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荧光原位杂交显示脑膜瘤恶性进展过程中1号染色体短臂物质的缺失。

Loss of material from chromosome arm 1p during malignant progression of meningioma revealed by fluorescent in situ hybridization.

作者信息

Ishino S, Hashimoto N, Fushiki S, Date K, Mori T, Fujimoto M, Nakagawa Y, Ueda S, Abe T, Inazawa J

机构信息

Department of Hygiene, Kyoto Prefectural University of Medicine, Japan.

出版信息

Cancer. 1998 Jul 15;83(2):360-6.


DOI:
PMID:9669820
Abstract

BACKGROUND: Atypical and anaplastic meningiomas tend to recur and to invade adjacent brain, bone, and skin. They also can metastasize to extracranial organs such as the lung, liver, or bone, causing death. Recent reports have indicated that allelic deletion of chromosome 1p is associated with malignant progression of meningiomas. METHODS: Cytogenetic analysis of 37 meningiomas was performed using double-target fluorescent in situ hybridization (FISH) and focusing on chromosome arm 1p. The meningioma series included 17 benign meningiomas, 11 atypical meningiomas, and 9 anaplastic meningiomas. FISH was performed with pericentromeric (1q12) and subtelomeric (1p36) DNA probes to cell nuclei prepared from surgically extirpated tumor samples. RESULTS: A high incidence of deletion of at least part of 1p was observed in 60.0% of atypical and 85.7% of anaplastic meningiomas. Furthermore, statistically significant differences were found with respect to these data between benign versus atypical/anaplastic meningiomas. In four cases both primary and recurrent tumors from the same patient also were investigated for allelic status. CONCLUSIONS: The results of the current study support the existence of tumor suppressor gene(s) on 1p associated with malignant progression of meningioma, and suggest that detection of the allelic status of chromosome 1p by FISH may assist physicians in predicting the clinical prognosis of patients affected by this type of brain tumor.

摘要

背景:非典型性和间变性脑膜瘤易于复发,并侵犯邻近的脑、骨和皮肤。它们还可转移至肺、肝或骨等颅外器官,导致死亡。最近的报告表明,1p染色体的等位基因缺失与脑膜瘤的恶性进展相关。 方法:采用双靶点荧光原位杂交(FISH)技术对37例脑膜瘤进行细胞遗传学分析,重点关注1p染色体臂。脑膜瘤系列包括17例良性脑膜瘤、11例非典型脑膜瘤和9例间变性脑膜瘤。用着丝粒周围(1q12)和亚端粒(1p36)DNA探针,对手术切除的肿瘤样本制备的细胞核进行FISH检测。 结果:在60.0%的非典型脑膜瘤和85.7%的间变性脑膜瘤中,观察到至少部分1p缺失的高发生率。此外,在良性与非典型/间变性脑膜瘤之间,这些数据存在统计学显著差异。在4例患者中,还对同一患者的原发肿瘤和复发肿瘤的等位基因状态进行了研究。 结论:本研究结果支持1p上存在与脑膜瘤恶性进展相关的肿瘤抑制基因,并表明通过FISH检测1p染色体的等位基因状态,可能有助于医生预测受此类脑肿瘤影响患者的临床预后。

相似文献

[1]
Loss of material from chromosome arm 1p during malignant progression of meningioma revealed by fluorescent in situ hybridization.

Cancer. 1998-7-15

[2]
Detection of chromosome 1p deletion using FISH on meningioma touch imprints suggest a region outside chromosome 22 as important in tumor recurrence.

Minerva Med. 2003-2

[3]
Intratumoral patterns of clonal evolution in meningiomas as defined by multicolor interphase fluorescence in situ hybridization (FISH): is there a relationship between histopathologically benign and atypical/anaplastic lesions?

J Mol Diagn. 2004-11

[4]
Deletion of chromosome 1p and loss of expression of alkaline phosphatase indicate progression of meningiomas.

Clin Cancer Res. 1999-11

[5]
Alterations of the tumor suppressor genes CDKN2A (p16(INK4a)), p14(ARF), CDKN2B (p15(INK4b)), and CDKN2C (p18(INK4c)) in atypical and anaplastic meningiomas.

Am J Pathol. 2001-8

[6]
Comparative genomic hybridization analysis of genomic alterations in benign, atypical and anaplastic meningiomas.

Acta Neurol Belg. 2002-6

[7]
NF2 gene mutations and allelic status of 1p, 14q and 22q in sporadic meningiomas.

Oncogene. 1999-4-1

[8]
Genetic changes with prognostic value in histologically benign meningiomas.

Clin Neuropathol. 2013

[9]
1p and 3p deletions in meningiomas without detectable aberrations of chromosome 22 identified by comparative genomic hybridization.

Genes Chromosomes Cancer. 1997-12

[10]
Frequent loss of chromosome 14 in atypical and malignant meningioma: identification of a putative 'tumor progression' locus.

Oncogene. 1997-2-6

引用本文的文献

[1]
Malignant Transformation of Meningiomas.

J Cancer. 2025-2-10

[2]
Insights into brain tumor diagnosis: exploring hybridization techniques.

Front Neurol. 2024-7-3

[3]
Clinical Implications of the Mitotic Index as a Predictive Factor for Malignant Transformation of Atypical Meningiomas.

J Korean Neurosurg Soc. 2022-3

[4]
Genetic profiling by single-nucleotide polymorphism-based array analysis defines three distinct subtypes of orbital meningioma.

Brain Pathol. 2015-3

[5]
Molecular biological determinations of meningioma progression and recurrence.

PLoS One. 2014-4-10

[6]
Establishment of a molecular cytogenetic analysis for native tumor tissue of meningiomas-suitable for clinical application.

Mol Cytogenet. 2014-2-5

[7]
Promoter hypermethylation-mediated down-regulation of RUNX3 gene in human brain tumors.

Ir J Med Sci. 2013-8-11

[8]
Gone FISHing: clinical lessons learned in brain tumor molecular diagnostics over the last decade.

Brain Pathol. 2011-1

[9]
Differential expression profiling analyses identifies downregulation of 1p, 6q, and 14q genes and overexpression of 6p histone cluster 1 genes as markers of recurrence in meningiomas.

Neuro Oncol. 2010-8-4

[10]
'Putting our heads together': insights into genomic conservation between human and canine intracranial tumors.

J Neurooncol. 2009-9

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