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Updated: Jun 8, 2026

Detecting Somatic Genetic Alterations in Tumor Specimens by Exon Capture and Massively Parallel Sequencing
Published on: October 18, 2013
Cell-free DNA profiling in retinoblastoma patients with advanced intraocular disease: An MSKCC experience
Prachi Kothari1, Francesco Marass2,3, Julie L Yang1
1Memorial Sloan Kettering Cancer Center, New York, NY, USA.
Purpose:
The enucleation rate for retinoblastoma has dropped from over 95% to under 10% in the past 10 years as a result of improvements in therapy. This reduces access to tumor tissue for molecular profiling, especially in unilateral retinoblastoma, and hinders the confirmation of somatic RB1 mutations necessary for genetic counseling. Plasma cell-free DNA (cfDNA) has provided a platform for noninvasive molecular profiling in cancer, but its applicability in low tumor burden retinoblastoma has not been shown. We analyzed cfDNA collected from 10 patients with available tumor tissue to determine whether sufficient tumorderived cfDNA is shed in plasma from retinoblastoma tumors to enable noninvasive RB1 mutation detection.
Methods:
Tumor tissue was collected from eye enucleations in 10 patients diagnosed with advanced intra-ocular unilateral retinoblastoma, three of which went on to develop metastatic disease. Tumor RB1 mutation status was determined using an FDA-cleared tumor sequencing assay, MSK-IMPACT. Plasma samples were collected before eye enucleation and analyzed with a customized panel targeting all exons of RB1.
Results:
Tumor-guided genotyping detected 10 of the 13 expected somatic RB1 mutations in plasma cfDNA in 8 of 10 patients (average variant allele frequency 3.78%). Without referring to RB1 status in the tumor, de novo mutation calling identified 7 of the 13 expected RB1 mutations (in 6 of 10 patients) with high confidence.
Conclusion:
Plasma cfDNA can detect somatic RB1 mutations in patients with unilateral retinoblastoma. Since intraocular biopsies are avoided in these patients because of concern about spreading tumor, cfDNA can potentially offer a noninvasive platform to guide clinical decisions about treatment, follow-up schemes, and risk of metastasis.
Insights
Plasma cell-free DNA (cfDNA) can detect retinoblastoma RB1 mutations noninvasively. This breakthrough aids genetic counseling and treatment decisions in unilateral retinoblastoma, especially when tumor tissue is scarce.
Area of Science:
- Ophthalmology
- Oncology
- Genetics
Background:
- Retinoblastoma treatment advances have reduced enucleation rates, limiting tumor tissue access for molecular profiling.
- Confirming somatic RB1 mutations is crucial for genetic counseling, but challenging in unilateral retinoblastoma due to limited tissue availability.
- Plasma cell-free DNA (cfDNA) offers a noninvasive approach for cancer profiling, yet its utility in low tumor burden retinoblastoma remains unproven.
Purpose of the Study:
- To assess the feasibility of detecting tumor-derived cfDNA in plasma for noninvasive RB1 mutation analysis in retinoblastoma.
- To determine if sufficient cfDNA is shed from retinoblastoma tumors to enable detection of RB1 mutations.
Main Methods:
- Analyzed cfDNA from 10 patients with unilateral retinoblastoma and available tumor tissue.
- Determined tumor RB1 mutation status using the FDA-cleared MSK-IMPACT sequencing assay.
- Customized a plasma cfDNA panel targeting all exons of the RB1 gene for analysis.
Main Results:
- Tumor-guided genotyping detected 10 of 13 expected somatic RB1 mutations in plasma cfDNA from 8 out of 10 patients.
- An average variant allele frequency of 3.78% was observed for detected mutations.
- De novo mutation calling identified 7 of 13 expected RB1 mutations in 6 out of 10 patients with high confidence, without tumor reference.
Conclusions:
- Plasma cfDNA analysis is capable of detecting somatic RB1 mutations in unilateral retinoblastoma patients.
- cfDNA provides a noninvasive method to guide clinical decisions regarding treatment, follow-up, and metastasis risk, avoiding intraocular biopsies.
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