[New insights into the genetic basis of neuroblastoma].

F Speleman, K De Preter, J Hoebeeck, N Van Roy, J Vandesompele
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Abstract

Neuroblastoma (NB) is, next to acute lymphoblastic leukaemia, brain tumours and lymphoma the most frequent paediatric tumour (8-10%). Our research group aims to contribute to the unravelling of the genetic basis of NB. Insight into the genes and signalling pathways involved in tumour formation and development can represent an essential step towards the development of more efficient molecular targeted therapies. A first part of our research work was devoted to the analysis of genomic alterations in NB. By means of a new highly sensitive method for detecting gains and losses of chromosomal segments, we recognised three major prognostic relevant genomic subtypes of NB. In addition smaller subgroups with deviating genomic patterns were detected. In addition, this work yielded important information regarding delineation of critical regions of gain and loss in NB which should facilitate further selection of candidate oncogenes or tumour suppressor genes. A second important part of our work focussed on the gene expression profiling of NB precursor cells. We were able as the first to isolate these cells and determine their transcriptome, a finding of fundamental importance for future expression studies in NB. Another study focussed on the identification of MYCN transcriptional target genes. Gene expression analyses of model systems developed in our lab and of a large panel of cell lines and tumours allowed us to subtract a list of candidate genes which are now under further study. Finally, we initiated research towards the understanding of the role of methylation in NB oncogenesis. From this, we were able to create a list of potentially relevant methylated genes in NB. From the above it is clear that our team has made important contributions to the understanding of the complex biology and clinical behaviour of NB. Also, a broad technically innovative research platform has been developed which will allow us to dissect NB genetics with greater speed and accuracy.

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[神经母细胞瘤遗传基础的新见解]。
神经母细胞瘤(NB)是继急性淋巴细胞白血病、脑肿瘤和淋巴瘤之后最常见的儿科肿瘤(8-10%)。我们的研究小组旨在为揭示NB的遗传基础做出贡献。深入了解参与肿瘤形成和发展的基因和信号通路是开发更有效的分子靶向治疗的重要一步。我们研究工作的第一部分致力于分析NB的基因组变化。通过一种新的高度敏感的方法来检测染色体片段的增益和损失,我们识别出NB的三种主要预后相关基因组亚型。此外,还检测到较小的基因组模式偏离亚群。此外,这项工作还提供了关于NB中获得和损失的关键区域的描述的重要信息,这将有助于进一步选择候选癌基因或肿瘤抑制基因。我们工作的第二个重要部分集中在NB前体细胞的基因表达谱。我们能够作为第一个分离这些细胞并确定它们的转录组,这一发现对未来NB的表达研究具有重要意义。另一项研究集中在MYCN转录靶基因的鉴定上。对我们实验室开发的模型系统以及大量细胞系和肿瘤的基因表达分析使我们能够减去候选基因的列表,这些基因目前正在进一步研究中。最后,我们开始研究甲基化在NB肿瘤发生中的作用。由此,我们能够创建NB中潜在相关甲基化基因的列表。从以上可以清楚地看出,我们的团队对NB的复杂生物学和临床行为的理解做出了重要贡献。此外,一个广泛的技术创新研究平台已经开发出来,这将使我们能够以更快的速度和准确性解剖NB遗传学。
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