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Use of Single Nucleotide Polymorphism Array Technology to Improve the Identification of Chromosomal Lesions in Leukemia

机译:单核苷酸多态性阵列技术的使用以改善对白血病染色体损伤的鉴定

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摘要

Acute leukemias are characterized by recurring chromosomal and genetic abnormalities that disrupt normal development and drive aberrant cell proliferation and survival. Identification of these abnormalities plays important role in diagnosis, risk assessment and patient classification. Until the last decade methods to detect these aberrations have included genome wide approaches, such as conventional cytogenetics, but with a low sensitivity (5-10%), or gene candidate approaches, such as fluorescent in situ hybridization, having a greater sensitivity but being limited to only known regions of the genome. Single nucleotide polymorphism (SNP) technology is a screening method that has revolutionized our way to find genetic alterations, enabling linkage and association studies between SNP genotype and disease as well as the identification of alterations in DNA content on a whole genome scale. The adoption of this approach for the study of lymphoid and myeloid leukemias contributed to the identification of novel genetic alterations, such as losses/gains/uniparental disomy not visible by cytogenetics and implicated in pathogenesis, improving risk assessment and patient classification and in some cases working as targets for tailored therapies. In this review, we reported recent advances obtained in the knowledge of the genomic complexity of chronic myeloid leukemia and acute leukemias thanks to the use of high-throughput technologies, such as SNP array.
机译:急性白血病的特征是反复出现的染色体和遗传异常,破坏正常发育并驱动异常细胞增殖和存活。这些异常的识别在诊断,风险评估和患者分类中起着重要作用。直到最近十年,检测这些像差的方法包括全基因组方法,如常规细胞遗传学,但灵敏度较低(5-10%),或基因候选方法,如荧光原位杂交,具有较高的灵敏度,但仅限于基因组的已知区域。单核苷酸多态性(SNP)技术是一种筛查方法,它彻底改变了我们寻找遗传变异的方法,使SNP基因型与疾病之间的联系和关联研究以及在整个基因组范围内鉴定DNA含量的改变成为可能。采用这种方法研究淋巴样和髓样白血病有助于发现新的遗传学改变,例如细胞遗传学不可见的,涉及发病机理的损失/收益/单亲二倍体,改善了风险评估和患者分类,并且在某些情况下有效作为量身定制的疗法的目标。在本综述中,我们报告了由于使用了高通量技术(例如SNP阵列)而在了解慢性髓样白血病和急性白血病的基因组复杂性方面取得的最新进展。

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