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Updated: Feb 22, 2026

Functional Interrogation of Adult Hypothalamic Neurogenesis with Focal Radiological Inhibition
Published on: November 14, 2013
Chronic radiation exposure of neuroblastoma cells reduces nMYC copy number
Manu Gnanamony1, Reuben Antony2, Karen S Fernández3
1Department of Pediatrics, University of Illinois College of Medicine, Peoria, IL 61605, USA.
Abstract:
Neuroblastoma accounts for >15% of cancer-associated mortalities of children in the USA. Despite aggressive treatment regimens, the long-term survival for these children remains <40%. The identification of v-Myc avian myelocytomatosis viral oncogene neuroblastoma-derived homolog (nMYC) gene amplification during diagnosis is associated with poor prognosis in neuroblastoma. There are limited studies examining changes in nMYC copy numbers in response to therapy and its biological effect on cancer cells. The aim of the present study was to evaluate the effect of radiation on nMYC expression and amplification status in high-risk neuroblastoma. The effect of acute (5 Gy) and chronic (25 Gy) radiation on two nMYC-amplified cell lines, SK-N-BE (2) and NB-1691, was investigated. The results demonstrate that, following chronic but not acute radiation, the two cell lines regained their proliferation potential similar to the controls. This increased proliferation was characterized by loss of nMYC mRNA and protein expression. It was also revealed that nMYC loss was accompanied by nuclear localization of c-Myc. Using fluorescent in situ hybridization and quantitative polymerase chain reaction analysis, the results of the present study demonstrated that chronic radiation causes a severe loss of nMYC gene copy number. The present study is the first to provide experimental evidence that prolonged radiation therapy affects nMYC gene copy number in high-risk neuroblastoma but does not significantly improve the prognostic outlook.
Insights
Chronic radiation exposure in high-risk neuroblastoma can decrease nMYC gene copies and expression, but does not improve patient survival outcomes. This study investigates radiation
Area of Science:
- Pediatric Oncology
- Molecular Biology
- Cancer Genetics
Background:
- Neuroblastoma is a leading cause of childhood cancer mortality, with poor survival rates.
- Amplification of the nMYC oncogene is a marker of poor prognosis in neuroblastoma.
- Limited research exists on how nMYC copy number changes during therapy.
Purpose of the Study:
- To investigate the impact of radiation therapy on nMYC expression and amplification in high-risk neuroblastoma.
- To evaluate the biological effects of radiation on nMYC-amplified neuroblastoma cell lines.
Main Methods:
- Exposure of two nMYC-amplified neuroblastoma cell lines (SK-N-BE (2) and NB-1691) to acute (5 Gy) and chronic (25 Gy) radiation.
- Analysis of nMYC mRNA and protein expression levels.
- Assessment of nMYC gene copy number using fluorescent in situ hybridization and quantitative PCR.
- Evaluation of cell proliferation potential and c-Myc localization.
Main Results:
- Chronic radiation, not acute, led to regained proliferation potential in neuroblastoma cells.
- Regained proliferation correlated with reduced nMYC mRNA and protein expression.
- Loss of nMYC was associated with nuclear localization of c-Myc.
- Chronic radiation significantly reduced nMYC gene copy number.
Conclusions:
- Prolonged radiation therapy reduces nMYC gene copy number and expression in high-risk neuroblastoma.
- This reduction in nMYC does not significantly improve the overall prognostic outlook for these patients.
- The study provides the first experimental evidence of radiation's effect on nMYC copy number in neuroblastoma.
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