Neering Sarah J, Bushnell Timothy, Sozer Selcuk, Ashton John, Rossi Randall M, Wang Pin-Yi, Bell Deborah R, Heinrich David, Bottaro Andrea, Jordan Craig T
James P Wilmot Cancer Center, University of Rochester Medical Center, NY 14642, USA.
Blood. 2007 Oct 1;110(7):2578-85. doi: 10.1182/blood-2007-02-073031. Epub 2007 Jun 29.
Myeloid leukemia arises from leukemia stem cells (LSCs), which are resistant to standard chemotherapy agents and likely to be a major cause of drug-resistant disease and relapse. To investigate the in vivo properties of LSCs, we developed a mouse model in which the biologic features of human LSCs are closely mimicked. Primitive normal hematopoietic cells were modified to express the BCR/ABL and Nup98/HoxA9 translocation products, and a distinct LSC population, with the aberrant immunophenotype of lineage(-), Kit(+/-), Flt3(+), Sca(+), CD34(+), and CD150(-), was identified. In vivo studies were then performed to assess the response of LSCs to therapeutic insult. Treatment of animals with the ABL kinase inhibitor imatinib mesylate induced specific modulation of blasts and progenitor cells but not stem- cell populations, thereby recapitulating events inferred to occur in human chronic myelogenous leukemia (CML) patients. In addition, challenge of leukemic mice with total body irradiation was selectively toxic to normal hematopoietic stem cells (HSCs), suggesting that LSCs are resistant to apoptosis and/or senescence in vivo. Taken together, the system provides a powerful means by which the in vivo behavior of LSCs versus HSCs can be characterized and candidate treatment regimens can be optimized for maximal specificity toward primitive leukemia cells.
髓系白血病起源于白血病干细胞(LSCs),这些细胞对标准化疗药物具有抗性,并且可能是耐药性疾病和复发的主要原因。为了研究LSCs的体内特性,我们开发了一种小鼠模型,其中人类LSCs的生物学特征被紧密模拟。原始正常造血细胞被修饰以表达BCR/ABL和Nup98/HoxA9易位产物,并且鉴定出一个具有异常免疫表型的独特LSC群体,其免疫表型为谱系(-)、Kit(+/-)、Flt3(+)、Sca(+)、CD34(+)和CD150(-)。然后进行体内研究以评估LSCs对治疗损伤的反应。用ABL激酶抑制剂甲磺酸伊马替尼治疗动物可诱导原始细胞和祖细胞的特异性调节,但对干细胞群体无影响,从而重现了推断在人类慢性粒细胞白血病(CML)患者中发生的事件。此外,用全身照射对白血病小鼠进行攻击对正常造血干细胞(HSCs)具有选择性毒性,这表明LSCs在体内对凋亡和/或衰老具有抗性。综上所述,该系统提供了一种强大的手段,通过它可以表征LSCs与HSCs的体内行为,并且可以优化候选治疗方案以对原始白血病细胞具有最大特异性。