews were conducted for 16 patients age 13 years or older (13-33 years) at diagnosis who presented with neuroblastoma at the University of California-San Francisco (UCSF) during the period 1968-1995 (patients with intracerebral tumors, esthesioneuroblastoma, or ganglioneuroma were excluded). Six of these patients received their original diagnosis at UCSF, and the others were referred after diagnosis. The survival for the same period for all neuroblastoma patients ages 13-18 years (n = 38) registered in the Children's Cancer Group (CCG) was compared with the survival for those ages 1-13 years (n = 1912). Three of the UCSF patients were enrolled in CCG studies. RESULTS: Biologic characteristics observed in adolescents and adults differed from those observed in younger patients. In the UCSF population, only 6 of 15 tested patients age 13 or older had elevated urinary catecholamines, and 0 of 6 tested patients had MYCN amplification. There were two patients with Stage I disease, three with Stage II, two with Stage III, and nine with Stage IV. Primary sites were adrenal, pelvic, and retroperitoneal in four cases each; mediastinal in two cases; and paraspinal in two cases. Metastases in nine patients at diagnosis were observed in bone in five; in bone marrow in four; in lymph nodes in three; in the liver in two; and in the pleura, breast, and dura in one patient each. 131I-metaiodobenzylguanidine uptake was observed in 9 of 11 patients. Initial treatment included surgery for 13 of 16 patients, chemotherapy for 10 of 16, radiation therapy for 7 of 16, and autologous bone marrow transplantation for 1 of 16. Relapses occurred in 15 of 16 patients and death in 13 of 16, with overall survival 30% 5 years after diagnosis. Only 1 patient currently remains free of clinical disease 24 months after diagnosis. Several of these patients had long courses from diagnosis to death, with multiple recurrences and/or chronic, persistent disease. In the CCG data base, 76% of patients ages 13-18 years had metastatic disease at diagnosis. In this group, only 1 of 32 had MYCN amplification. The actuarial survival of all CCG patients ages 13-18 years was 7% at 5 years and 4% at 10 years, whereas that for patients ages 1-13 years was 30% at 5 years and 23% at 10 years. CONCLUSIONS: Neuroblastoma in adolescents and adults has different biologic characteristics and a longer course than in children; nevertheless, ultimately the outcome is poor regardless of stage. A much more aggressive or innovative therapeutic approach is needed for these patients.

3-Iodobenzylguanidine↗

The treatment of malignant pheochromocytoma with iodine-131 metaiodobenzylguanidine (131I-MIBG): a comprehensive review of 116 reported patients.

Iodine-131 metaiodobenzylguanidine (131I-MIBG), a radiopharmaceutical agent used for scintigraphic localization of pheochromocytomas, has been employed to treat malignant pheochromocytomas since 1983 in a few specialized centers around the world. We review our clinical experience together with the published experience of 23 other centers in 10 countries, regarding the use of 1311-MIBG for treating patients with malignant adrenal pheochromocytomas or extra-adrenal paragangliomas. There were a total of 116 evaluable patients: 3 were from our current report and another 113 were reported in the literature from 1983 to 1996. A majority of the patients were selected for treatment based upon positive tracer uptake studies. The cumulative dose of 131I-MIBG administered ranged from 96 to 2,322 mCi (3.6 to 85.9 GBq), with a mean (+/-SD) of 490+/-350 mCi (18.1+/-13.0 GBq). The subjects received a mean single therapy dose of 158 mCi (5.8 GBq) and the number of doses administered ranged from 1 to 11, with a mean of 3.3+/-2.2 doses. Initial symptomatic improvement was achieved in 76% of patients, tumor responses in 30%, and hormonal responses in 45%. Five patients had complete tumor and hormonal responses, ranging from 16 to 58 months, which were sustained at the time of reporting. Patients with metastases to soft tissue had more favorable responses to treatment than those with metastases to bone. No difference was noted in the age between the responders and non-responders. Adverse effects, recorded in 41% of the treated patients, were generally mild except for one fatality from bone marrow aplasia. Among 89 patients with follow-up data, 45% of the responders had relapsed with recurrent or progressive disease after a mean interval of 29.3+/-31.1 months (median 19 months). Of patients with an initial response to 1311-MIBG, death was reported in 33% after a mean of 23.2+/-8.1 months (median 22 months) following treatment. Of non-responders, death was reported in 45% after a mean of 14.3+/-8.3 months (median 13 months). In conclusion, this review suggests that 131I-MIBG therapy may be a useful palliative adjunct in selected patients with malignant pheochromocytoma or paraganglioma. Although controlled studies are lacking, our review raises the hope that this therapeutic modality may prolong survival with an occasional sustained complete remission or possible cure.

