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Identification of OTX1 and OTX2 As Two Possible Molecular Markers for Sinonasal Carcinomas and Olfactory Neuroblastomas
Published on: February 28, 2019
Targeted 595-gene genomic profiling demonstrates low tumor mutational burden in olfactory neuroblastoma
Jacob Friedman1, Jane K Schumacher1, Pete Papagiannopoulos1
1Department of Otorhinolaryngology, Head and Neck Surgery, Rush Center for Skull Base and Pituitary Surgery, Rush University Medical Center, Chicago, IL.
Background:
Olfactory neuroblastoma (ONB) is a rare skull-base malignancy associated with delayed local recurrence. Treatment options in recurrent disease are few and unreliable. We undertook analysis of the ONB exome and immune environment in order to identify potential future immunotherapy treatment options.
Methods:
Retrospective chart review and next-generation targeted 595-gene genomic profiling was performed on a cohort of 14 ONB cases utilizing Tempus proprietary DNA and RNA sequencing technology. Tempus analysis provided a measurement of tumor mutational burden (TMB) and composition of the immune cell infiltrate present in tumor samples. Clinically relevant genomic alterations and associated targeted therapies were identified using cancer.gov and clinicaltrials.gov. TMB was tested by univariate analysis against clinical stage, pathologic grade, recurrence risk, and immune cell infiltration.
Results:
The mean age for the subjects was 50 years (range, 13 to 76 years) with a male:female ratio of 1:1. TMB for ONB samples ranged from 1.3 to 9.6 mutations/megabase (Mb) with mean of 3.8 mutations/Mb. Univariate analysis showed no association between TMB and tumor stage, pathologic grade, risk of recurrence, or immune cell infiltration. Genomic profile revealed that 6 of 13 tumors had genetic alterations with targeted therapies in clinical trials, whereas 1 tumor demonstrated KRAS Q61R mutation with U.S. Food and Drug Administration (FDA)-approved targeted therapies.
Conclusion:
TMB is a novel biomarker guiding the classification of neoplasms in the emerging era of immunotherapy. The characterization of ONB as a low-TMB pathology contributes to the overall taxonomy of all cancers and suggests limited utility of immunotherapy treatment.
Insights
Olfactory neuroblastoma (ONB) is a rare cancer with low tumor mutational burden (TMB). This finding suggests limited effectiveness for current immunotherapy treatments, necessitating exploration of alternative therapeutic strategies for recurrent disease.
Area of Science:
- Oncology
- Genomics
- Immunotherapy
Background:
- Olfactory neuroblastoma (ONB) is a rare malignancy of the skull base.
- Recurrent ONB has limited and unreliable treatment options.
- Understanding the genomic and immune landscape of ONB is crucial for developing new therapies.
Purpose of the Study:
- To analyze the exome and immune environment of olfactory neuroblastoma.
- To identify potential immunotherapy targets for recurrent ONB.
- To characterize tumor mutational burden (TMB) in ONB.
Main Methods:
- Retrospective chart review of 14 ONB cases.
- Next-generation sequencing of a 595-gene panel for DNA and RNA.
- Analysis of tumor mutational burden (TMB) and immune cell infiltration.
- Identification of clinically relevant genomic alterations and associated targeted therapies.
Main Results:
- ONB samples exhibited a low mean TMB of 3.8 mutations/Mb.
- No association was found between TMB and clinical stage, grade, recurrence risk, or immune infiltration.
- Six of 13 tumors had alterations with targeted therapies in clinical trials.
- One tumor harbored a KRAS Q61R mutation with FDA-approved targeted therapies.
Conclusions:
- Olfactory neuroblastoma is characterized as a low-TMB pathology.
- The low TMB suggests limited utility for current immunotherapy approaches in ONB.
- Further research into alternative treatment strategies for ONB is warranted.
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