Cargando…

CBMS-4 CHROMOSOMAL INSTABILITY IN GLIOMA USING SPECTRAL KARYOTYPING METHOD

INTRODUCTION: Chromosomal instability, the cell condition in which chromosome mis-segregation occur at a high frequency during cell division, has been considered to be involved in the molecular mechanisms that give rise to the complex genetic background of glioma. However, most of this phenomenon ha...

Descripción completa

Detalles Bibliográficos
Autores principales: Negoto, Tetsuya, Komaki, Satoru, Hashimoto, Aya, Yoshitake, Hidenori, Moritsubo, Mayuko, Furuta, Takuya, Sakata, Kiyohiko, Nakamura, Hideo, Morioka, Motohiro
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9719328/
http://dx.doi.org/10.1093/noajnl/vdac167.003
_version_ 1784843298938028032
author Negoto, Tetsuya
Komaki, Satoru
Hashimoto, Aya
Yoshitake, Hidenori
Moritsubo, Mayuko
Furuta, Takuya
Sakata, Kiyohiko
Nakamura, Hideo
Morioka, Motohiro
author_facet Negoto, Tetsuya
Komaki, Satoru
Hashimoto, Aya
Yoshitake, Hidenori
Moritsubo, Mayuko
Furuta, Takuya
Sakata, Kiyohiko
Nakamura, Hideo
Morioka, Motohiro
author_sort Negoto, Tetsuya
collection PubMed
description INTRODUCTION: Chromosomal instability, the cell condition in which chromosome mis-segregation occur at a high frequency during cell division, has been considered to be involved in the molecular mechanisms that give rise to the complex genetic background of glioma. However, most of this phenomenon has been based on researches using cell line, and there have been few studies of chromosomal instability in clinical specimens of gliomas. METHODS: Primary cell culture was obtained from 11 glioma specimens (eight Glioblastoma (GBM), one Anaplastic PXA (aPXA), one Astrocytoma, and one Ependymoma), which was removed at our hospital, and chromosomes of up to five cells per case were analyzed by the SKY method. Chromosome instability was quantified by two parameters, one was AS (Aneuploidy score), which means the number of gain or loss of whole of the chromosome, and the other was SS: Structural abnormality score, which means the number of chromosome structural abnormality per cell. In addition, the phenotypes, which were characteristic of chromosomal instability were observed individually. RESULTS: Each quantitative value was as follows: GBM; AS:2.30±0.51 /SS:1.64±0.38, aPXA; AS :1.40±1.33 / SS:8.20±0.99, Astrocytoma and Ependymoma; AS:0.00 /SS:0.00, suggesting that chromosomal instability was associated with GBM and aPXA. Chromosome 7 amplification was most frequent in GBM (57%), and Mosaic loss of chromosome Y was also observed in 60% of males. Some characteristic karyotypes which suggest the phenomenon of Chromothripsis or Double minute were also observed. The karyotype concordance rate in the cases with p53 mutation was 60%, and that with p53 wild type was 100%, indicating that the p53 mutation increased the genotype heterogeneity in the same specimen. DISCUSSION: In clinical specimens of gliomas, aneuploidy and structural abnormalities were identified in GBM and aPXA, suggesting that chromosomal instability contributes to their cellular phenotype and malignancy.
format Online
Article
Text
id pubmed-9719328
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Oxford University Press
record_format MEDLINE/PubMed
