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Tumor Spheroids of an Aggressive Form of Central Neurocytoma Have Transit-Amplifying Progenitor Characteristics with Enhanced EGFR and Tumor Stem Cell Signaling

Central neurocytoma (CN) has been known as a benign neuronal tumor. In rare cases, CN undergoes malignant transformation to glioblastomas (GBM). Here we examined its cellular origin by characterizing differentiation potential and gene expression of CN-spheroids. First, we demonstrate that both CN ti...

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Autores principales: Shin, Hye Young, Han, Kyung-Seok, Park, Hyung Woo, Hong, Yun Hwa, Kim, Yona, Moon, Hyo Eun, Park, Kwang Woo, Park, Hye Ran, Lee, C. Justin, Lee, Kiyoung, Kim, Sang Jeong, Heo, Man Seung, Park, Sung-Hye, Kim, Dong Gyu, Paek, Sun Ha
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Korean Society for Brain and Neural Sciences 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8118755/
https://www.ncbi.nlm.nih.gov/pubmed/33972466
http://dx.doi.org/10.5607/en21004
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author Shin, Hye Young
Han, Kyung-Seok
Park, Hyung Woo
Hong, Yun Hwa
Kim, Yona
Moon, Hyo Eun
Park, Kwang Woo
Park, Hye Ran
Lee, C. Justin
Lee, Kiyoung
Kim, Sang Jeong
Heo, Man Seung
Park, Sung-Hye
Kim, Dong Gyu
Paek, Sun Ha
author_facet Shin, Hye Young
Han, Kyung-Seok
Park, Hyung Woo
Hong, Yun Hwa
Kim, Yona
Moon, Hyo Eun
Park, Kwang Woo
Park, Hye Ran
Lee, C. Justin
Lee, Kiyoung
Kim, Sang Jeong
Heo, Man Seung
Park, Sung-Hye
Kim, Dong Gyu
Paek, Sun Ha
author_sort Shin, Hye Young
collection PubMed
description Central neurocytoma (CN) has been known as a benign neuronal tumor. In rare cases, CN undergoes malignant transformation to glioblastomas (GBM). Here we examined its cellular origin by characterizing differentiation potential and gene expression of CN-spheroids. First, we demonstrate that both CN tissue and cultured primary cells recapitulate the hierarchal cellular composition of subventricular zone (SVZ), which is comprised of neural stem cells (NSCs), transit amplifying progenitors (TAPs), and neuroblasts. We then derived spheroids from CN which displayed EGFR+/MASH+ TAP and BLBP+ radial glial cell (RGC) characteristic, and mitotic neurogenesis and gliogenesis by single spheroids were observed with cycling multipotential cells. CN-spheroids expressed increased levels of pluripotency and tumor stem cell genes such as KLF4 and TPD5L1, when compared to their differentiated cells and human NSCs. Importantly, Gene Set Enrichment Analysis showed that gene sets of GBM-Spheroids, EGFR Signaling, and Packaging of Telomere Ends are enriched in CN-spheroids in comparison with their differentiated cells. We speculate that CN tumor stem cells have TAP and RGC characteristics, and upregulation of EGFR signaling as well as downregulation of eph-ephrin signaling have critical roles in tumorigenesis of CN. And their ephemeral nature of TAPs destined to neuroblasts, might reflect benign nature of CN.
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spelling pubmed-81187552021-05-24 Tumor Spheroids of an Aggressive Form of Central Neurocytoma Have Transit-Amplifying Progenitor Characteristics with Enhanced EGFR and Tumor Stem Cell Signaling Shin, Hye Young Han, Kyung-Seok Park, Hyung Woo Hong, Yun Hwa Kim, Yona Moon, Hyo Eun Park, Kwang Woo Park, Hye Ran Lee, C. Justin Lee, Kiyoung Kim, Sang Jeong Heo, Man Seung Park, Sung-Hye Kim, Dong Gyu Paek, Sun Ha Exp Neurobiol Original Article Central neurocytoma (CN) has been known as a benign neuronal tumor. In rare cases, CN undergoes malignant transformation to glioblastomas (GBM). Here we examined its cellular origin by characterizing differentiation potential and gene expression of CN-spheroids. First, we demonstrate that both CN tissue and cultured primary cells recapitulate the hierarchal cellular composition of subventricular zone (SVZ), which is comprised of neural stem cells (NSCs), transit amplifying progenitors (TAPs), and neuroblasts. We then derived spheroids from CN which displayed EGFR+/MASH+ TAP and BLBP+ radial glial cell (RGC) characteristic, and mitotic neurogenesis and gliogenesis by single spheroids were observed with cycling multipotential cells. CN-spheroids expressed increased levels of pluripotency and tumor stem cell genes such as KLF4 and TPD5L1, when compared to their differentiated cells and human NSCs. Importantly, Gene Set Enrichment Analysis showed that gene sets of GBM-Spheroids, EGFR Signaling, and Packaging of Telomere Ends are enriched in CN-spheroids in comparison with their differentiated cells. We speculate that CN tumor stem cells have TAP and RGC characteristics, and upregulation of EGFR signaling as well as downregulation of eph-ephrin signaling have critical roles in tumorigenesis of CN. And their ephemeral nature of TAPs destined to neuroblasts, might reflect benign nature of CN. The Korean Society for Brain and Neural Sciences 2021-04-30 2021-04-30 /pmc/articles/PMC8118755/ /pubmed/33972466 http://dx.doi.org/10.5607/en21004 Text en Copyright © Experimental Neurobiology 2021 https://creativecommons.org/licenses/by-nc/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/4.0 (https://creativecommons.org/licenses/by-nc/4.0/) ) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Article
Shin, Hye Young
Han, Kyung-Seok
Park, Hyung Woo
Hong, Yun Hwa
Kim, Yona
Moon, Hyo Eun
Park, Kwang Woo
Park, Hye Ran
Lee, C. Justin
Lee, Kiyoung
Kim, Sang Jeong
Heo, Man Seung
Park, Sung-Hye
Kim, Dong Gyu
Paek, Sun Ha
Tumor Spheroids of an Aggressive Form of Central Neurocytoma Have Transit-Amplifying Progenitor Characteristics with Enhanced EGFR and Tumor Stem Cell Signaling
title Tumor Spheroids of an Aggressive Form of Central Neurocytoma Have Transit-Amplifying Progenitor Characteristics with Enhanced EGFR and Tumor Stem Cell Signaling
title_full Tumor Spheroids of an Aggressive Form of Central Neurocytoma Have Transit-Amplifying Progenitor Characteristics with Enhanced EGFR and Tumor Stem Cell Signaling
title_fullStr Tumor Spheroids of an Aggressive Form of Central Neurocytoma Have Transit-Amplifying Progenitor Characteristics with Enhanced EGFR and Tumor Stem Cell Signaling
title_full_unstemmed Tumor Spheroids of an Aggressive Form of Central Neurocytoma Have Transit-Amplifying Progenitor Characteristics with Enhanced EGFR and Tumor Stem Cell Signaling
title_short Tumor Spheroids of an Aggressive Form of Central Neurocytoma Have Transit-Amplifying Progenitor Characteristics with Enhanced EGFR and Tumor Stem Cell Signaling
title_sort tumor spheroids of an aggressive form of central neurocytoma have transit-amplifying progenitor characteristics with enhanced egfr and tumor stem cell signaling
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8118755/
https://www.ncbi.nlm.nih.gov/pubmed/33972466
http://dx.doi.org/10.5607/en21004
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