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Use of fluorescence in situ hybridization to detect loss of chromosome 10 in astrocytomas.

作者信息

Dalrymple S J, Herath J F, Ritland S R, Moertel C A, Jenkins R B

机构信息

Department of Neurologic Surgery, Mayo Medical Center, Rochester, Minnesota, USA.

出版信息

J Neurosurg. 1995 Aug;83(2):316-23. doi: 10.3171/jns.1995.83.2.0316.

DOI:10.3171/jns.1995.83.2.0316
PMID:7616278
Abstract

Models describing progression in the genetic derangement of glial tumors have shown loss of chromosome 10 to occur most frequently in high-grade lesions, suggesting that identification of this loss may be prognostically significant. Fluorescence in situ hybridization (FISH) analysis may be a valuable adjunct to histological grading if it can accurately detect this loss. In this paper, the authors correlate results obtained from FISH, cytogenetic, molecular genetic, and flow cytometric analyses of a series of 39 brain specimens, including seven normal, two gliotic, and 30 neoplastic (one Grade II, one Grade III, and 28 Grade IV astrocytoma) specimens. Contiguous section of freshly resected surgical tissue were submitted for tissue culturing (karyotype) and touch preparation (FISH), snap-frozen (molecular genetic), or paraffin-embedded (histology and flow cytometry). Centromere-specific probes for chromosomes 10 and 12 were used for FISH analysis, and 19 restriction fragment length polymorphisms (two p-arm and 17 q-arm) and four microsatellite sequence polymorphisms (three p-arm and one q-arm) were used for molecular genetic analysis of chromosome 10. Findings showed FISH and loss of heterozygosity (LOH) analyses to be concordant in 33 of 38 specimens (sensitivity 94%, specificity 81%), with one specimen indeterminate on LOH analysis. Both FISH and LOH analyses were more sensitive at detecting chromosome 10 loss than conventional cytogenetic (karyotype) analysis. The authors conclude that FISH is a sensitive test for detecting chromosome 10 loss and ploidy in astrocytic tumors.

摘要

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Mol Biol Rep. 2024 Nov 11;51(1):1141. doi: 10.1007/s11033-024-10095-6.
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Fluorescence in situ hybridization (FISH) in diagnostic and investigative neuropathology.荧光原位杂交技术(FISH)在诊断性和研究性神经病理学中的应用
Brain Pathol. 2002 Jan;12(1):67-86. doi: 10.1111/j.1750-3639.2002.tb00424.x.
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Mutation and deletion analysis of GFR alpha-1, encoding the co-receptor for the GDNF/RET complex, in human brain tumours.
人脑肿瘤中编码GDNF/RET复合物共同受体的GFRα-1的突变与缺失分析
Br J Cancer. 1999 May;80(3-4):383-6. doi: 10.1038/sj.bjc.6690367.