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Concise Review: Getting to the Core of Inherited Bone Marrow Failures

机译:简明审查:到遗传骨髓失败的核心

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Bone marrow failure syndromes (BMFS) are a group of disorders with complex pathophysiology characterized by a common phenotype of peripheral cytopenia and/or hypoplastic bone marrow. Understanding genetic factors contributing to the pathophysiology of BMFS has enabled the identification of causative genes and development of diagnostic tests. To date more than 40 mutations in genes involved in maintenance of genomic stability, DNA repair, ribosome and telomere biology have been identified. In addition, pathophysiological studies have provided insights into several biological pathways leading to the characterization of genotype/phenotype correlations as well as the development of diagnostic approaches and management strategies. Recent developments in bone marrow transplant techniques and the choice of conditioning regimens have helped improve transplant outcomes. However, current morbidity and mortality remain unacceptable underlining the need for further research in this area. Studies in mice have largely been unable to mimic disease phenotype in humans due to difficulties in fully replicating the human mutations and the differences between mouse and human cells with regard to telomere length regulation, processing of reactive oxygen species and lifespan. Recent advances in induced pluripotency have provided novel insights into disease pathogenesis and have generated excellent platforms for identifying signaling pathways and functional mapping of haplo-insufficient genes involved in large-scale chromosomal deletions-associated disorders. In this review, we have summarized the current state of knowledge in the field of BMFS with specific focus on modeling the inherited forms and how to best utilize these models for the development of targeted therapies.
机译:骨髓衰竭综合征(BMFS)是一组具有复杂病理生理学的一组疾病,其特征在于外周细胞缺乏和/或软包骨髓的常见表型。了解促进BMFS病理生理学的遗传因素使得能够鉴定致病基因和诊断测试的发展。迄今为止,已经鉴定了在维持基因组稳定性,DNA修复,核糖体和端粒生物学中的40多种突变。此外,病理生理学研究已经为几种生物途径提供了洞察,导致基因型/表型相关性的表征以及诊断方法和管理策略的发展。骨髓移植技术最近的发展和调理方案的选择有助于改善移植结果。然而,目前的发病率和死亡率仍然是不可接受的,强调了对该地区进一步研究的需求。由于困难,小鼠的研究在很大程度上在大部分中由于完全复制人类突变以及小鼠和人类细胞之间的差异而关于端粒长度调节,反应性氧物种和寿命的困难而导致人类的疾病表型。诱导多能性的最新进展已经为疾病发病机制提供了新的洞察力,并产生了用于鉴定具有在大规模染色体缺失相关疾病中涉及的HAPLO不足的基因的信号通路和功能映射的优异平台。在本次审查中,我们已经总结了BMFS领域的当前知识状态,具体关注建模继承的形式以及如何最好地利用这些模型来开发有针对性的疗法。

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