3-Iodobenzylguanidine↗

Telomerase expression in primary neuroblastomas.

Maintenance of chromosomal telomeres is necessary for continued cell growth, and this is carried out in germline tissues by telomerase. In contrast to most somatic tissues, many tumours have telomerase activity. The RNA component of human telomerase (hTR) was measured by Northern analyses of 150 primary untreated neuroblastomas and compared with clinical stage at diagnosis. hTR expression > 33 (relative to cell line control = 100) was seen in 41% of all tumours and the frequency of hTR > 33 increased with stage of disease. Expression of hTR may be involved in progression of neuroblastoma.

Blotting, Northern↗

Gain of chromosome 17 is the most frequent abnormality detected in neuroblastoma by comparative genomic hybridization.

Neuroblastoma behavior is variable and outcome partially depends on genetic factors. However, tumors that lack high-risk factors such as MYCN amplification or 1p deletion may progress, possibly due to other genetic aberrations. Comparative genomic hybridization summarizes DNA copy number abnormalities in a tumor by mapping them to their positions on normal metaphase chromosomes. We analyzed 29 tumors from nearly equal proportions of children with stage I, II, III, IV, and IV-S disease by comparative genomic hybridization. We found two classes of copy number abnormalities: whole chromosome and partial chromosome. Whole chromosome losses were frequent at 11, 14, and X. The most frequent partial chromosome losses were on 1p and 11q. Gains were most frequent on chromosome 17 (72% of cases). The two patterns of gain for this chromosome were whole 17 gain and 17q gain, with 17q21-qter as a minimal common region of gain. Other common gains were on chromosomes 7, 6, and 18. High level amplifications were detected at 2p23-25 (MYCN region), at 4q33-35, and at 6p11-22. Chromosome 17q gains were associated with 1p and/or 11q deletions and advanced stage. The high frequency of chromosome 17 gain and its association with bad prognostic factors suggest an important role for this chromosome in the development of neuroblastoma.

Child, Preschool↗

Neuroblastoma: biology and therapy.

Neuroblastoma is the most common extracranial solid tumor of childhood, accounting for 15% of cancer-related deaths. These tumors have a predilection for young children; 60% of cases occur before age 2 years and 97% before age 10. Neuroblastomas derive from embryonic neural crest cells of the peripheral sympathetic nervous system. The behavior of this malignancy is characterized by marked clinical heterogeneity, ranging from spontaneous maturation in some patients to inexorable rapid metastatic progression in others. This article will discuss some of the molecular and biological features of neuroblastoma that are associated with these differences in behavior, and how these features have been used to develop a risk-based approach to therapy.

Animals↗

Toxicities of total-body irradiation for pediatric bone marrow transplantation.

