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利用单一遗传元件维持人类CD34+造血细胞的自我更新和分化潜能。

Maintaining the self-renewal and differentiation potential of human CD34+ hematopoietic cells using a single genetic element.

作者信息

Mulloy James C, Cammenga Jorg, Berguido Francisco J, Wu Kaida, Zhou Ping, Comenzo Raymond L, Jhanwar Suresh, Moore Malcolm A S, Nimer Stephen D

机构信息

Cincinnati Children's Hospital Medical Center, 3333 Burnet Ave, Mail Location 7013, Cincinnati, OH 45229, USA.

出版信息

Blood. 2003 Dec 15;102(13):4369-76. doi: 10.1182/blood-2003-05-1762. Epub 2003 Aug 28.

Abstract

Hematopoiesis is a complex process involving hematopoietic stem cell (HSC) self-renewal and lineage commitment decisions that must continue throughout life. Establishing a reproducible technique that allows for the long-term ex vivo expansion of human HSCs and maintains self-renewal and multipotential differentiation will allow us to better understand these processes, and we report the ability of the leukemia-associated AML1-ETO fusion protein to establish such a system. AML1-ETO-transduced human CD34+ hematopoietic cells routinely proliferate in liquid culture for more than 7 months, remain cytokine dependent for survival and proliferation, and demonstrate self-renewal of immature cells that retain both lymphoid and myeloid potential in vitro. These cells continue to express the CD34 cell surface marker and have ongoing telomerase activity with maintenance of telomere ends, however they do not cause leukemia in nonobese diabetic-severe combined immunodeficiency (NOD/SCID) mice. Identification of the signaling pathways that are modulated by AML1-ETO and lead to the self-renewal of immature human progenitor cells may assist in identifying compounds that can efficiently expand human stem and progenitor cells ex vivo.

摘要

造血是一个复杂的过程,涉及造血干细胞(HSC)的自我更新以及谱系定向决定,而这些过程必须贯穿一生。建立一种可重复的技术,以实现人类造血干细胞的长期体外扩增,并维持其自我更新和多能分化能力,将有助于我们更好地理解这些过程。我们报道了白血病相关的AML1-ETO融合蛋白建立这样一个系统的能力。转导了AML1-ETO的人类CD34+造血细胞在液体培养中通常能增殖超过7个月,其存活和增殖仍依赖细胞因子,并在体外表现出未成熟细胞的自我更新能力,这些未成熟细胞保留了淋巴系和髓系潜能。这些细胞持续表达CD34细胞表面标志物,具有持续的端粒酶活性并维持端粒末端,但它们在非肥胖糖尿病-严重联合免疫缺陷(NOD/SCID)小鼠中不会引发白血病。鉴定由AML1-ETO调节并导致未成熟人类祖细胞自我更新的信号通路,可能有助于识别能够在体外有效扩增人类干细胞和祖细胞的化合物。

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