spelling pubmed-97193282022-12-06 CBMS-4 CHROMOSOMAL INSTABILITY IN GLIOMA USING SPECTRAL KARYOTYPING METHOD Negoto, Tetsuya Komaki, Satoru Hashimoto, Aya Yoshitake, Hidenori Moritsubo, Mayuko Furuta, Takuya Sakata, Kiyohiko Nakamura, Hideo Morioka, Motohiro Neurooncol Adv Abstracts INTRODUCTION: Chromosomal instability, the cell condition in which chromosome mis-segregation occur at a high frequency during cell division, has been considered to be involved in the molecular mechanisms that give rise to the complex genetic background of glioma. However, most of this phenomenon has been based on researches using cell line, and there have been few studies of chromosomal instability in clinical specimens of gliomas. METHODS: Primary cell culture was obtained from 11 glioma specimens (eight Glioblastoma (GBM), one Anaplastic PXA (aPXA), one Astrocytoma, and one Ependymoma), which was removed at our hospital, and chromosomes of up to five cells per case were analyzed by the SKY method. Chromosome instability was quantified by two parameters, one was AS (Aneuploidy score), which means the number of gain or loss of whole of the chromosome, and the other was SS: Structural abnormality score, which means the number of chromosome structural abnormality per cell. In addition, the phenotypes, which were characteristic of chromosomal instability were observed individually. RESULTS: Each quantitative value was as follows: GBM; AS:2.30±0.51 /SS:1.64±0.38, aPXA; AS :1.40±1.33 / SS:8.20±0.99, Astrocytoma and Ependymoma; AS:0.00 /SS:0.00, suggesting that chromosomal instability was associated with GBM and aPXA. Chromosome 7 amplification was most frequent in GBM (57%), and Mosaic loss of chromosome Y was also observed in 60% of males. Some characteristic karyotypes which suggest the phenomenon of Chromothripsis or Double minute were also observed. The karyotype concordance rate in the cases with p53 mutation was 60%, and that with p53 wild type was 100%, indicating that the p53 mutation increased the genotype heterogeneity in the same specimen. DISCUSSION: In clinical specimens of gliomas, aneuploidy and structural abnormalities were identified in GBM and aPXA, suggesting that chromosomal instability contributes to their cellular phenotype and malignancy. Oxford University Press 2022-12-03 /pmc/articles/PMC9719328/ http://dx.doi.org/10.1093/noajnl/vdac167.003 Text en © The Author(s) 2022. Published by Oxford University Press, the Society for Neuro-Oncology and the European Association of Neuro-Oncology. https://creativecommons.org/licenses/by-nc/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution-NonCommercial License (https://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Abstracts
Negoto, Tetsuya
Komaki, Satoru
Hashimoto, Aya
Yoshitake, Hidenori
Moritsubo, Mayuko
Furuta, Takuya
Sakata, Kiyohiko
Nakamura, Hideo
Morioka, Motohiro
CBMS-4 CHROMOSOMAL INSTABILITY IN GLIOMA USING SPECTRAL KARYOTYPING METHOD
title CBMS-4 CHROMOSOMAL INSTABILITY IN GLIOMA USING SPECTRAL KARYOTYPING METHOD
title_full CBMS-4 CHROMOSOMAL INSTABILITY IN GLIOMA USING SPECTRAL KARYOTYPING METHOD
title_fullStr CBMS-4 CHROMOSOMAL INSTABILITY IN GLIOMA USING SPECTRAL KARYOTYPING METHOD
title_full_unstemmed CBMS-4 CHROMOSOMAL INSTABILITY IN GLIOMA USING SPECTRAL KARYOTYPING METHOD
title_short CBMS-4 CHROMOSOMAL INSTABILITY IN GLIOMA USING SPECTRAL KARYOTYPING METHOD
title_sort cbms-4 chromosomal instability in glioma using spectral karyotyping method
topic Abstracts
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9719328/
http://dx.doi.org/10.1093/noajnl/vdac167.003
work_keys_str_mv AT negototetsuya cbms4chromosomalinstabilityingliomausingspectralkaryotypingmethod
AT komakisatoru cbms4chromosomalinstabilityingliomausingspectralkaryotypingmethod
AT hashimotoaya cbms4chromosomalinstabilityingliomausingspectralkaryotypingmethod
AT yoshitakehidenori cbms4chromosomalinstabilityingliomausingspectralkaryotypingmethod
AT moritsubomayuko cbms4chromosomalinstabilityingliomausingspectralkaryotypingmethod
AT furutatakuya cbms4chromosomalinstabilityingliomausingspectralkaryotypingmethod
AT sakatakiyohiko cbms4chromosomalinstabilityingliomausingspectralkaryotypingmethod
AT nakamurahideo cbms4chromosomalinstabilityingliomausingspectralkaryotypingmethod
AT moriokamotohiro cbms4chromosomalinstabilityingliomausingspectralkaryotypingmethod