PURPOSE: To determine the acute and late effects, including cognitive function, of total body irradiation (TBI) and chemotherapy for bone transplant (BMT) in children with immunodeficiency or hematologic disorders. METHODS AND MATERIALS: At UCSF, 15 children with immunodeficiency disorders and 58 children with leukemia received chemoradiotherapy between July 1982 and November 1993 and were evaluated for toxicity. Patients with severe combined immunodeficiency disorder (SCID) received 7 Gy TBI while leukemia patients received 12 Gy TBI. RESULTS: Eight immunodeficient patients (53%) are alive at 4 months to 11 years posttransplant. Acute toxicity was limited and treatment well tolerated. Most patients developed mild nausea and vomiting, skin rash, or erythema. Transient fever/chills, oral mucositis, and alopecia were noted in approximately 50% of patients. Seventy-three percent of all patients demonstrated acute liver dysfunction, but only four (27%) developed veno-occlusive disease. All children had decreased growth velocity but normal growth hormone levels. Other endocrinologic evaluations including adrenocorticotropic hormone (ACTH), cortisol, and thyroid hormones were normal. Only one evaluable girl had delayed puberty with late onset of secondary sexual characteristics. Neuropsychological testing demonstrated an intelligence quotient (IQ) reduction between the baseline and 1 year post-BMT, with some recovery at 3 years. Only one patient developed a clinically significant cataract. Thirteen percent of patients had chronic interstitial lung disease. Four children developed exostosis. Only 1 of the 15 children developed a second malignancy (acute myelogenous leukemia) at age 5, 51 months posttransplant for SCID. For patients with leukemia, similar toxicities were observed. Twenty-nine percent disease-free survival was noted with a mean follow-up of 4.7 years. Twenty-two percent had chronic interstitial lung disease and two patients were diagnosed with cataracts. Graft-vs.-host-disease (GVHD), pubertal development arrest, and delayed puberty were seen. One child developed papillary thyroid carcinoma, 49 months post-BMT. Similar neuropsychological testing decrements were also observed. CONCLUSION: Our experience suggests that intensive chemoradiotherapy, even at a young age, does not cause severe, acute, or late toxicities but does result in a small IQ decrement and the risk of secondary malignancy in children with long-term follow-up.

Adolescent↗

Monitoring neovascularity as an indicator to response to chemotherapy in osteogenic and Ewing sarcoma using magnetic resonance angiography.

Histologic studies on resected specimen have shown that tumor neovascularity is related to prognosis and response to therapy in a variety of human neoplasms. In nine patients with osteogenic or Ewing sarcoma, we evaluated the use of magnetic resonance angiography (MRA) to assess neovascularity non-invasively in vivo and to monitor response to chemotherapy. Seven patients with osteosarcoma and two patients with Ewing sarcoma were studied before and after chemotherapy by MRA (2-D time-of-flight gradient-echo sequence, TR = 50 msec, TE = 9.5 msec, theta = 50 degrees, acquisition time 13 min). MR angiograms were assessed for chemotherapy-induced changes in neovascularity. MRA showed both feeder vessels and neovascularity. Six patients responded to chemotherapy ( > or = 90% histologic tumor necrosis). MRA demonstrated marked reduction in neovascularity in all responders. Three patients did not respond to chemotherapy ( < 90% histologic tumor necrosis). MRA demonstrated persistent or increased neovascularity in the non-responders. MRA provides a unique opportunity to study tumoral neovascularity noninvasively in vivo and helps to assess response to chemotherapy in patients with osteogenic or Ewing sarcoma. These general principles may be applicable to other human tumors.

Adolescent↗

Disease course and late sequelae of Langerhans' cell histiocytosis: 25-year experience at the University of California, San Francisco.

