4 Stem cell kinetics

PhD Connie J. Eaves (Deputy Director, Professor of Medical Genetics) , MD, PhD Allen C. Eaves (Director, Professor and Head)
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引用次数: 27

Abstract

Chronic myeloid leukaemia (CML) is a transplantable multi-lineage disease. In its initial chronic phase, the leukaemic clone exhibits a hierarchical structure that closely resembles normal haematopoiesis. Thus assays for in vitro colony-forming cells (CFC) and their more primitive precursors identified as long-term culture-initiating cells (LTC-IC) detect subsets of Ph+/BCR-ABL+ cells which cannot be readily distinguished from their normal counterparts. The use of these assays to examine the numbers, properties, genotype, distribution and regulation of primitive progenitors in patients' blood and marrow samples have revealed a number of unique and unexpected findings. These suggest that the indolent nature of the chronic phase of the disease may be explained by competing effects of the BCR-ABL gene product on the commitment to differentiate, control of cell cycle progression and apoptosis. As a result, the amplification of BCR-ABL+ stem cells is constrained but the expansion of their progeny is enhanced and, on the granulocyte pathway, this expansion proceeds unchecked to the stage of mature end cell production resulting in the leukaemic picture observed.

4干细胞动力学
慢性髓性白血病(CML)是一种可移植的多系疾病。在最初的慢性期,白血病克隆表现出与正常造血非常相似的等级结构。因此,体外集落形成细胞(CFC)及其更原始的前体被确定为长期培养启动细胞(LTC-IC)的检测检测到Ph+/BCR-ABL+细胞的亚群,这些亚群不能轻易地与正常的对应物区分开来。使用这些检测来检查患者血液和骨髓样本中原始祖细胞的数量、特性、基因型、分布和调控,揭示了许多独特和意想不到的发现。这些结果表明,BCR-ABL基因产物在分化、控制细胞周期进程和凋亡方面的竞争性作用可能解释了该疾病慢性期的惰性。因此,BCR-ABL+干细胞的扩增受到限制,但其后代的扩增得到增强,并且在粒细胞途径上,这种扩增不受限制地进行到成熟终末细胞产生阶段,导致观察到的白血病图像。
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