首页> 外文期刊>Stem Cells >Reflections on the European Union Eurythron Network Meeting 'Molecular Control of Erythropoiesis,' September 22-23, 2005, Istituto Superiore di Sanita, Rome, Italy.
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Reflections on the European Union Eurythron Network Meeting 'Molecular Control of Erythropoiesis,' September 22-23, 2005, Istituto Superiore di Sanita, Rome, Italy.

机译:关于欧盟Eurythron网络会议的思考“促红细胞生成的分子控制”,2005年9月22日至23日,意大利罗马桑尼塔高级研究所。

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摘要

Red blood cells (RBCs) mediate oxygen transport throughout the body, a function that is essential for life. RBCs are continuously produced via a process called erythropoiesis. Anemias (insufficient numbers of functional RBCs), caused by failure of erythropoiesis, are a major cause of disease worldwide. Hereditary anemias constitute the most common human genetic disorders; they have no effective cure yet. The European research training network Eurythron follows a multidisciplinary approach to clarify the important molecular mechanisms in normal and pathological erythropoiesis, with a view to develop novel therapies to cure the anemias. The aim is to generate a comprehensive molecular description of mechanisms governing specification of hematopoietic stem cells in embryogenesis, lineage commitment, differentiation, and postmitotic maturation of RBCs. We report on the Eurythron meeting in Rome, in which novel approaches in stem cell and erythroid cell biology, including in vitro expansion of primary cells, biochemistry of receptor/signal transduction complexes and transcription factors, and (epi)genetics, were discussed.
机译:红细胞(RBC)介导整个身体的氧气运输,这是生命必不可少的功能。红细胞通过称为红细胞生成的过程连续产生。由红细胞生成失败引起的贫血(功能性红细胞数量不足)是全世界疾病的主要原因。遗传性贫血是人类最常见的遗传疾病;他们还没有有效的治疗方法。欧洲研究培训网络Eurythron遵循多学科方法来阐明正常和病理性红细胞生成的重要分子机制,以期开发出治疗贫血的新疗法。目的是对红细胞的胚胎发生,谱系定型,分化和有丝分裂后成熟的造血干细胞规格进行调控,以产生全面的分子机制描述。我们在罗马举行的Eurythron会议上进行了报道,会议上讨论了干细胞和类红细胞生物学的新方法,包括原代细胞的体外扩增,受体/信号转导复合物和转录因子的生物化学以及(epi)遗传学。

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