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首页> 外文期刊>Virchows Archiv >Genomic profiling reveals subsets of dedifferentiated liposarcoma to follow separate molecular pathways
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Genomic profiling reveals subsets of dedifferentiated liposarcoma to follow separate molecular pathways

机译:基因组分析揭示去分化的脂肪肉瘤的子集遵循单独的分子途径

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With the aim to provide more insight into their biology, a series of 79 liposarcomas (LS) representative of all main subtypes was analysed for chromosomal imbalances using comparative genomic hybridization. Based on the genetic data, unsupervised hierarchical clustering unveiled two main LS clusters, each with two subclusters, one comprising three subsets. The first main cluster consisted of one larger subcluster, being characterised by gains/high-level amplifications of chromosomal subregions 12q13–q15, and exclusively included well-differentiated and dedifferentiated LS. A smaller subcluster was set apart on the basis of recurrent gains of 20q13 and 8q24, and mainly comprised pleomorphic and myxoid/round cell LS. The larger subcluster was subdivided into three subsets, one with nearly exclusive overrepresentations of 12q13–q15, the second with additional frequent gains of 1q21–q24, and the third with further recurrent overrepresentations of 6q22–q24, 20q13, and 12q24 and frequent losses of 13q14–q21 and 11q22–q23. While the first subset comprised both well-differentiated and dedifferentiated LS, the second and third subsets entirely included dedifferentiated LS. The second main cluster was characterised by recurrent overrepresentations of 5p13–p15, 1q21–q24, 1p12–p21, and 17p11.2–p12 and essentially comprised pleomorphic and myxoid/round cell LS. A separation of this second main cluster into two subclusters was based on additional gains on 22q13 and losses on 1q42–q43. Genomic profiling reveals genetically distinct subsets of dedifferentiated LS, which are clearly different from pleomorphic, myxoid/round cell, and, for some subsets, from well-differentiated LS. These data indicate that dedifferentiated LS follow separate tumourigenic pathways and that genetic analysis is important to unravel these differences.
机译:为了提供对其生物学的更多了解,使用比较基因组杂交技术分析了代表所有主要亚型的一系列79个脂肉瘤(LS)的染色体失衡。根据遗传数据,无监督分层聚类揭示了两个主要的LS聚类,每个聚类包含两个子聚类,一个包含三个子集。第一个主群集由一个较大的子群集组成,其特征是染色体子区域12q13–q15的增益/高水平扩增,并且仅包括高分化和去分化的LS。根据20q13和8q24的经常性收益,设置了一个较小的子集群,主要包括多形和粘液样/圆形细胞LS。较大的子集群又细分为三个子集,一个子集具有几乎唯一的12q13–q15超额代表权,第二个子集具有1q21–q24的额外频繁收益,第三个子集具有6q22–q24、20q13和12q24的进一步经常性超额代表权以及13q14-q21和11q22-q23。虽然第一子集包含高分化和去分化的LS,但是第二和第三子集完全包含去分化的LS。第二个主要类群的特征是反复出现5p13-p15、1q21-q24、1p12-p21和17p11.2-p12,并且基本上由多形和粘液样/圆形细胞LS组成。根据22q13的额外收益和1q42-q43的损失,将第二个主集群分为两个子集群。基因组图谱揭示了去分化的LS的遗传上不同的子集,这些子集与多形,粘液样/圆形细胞明显不同,对于某些子集,还与分化良好的LS明显不同。这些数据表明去分化的LS遵循单独的致瘤途径,并且遗传分析对于揭示这些差异很重要。

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