先天性纯红细胞再生障碍性贫血实验模型研究进展
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华南师范大学生命科学学院

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国家自然科学(32300692),中国博士后科学(2023M741235)和华南师范大学课外科研金种子培育项目(24SKKB01)


Research progress on experimental models of Diamond-Blackfan anemia
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School of Life Science,South China Normal University

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National Natural Science Foundation of China (No. 32300692), China Postdoctoral Science Foundation(No. 2023M741235)and Extracurricular Science Foundation of South China Normal University (Key Program) (No. 24SKKB01)

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    摘要:

    先天性纯红细胞再生障碍性贫血(Diamond-Blackfan anemia,DBA)是一种罕见的遗传性疾病,其特征为骨髓衰竭、先天性畸形和严重的红细胞发育异常。目前研究已确定包括RPS19、RPL5、RPL11在内的24个核糖体蛋白(ribosomal protein,RP)基因,以及GATA-1、EPO、TP53等6个非核糖体蛋白基因的突变与DBA的发生密切相关。鉴于DBA的发病率较低,患者群体有限,且缺乏足够的研究模型,对于基因突变如何导致DBA的具体病理机制仍存在许多未知,临床上针对DBA的治疗手段也相当有限。本文综述了研究者在DBA研究中所开发的斑马鱼模型、小鼠模型和人类细胞模型,这些模型不仅阐明了DBA的病理机制,并对进入临床试验的药物进行了追踪,为深入探究DBA的发病机制和药物开发提供了重要参考。

    Abstract:

    Diamond-Blackfan anemia (DBA), also known as congenital pure red cell aplasia, is a rare genetic disorder characterized by bone marrow failure, congenital anomalies, and severe red blood cell abnormalities. It is recognized that DBA can be caused by mutations in 24 ribosomal protein (RP) genes, including RPS19, RPL5, and RPL11, as well as 6 non-ribosomal genes, such as GATA-1, EPO, and TP53. Despite the rarity of DBA, which results in a limited patient pool and a scarcity of research models, there is substantial uncertainty surrounding the pathogenic mechanisms associated with genetic mutations in DBA, and the clinical treatment options remain strikingly limited. This review synthesizes the findings from the zebrafish, mouse, and human cellular models of DBA mutations that researchers have developed in their pursuit to understand the disorder. It clarifies the pathogenic mechanisms and monitors the progression of drugs into clinical trials, thereby aiding in the further in-depth exploration of the etiology and therapeutic advancements for DBA.

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  • 收稿日期:2024-12-03
  • 最后修改日期:2025-04-14
  • 录用日期:2025-05-28
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