PURPOSE: The purpose of our investigation was to correlate the extent and degree of organ involvement at presentation of Langerhans' cell histiocytosis (LCH) with subsequent disease course, survival, and late sequelae. MATERIALS AND METHODS: The medical records of 71 patients with a pathologic diagnosis of LCH, age 0 to 21 years, who presented between January 1, 1969 and June 30, 1994, were reviewed for organ involvement at diagnosis, treatment, disease course, and late sequelae. Supplementary data were obtained by mailed questionnaire. RESULTS: The median follow-up time from diagnosis for all patients was 8.1 years. Involvement at diagnosis included nine patients with skin-only disease, 22 with monostotic disease, 12 with polyostotic disease, and 28 with multisystem presentation. Treatment was surgery only in 17 and chemotherapy and/or radiotherapy in 54 patients. Recurrences were seen in 35 patients, with the highest rate in the polyostotic group. Ten patients died: seven with the multisystem presentation, two with monostotic disease, and one with skin-only disease. Causes included progressive LCH (n = 6) and late sequelae of either treatment (n = 3) or disease (n = 1). Late sequelae were seen in 64% of 51 patients with more than 3 years of follow-up data. The most common were skeletal defects in 42%, dental problems in 30%, diabetes insipidus in 25%, growth failure in 20%, sex hormone deficiency in 16%, hypothyroidism in 14%, hearing loss in 16%, and other CNS dysfunction in 14%. The overall estimated survival rates at 5, 15, and 20 years are 88%, 88%, and 77%, with an estimated event-free survival rate of only 30% at 15 years. CONCLUSION: Despite the favorable survival, more than half of LCH patients will have further dissemination of disease or late sequelae, including even some patients with single-system disease at diagnosis. Future treatment needs to be designed to prevent disease progression and late sequelae.

Adolescent↗

Consolidation chemoradiotherapy and autologous bone marrow transplantation versus continued chemotherapy for metastatic neuroblastoma: a report of two concurrent Children's Cancer Group studies.

PURPOSE: To compare event-free survival (EFS) for patients with stage IV neuroblastoma who were treated with induction chemotherapy followed by additional courses of the same chemotherapy or by intensive chemoradiotherapy and autologous bone marrow transplantation (ABMT). METHODS: Two hundred seven children who were diagnosed with stage IV neuroblastoma after 1 year of age were given five to seven courses of induction chemotherapy consisting of cisplatin, etoposide, doxorubicin, and cyclophosphamide (CCC-321-P2). This chemotherapy was continued for 13 total courses for some patients, whereas intensive chemoradiotherapy with ABMT was given to others (CCG-321-P3). The decision to continue chemotherapy versus to consolidate with chemoradiotherapy was not randomized but was made by parents and physicians. Marrow used for ABMT was purged ex vivo and was free of immunocytologically detectable neuroblastoma cells. RESULTS: One hundred fifty-nine of 207 patients (77%) remained event-free during induction therapy. Of these, 67 received chemoradiotherapy/ABMT (CCG-321-P3) and 74 continued chemotherapy (CCG-321-P2). Using Cox regression analysis, the relative risk (RR) of an event after chemoradiotherapy/ABMT was estimated to be 58% of that for patients who continued chemotherapy (P = .01). Similarly, Kaplan-Meier analysis estimated EFS at four years for the chemoradiotherapy/ABMT and chemotherapy groups to be 40% and 19% respectively (P = .019). Subgroups appearing to benefit from chemoradiotherapy/ABMT were those with only a partial tumor response to induction chemotherapy (RR = 0.43; P = .008; EFS, 29% v 6%) and those whose tumors had amplification of the N-myc gene (RR = 0.26; P = .112; EFS, 67% v 0%). CONCLUSION: Consolidation with intensive, myeloablative chemoradiotherapy followed by purged ABMT may be more effective than continuing chemotherapy for patients with stage IV neuroblastoma.

Adolescent↗

Renal cell carcinoma after therapy for neuroblastoma.

OBJECTIVE: An unfortunate consequence of increased success in childhood cancer survival rates is the increase in the number of secondary malignant neoplasms after therapy for the initial lesion. Renal cell carcinoma can occur as a secondary malignant neoplasm after therapy for neuroblastoma and may become more common as more patients with treated neuroblastomas survive into adulthood. We studied one case and reviewed four cases of secondary renal cell carcinoma to determine if the relationship between these two neoplasms is significant. CONCLUSION: An awareness of the association between these two neoplasms is important in the diagnostic follow-up of neuroblastoma so that secondary renal cell carcinoma is not confused with recurrence of primary disease.

Carcinoma, Renal Cell↗