光学基因组图谱:“下一代细胞基因组学分析”的革命性工具,在人类疾病诊断中具有广泛的应用。

Jaime Garcia-Heras
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引用次数: 0

摘要

目的:光学基因组图谱(OGM)已经成为一种非常强大的技术,可以以前所未有的分辨率和时间和成本效益的方式,在一个步骤中以高精度诊断大量染色体异常。最近的一些研究提供了一个原理证明,在体质研究和血液病的评估中,OGM可以取代传统的细胞基因组分析(核型、FISH和snp阵列)。OGM不仅发现了以前用标准方法诊断出的异常,它还强调了一些重排的结构复杂性,并发现了具有潜在诊断、预后和治疗意义的新发现。虽然OGM在技术和诊断上仍然存在一些局限性,需要进行微调和改进,但迄今为止它已经显示出许多有希望的优势,未来的常规应用预示着下一代细胞基因组分析的革命性时代。关键词:光学基因组作图,细胞遗传学诊断,染色体异常检测,癌症细胞遗传学,体质染色体畸变,细胞基因组变异,结构变异,拷贝数变异
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Optical Genome Mapping: A Revolutionary Tool for "Next Generation Cytogenomics Analysis" with a Broad Range of Diagnostic Applications in Human Diseases.

Objectives: Optical Genome Mapping (OGM) has emerged as a very powerful technology to diagnose in a single step a large variety of chromosomal abnormalities with high accuracy, at an unprecedented resolution, and in a time- and cost-effective way. A few recent studies provided a proof-of-principle that OGM can replace traditional cytogenomic assays (karyotyping, FISH, and SNP-arrays) in constitutional studies and the evaluation of hematologic disorders. OGM not only identified abnormalities previously diagnosed by standard methods, it highlighted the structural complexity of some rearrangements and uncovered novel findings with potential diagnostic, prognostic and therapeutic significance. While OGM still seems to have some technical and diagnostic limitations that require fine-tuning and improvement, it has so far shown so many promising advantages that future routine use heralds a revolutionary era in next-generation cytogenomic analysis. Keywords: Optical Genome Mapping, cytogenetic diagnosis, chromosome abnormalities detection, cancer cytogenetics, constitutional chromosome aberrations, cytogenomic variation, structural variants (SVs), copy number variants (CNVs)

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