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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
Characterization of Somatostatin Receptor 2 Gene Expression and Immune Landscape in Sinonasal Malignancies
Elisabetta Xue1, Dara Bracken-Clarke1, Harris Krause2
1Center for Immuno-Oncology, National Cancer Institute, National Institute of Health, Bethesda, MD 20894, USA.
Abstract:
Olfactory neuroblastoma (ONB), sinonasal undifferentiated carcinoma (SNUC), and sinonasal neuroendocrine carcinoma (SNEC) are rare malignancies arising from the sinonasal tract with limited therapeutic options. The expression of the somatostatin receptor 2 gene (SSTR2), which is expressed in other neuroendocrine neoplasms and is therapeutically actionable, has been reported in these tumors. Here, we analyzed SSTR2 gene expression and its associations with genomic features, established biomarkers predicting of immune response, and the tumor immune microenvironment in a cohort of ONB, SNUC, and SNEC tumor samples (26, 13, and 8 samples, respectively) from a real-world database. SSTR2 gene expression was high in neural-type ONB and low in basal-type ONB and in most of the SNUC and SNEC cases; there was no difference in expression between primary and metastatic tumors. The T cell-inflamed (TCI) score analysis classified 38.5% of SNUC cases as T cell-inflamed compared to only 3.9% of ONB and 0% of SNEC cases; 26.9% of ONB cases were classified as intermediate TCI; and SNEC had the lowest relative immune cell infiltration by deconvolution. In high SSTR2-expressing ONB, there was a higher proportion of infiltrating of Natural Killer cells and dendritic cells by deconvolution. Additionally, high SSTR2-expressing ONB was enriched for proliferation pathways, including E2F and Myc targets and G2M checkpoints. In conclusion, our findings delineate significant differences between these three types of sinonasal malignancies that were examined. In ONB, relative to SNUC and SNEC, the SSTR2 expression profile, combined with its immune profiles, indicates potential novel therapeutic strategies and combinations for this unmet clinical need. Conversely, the inflammatory microenvironment of SNUC may be targetable using immuno-oncologic therapies.
Insights
Olfactory neuroblastoma (ONB), sinonasal undifferentiated carcinoma (SNUC), and sinonasal neuroendocrine carcinoma (SNEC) are rare sinonasal cancers. SSTR2 expression varies, with ONB showing potential for novel therapies, while SNUC may respond to immuno-oncology treatments.
Area of Science:
- Oncology
- Genomics
- Immunology
Background:
- Olfactory neuroblastoma (ONB), sinonasal undifferentiated carcinoma (SNUC), and sinonasal neuroendocrine carcinoma (SNEC) are rare sinonasal malignancies with limited treatment options.
- Somatostatin receptor 2 gene (SSTR2) expression is therapeutically actionable in neuroendocrine neoplasms and has been reported in these tumors.
Purpose of the Study:
- To analyze SSTR2 gene expression and its association with genomic features, immune response biomarkers, and the tumor immune microenvironment in ONB, SNUC, and SNEC.
- To identify potential therapeutic strategies for these rare sinonasal malignancies.
Main Methods:
- Analysis of SSTR2 gene expression in 47 sinonasal tumor samples (26 ONB, 13 SNUC, 8 SNEC).
- Assessment of T cell-inflamed (TCI) score and immune cell infiltration using deconvolution.
- Evaluation of genomic features, including proliferation pathways, in relation to SSTR2 expression.
Main Results:
- SSTR2 expression was high in neural-type ONB, low in basal-type ONB, SNUC, and SNEC.
- SNUC showed a higher proportion of T cell-inflamed tumors (38.5%) compared to ONB (3.9%) and SNEC (0%).
- High SSTR2 expression in ONB correlated with increased Natural Killer cells, dendritic cells, and proliferation pathways.
Conclusions:
- Significant differences exist in SSTR2 expression and immune profiles among ONB, SNUC, and SNEC.
- ONB with high SSTR2 expression presents opportunities for novel therapeutic combinations.
- The inflammatory microenvironment of SNUC suggests potential efficacy of immuno-oncologic therapies.
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