首页> 外文期刊>Neuropathology: official journal of the Japanese Society of Neuropathology >Three gangliogliomas: Results of GTG-banding, SKY, genome-wide high resolution SNP-array, gene expression and review of the literature
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Three gangliogliomas: Results of GTG-banding, SKY, genome-wide high resolution SNP-array, gene expression and review of the literature

机译:三种神经节神经胶质瘤:GTG带,SKY,全基因组高分辨率SNP阵列,基因表达和文献综述的结果

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According to the World Health Organization gangliogliomas are classified as well-differentiated and slowly growing neuroepithelial tumors, composed of neoplastic mature ganglion and glial cells. It is the most frequent tumor entity observed in patients with long-term epilepsy. Comprehensive cytogenetic and molecular cytogenetic data including high-resolution genomic profiling (single nucleotide polymorphism (SNP)-array) of gangliogliomas are scarce but necessary for a better oncological understanding of this tumor entity. For a detailed characterization at the single cell and cell population levels, we analyzed genomic alterations of three gangliogliomas using trypsin-Giemsa banding (GTG-banding) and by spectral karyotyping (SKY) in combination with SNP-array and gene expression array experiments. By GTG and SKY, we could confirm frequently detected chromosomal aberrations (losses within chromosomes 10, 13 and 22; gains within chromosomes 5, 7, 8 and 12), and identify so far unknown genetic aberrations like the unbalanced non-reciprocal translocation t(1;18)(q21;q21). Interestingly, we report on the second so far detected ganglioglioma with ring chromosome 1. Analyses of SNP-array data from two of the tumors and respective germline DNA (peripheral blood) identified few small gains and losses and a number of copy-neutral regions with loss of heterozygosity (LOH) in germline and in tumor tissue. In comparison to germline DNA, tumor tissues did not show substantial regions with significant loss or gain or with newly developed LOH. Gene expression analyses of tumor-specific genes revealed similarities in the profile of the analyzed samples regarding different relevant pathways. Taken together, we describe overlapping but also distinct and novel genetic aberrations of three gangliogliomas.
机译:根据世界卫生组织,神经节神经胶质瘤被分类为分化良好,生长缓慢的神经上皮瘤,由肿瘤成熟神经节和神经胶质细胞组成。它是长期癫痫患者中最常见的肿瘤。缺乏神经节神经胶质瘤的完整细胞遗传学和分子细胞遗传学数据,包括高分辨率基因组分析(单核苷酸多态性(SNP)-阵列),但对于更好地对该肿瘤实体进行肿瘤学了解是必要的。为了在单个细胞和细胞群体水平上进行详细表征,我们使用胰蛋白酶-吉姆萨条带(GTG条带)和光谱核型分析(SKY)结合SNP阵列和基因表达阵列实验分析了三个神经节神经胶质瘤的基因组变化。通过GTG和SKY,我们可以确认经常检测到的染色体畸变(染色体10、13和22中的丢失;染色体5、7、8和12中的增益),并确定迄今为止未知的遗传畸变,例如不平衡的非对易易位t( 1; 18)(q21; q21)。有趣的是,我们报告了迄今第二个带有环状染色体1的神经节神经胶质瘤。对来自两个肿瘤和各自种系DNA(外周血)的SNP阵列数据进行分析后,发现了一些小的得失和损失,以及许多带有种系和肿瘤组织中杂合性(LOH)的丧失。与种系DNA相比,肿瘤组织没有显示出明显的丢失或增加或新近出现的LOH的实质区域。肿瘤特异性基因的基因表达分析揭示了所分析样品关于不同相关途径的概况相似。综上所述,我们描述了三个神经节神经胶质瘤的重叠但又独特且新颖的遗传畸变。

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