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Comprehensive molecular profiling of advanced/metastatic olfactory neuroblastomas

Olfactory neuroblastoma (ONB) is a rare, locally aggressive, malignant neoplasm originating in the olfactory epithelium in the nasal vault. The recurrence rate of ONB remains high and there are no specific treatment guidelines for recurrent/metastatic ONBs. This study retrospectively evaluated 23 ON...

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Autores principales: Topcagic, Jasmina, Feldman, Rebecca, Ghazalpour, Anatole, Swensen, Jeffrey, Gatalica, Zoran, Vranic, Semir
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5764485/
https://www.ncbi.nlm.nih.gov/pubmed/29324814
http://dx.doi.org/10.1371/journal.pone.0191244
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author Topcagic, Jasmina
Feldman, Rebecca
Ghazalpour, Anatole
Swensen, Jeffrey
Gatalica, Zoran
Vranic, Semir
author_facet Topcagic, Jasmina
Feldman, Rebecca
Ghazalpour, Anatole
Swensen, Jeffrey
Gatalica, Zoran
Vranic, Semir
author_sort Topcagic, Jasmina
collection PubMed
description Olfactory neuroblastoma (ONB) is a rare, locally aggressive, malignant neoplasm originating in the olfactory epithelium in the nasal vault. The recurrence rate of ONB remains high and there are no specific treatment guidelines for recurrent/metastatic ONBs. This study retrospectively evaluated 23 ONB samples profiled at Caris Life Sciences (Phoenix, Arizona) using DNA sequencing (Sanger/NGS [Illumina], n = 15) and gene fusions (Archer FusionPlex, n = 6), whole genome RNA microarray (HumanHT-12 v4 beadChip, Illumina, n = 4), gene copy number assays (chromogenic and fluorescent in situ hybridization), and immunohistochemistry. Mutations were detected in 63% ONBs including TP53, CTNNB1, EGFR, APC, cKIT, cMET, PDGFRA, CDH1, FH, and SMAD4 genes. Twenty-one genes were over-expressed and 19 genes under-expressed by microarray assay. Some of the upregulated genes included CD24, SCG2, and IGFBP-2. None of the cases harbored copy number variations of EGFR, HER2 and cMET genes, and no gene fusions were identified. Multiple protein biomarkers of potential response or resistance to classic chemotherapy drugs were identified, such as low ERCC1 [cisplatin sensitivity in 10/12], high TOPO1 [irinotecan sensitivity in 12/19], high TUBB3 [vincristine resistance in 13/14], and high MRP1 [multidrug resistance in 6/6 cases]. None of the cases (0/10) were positive for PD-L1 in tumor cells. Overexpression of pNTRK was observed in 67% (4/6) of the cases without underlying genetic alterations. Molecular alterations detected in our study (e.g., Wnt and cKIT/PDGFRA pathways) are potentially treatable using novel therapeutic approaches. Identified protein biomarkers of response or resistance to classic chemotherapy could be useful in optimizing existing chemotherapy treatment(s) in ONBs.
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spelling pubmed-57644852018-01-23 Comprehensive molecular profiling of advanced/metastatic olfactory neuroblastomas Topcagic, Jasmina Feldman, Rebecca Ghazalpour, Anatole Swensen, Jeffrey Gatalica, Zoran Vranic, Semir PLoS One Research Article Olfactory neuroblastoma (ONB) is a rare, locally aggressive, malignant neoplasm originating in the olfactory epithelium in the nasal vault. The recurrence rate of ONB remains high and there are no specific treatment guidelines for recurrent/metastatic ONBs. This study retrospectively evaluated 23 ONB samples profiled at Caris Life Sciences (Phoenix, Arizona) using DNA sequencing (Sanger/NGS [Illumina], n = 15) and gene fusions (Archer FusionPlex, n = 6), whole genome RNA microarray (HumanHT-12 v4 beadChip, Illumina, n = 4), gene copy number assays (chromogenic and fluorescent in situ hybridization), and immunohistochemistry. Mutations were detected in 63% ONBs including TP53, CTNNB1, EGFR, APC, cKIT, cMET, PDGFRA, CDH1, FH, and SMAD4 genes. Twenty-one genes were over-expressed and 19 genes under-expressed by microarray assay. Some of the upregulated genes included CD24, SCG2, and IGFBP-2. None of the cases harbored copy number variations of EGFR, HER2 and cMET genes, and no gene fusions were identified. Multiple protein biomarkers of potential response or resistance to classic chemotherapy drugs were identified, such as low ERCC1 [cisplatin sensitivity in 10/12], high TOPO1 [irinotecan sensitivity in 12/19], high TUBB3 [vincristine resistance in 13/14], and high MRP1 [multidrug resistance in 6/6 cases]. None of the cases (0/10) were positive for PD-L1 in tumor cells. Overexpression of pNTRK was observed in 67% (4/6) of the cases without underlying genetic alterations. Molecular alterations detected in our study (e.g., Wnt and cKIT/PDGFRA pathways) are potentially treatable using novel therapeutic approaches. Identified protein biomarkers of response or resistance to classic chemotherapy could be useful in optimizing existing chemotherapy treatment(s) in ONBs. Public Library of Science 2018-01-11 /pmc/articles/PMC5764485/ /pubmed/29324814 http://dx.doi.org/10.1371/journal.pone.0191244 Text en © 2018 Topcagic et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Topcagic, Jasmina
Feldman, Rebecca
Ghazalpour, Anatole
Swensen, Jeffrey
Gatalica, Zoran
Vranic, Semir
Comprehensive molecular profiling of advanced/metastatic olfactory neuroblastomas
title Comprehensive molecular profiling of advanced/metastatic olfactory neuroblastomas
title_full Comprehensive molecular profiling of advanced/metastatic olfactory neuroblastomas
title_fullStr Comprehensive molecular profiling of advanced/metastatic olfactory neuroblastomas
title_full_unstemmed Comprehensive molecular profiling of advanced/metastatic olfactory neuroblastomas
title_short Comprehensive molecular profiling of advanced/metastatic olfactory neuroblastomas
title_sort comprehensive molecular profiling of advanced/metastatic olfactory neuroblastomas
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5764485/
https://www.ncbi.nlm.nih.gov/pubmed/29324814
http://dx.doi.org/10.1371/journal.pone.0191244
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