Literature DB >> 9283596

Chromosomal characteristics of childhood brain tumors.

S H Bigner1, R E McLendon, H Fuchs, P E McKeever, H S Friedman.   

Abstract

In the present cytogenetic analysis of 116 pediatric brain tumors, chromosomal abnormalities were demonstrated in 44 cases, 48 cases revealed only 46,XX or 46,XY cells, and 24 cases were nonproductive. In contrast to studies of adult brain tumors in which isolated loss of one X or the Y chromosome is often encountered, 45,X,-X and 45,X-Y stemlines or sidelines were not observed in this series of childhood tumors. Among the 17 medulloblastomas with cytogenetic abnormalities, chromosome 1 was most frequently affected by structural deviations; the most prevalent specific alteration (7 of 17 tumors) was loss of 17p, through i(17)(q10) or unbalanced translocation. The majority of low grade astrocytomas had normal stemlines, although one pilocytic astrocytoma and one cerebellar astrocytoma had frequent telomeric associations and a second pilocytic astrocytoma had a clone with trisomy 11. Thirteen of 19 high-grade and recurrent astrocytic tumors had abnormal stemlines that were approximately equally divided among cases with chromosomal counts in the near-diploid, hyperdiploid, and near-triploid-tetraploid ranges. Although no consistent abnormalities were observed, subsets of cases had structural abnormalities of chromosome 3, 7q, 9q, or 17p. The cases of childhood brain tumors described here demonstrate that 45,X,-X, and 45,X,-Y stemlines or sidelines are rare in these tumors and confirm frequent loss of 17p in medulloblastomas. High-grade astrocytic tumors in children frequently have abnormal stemlines, often in the hyperdiploid and polyploid ranges, and they differ from high-grade gliomas in the adult by lacking consistent numerical and structural deviations.

Entities:  

Mesh:

Year:  1997        PMID: 9283596     DOI: 10.1016/s0165-4608(96)00404-9

Source DB:  PubMed          Journal:  Cancer Genet Cytogenet        ISSN: 0165-4608


  26 in total

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Authors:  V P Collins
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Review 3.  Pediatric low-grade gliomas.

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Review 4.  Pediatric brain tumors: current treatment strategies and future therapeutic approaches.

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5.  Detection of human neurotropic JC virus DNA sequence and expression of the viral oncogenic protein in pediatric medulloblastomas.

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Review 6.  Pediatric low-grade gliomas: how modern biology reshapes the clinical field.

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7.  Cytogenetic analysis of paediatric astrocytoma using comparative genomic hybridisation and fluorescence in-situ hybridisation.

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Review 8.  Biological background of pediatric medulloblastoma and ependymoma: a review from a translational research perspective.

Authors:  Judith M de Bont; Roger J Packer; Erna M Michiels; Monique L den Boer; Rob Pieters
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Review 9.  Survival following treatment for intracranial ependymoma: a review.

Authors:  G Tamburrini; M D'Ercole; B L Pettorini; M Caldarelli; L Massimi; C Di Rocco
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10.  Subtelomeric analysis of pediatric astrocytoma: subchromosomal instability is a distinctive feature of pleomorphic xanthoastrocytoma.

Authors:  Elena Grau; J Balaguer; A Canete; F Martinez; C Orellana; S Oltra; M Hernandez; V Castel
Journal:  J Neurooncol       Date:  2008-12-20       Impact factor: 4.130

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