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Clinical implications of somatic mutations in aplastic anemia and myelodysplastic syndrome in genomic age

机译:基因组年龄骨塑贫血和骨髓增生综合征中体细胞突变的临床意义

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Recent technological advances in genomics have led to the discovery of new somatic mutations and have brought deeper insights into clonal diversity. This discovery has changed not only the understanding of disease mechanisms but also the diagnostics and clinical management of bone marrow failure. The clinical applications of genomics include enhancement of current prognostic schemas, prediction of sensitivity or refractoriness to treatments, and conceptualization and selective application of targeted therapies. However, beyond these traditional clinical aspects, complex hierarchical clonal architecture has been uncovered and linked to the current concepts of leukemogenesis and stem cell biology. Detection of clonal mutations, otherwise typical of myelodysplastic syndrome, in the course of aplastic anemia (AA) and paroxysmal nocturnal hemoglobinuria has led to new pathogenic concepts in these conditions and created a new link between AA and its clonal complications, such as post-AA and paroxysmal nocturnal hemoglobinuria. Distinctions among founder vs subclonal mutations, types of clonal evolution (linear or branching), and biological features of individual mutations (sweeping, persistent, or vanishing) will allow for better predictions of the biologic impact they impart in individual cases. As clonal markers, mutations can be used for monitoring clonal dynamics of the stem cell compartment during physiologic aging, disease processes, and leukemic evolution.
机译:最近基因组学的技术进步导致了新的躯体突变的发现,并使克隆多样性更深入地了解。这一发现不仅改变了对疾病机制的理解,而且改变了骨髓衰竭的诊断和临床管理。基因组学的临床应用包括增强目前预后模式,对治疗的敏感性或耐火性预测,以及针对靶向治疗的概念化和选择性应用。然而,除了这些传统的临床方面,复杂的分层克隆架构已经被发现并与当前白血病和干细胞生物学的概念相关联。检测克隆突变,否则典型的髓细胞增生综合征在血吸虫贫血(AA)和阵发性夜间血红蛋鱼中导致了这些条件的新致病概念,并在AA及其克隆并发症之间产生了新的联系,例如后AA和阵发性夜间血红蛋白尿。创始方VS亚间突变中的区别,克隆演化类型(线性或分支)和单个突变的生物学特征(扫透明,持续或消失)将允许更好地预测他们在单个情况下赋予的生物学影响。作为克隆标志物,突变可用于监测生理学老化,疾病过程和白血病进化期间干细胞室的克隆动力学。

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    《Hematology》 |2017年第1期|共7页
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