首页> 外文期刊>Journal of the Royal Society Interface >Population dynamics of normal and leukaemia stem cells in the haematopoietic stem cell niche show distinct regimes where leukaemia will be controlled
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Population dynamics of normal and leukaemia stem cells in the haematopoietic stem cell niche show distinct regimes where leukaemia will be controlled

机译:造血干细胞生态位中正常和白血病干细胞的种群动态显示了控制白血病的独特机制

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Haematopoietic stem cells (HSCs) are responsible for rnaintaining immune cells, red blood cells and platelets throughout life. HSCs must be located in their ecological niche (the bone marrow) to function correctly, that is, to regenerate themselves and their progeny; the latter eventually exit the bone marrow and enter circulation. We propose that cells with oncogenic potential—cancer/leukaemia stem cells (LSC)—and their progeny will also occupy this niche. Mathematical models, which describe the dynamics of HSCs, LSCs and their progeny allow investigation into the conditions necessary for defeating a malignant invasion of the niche. Two such models are developed and analysed here. To characterize their behaviour, we use an inferential framework that allows us to study regions in parameter space that give rise to desired behaviour together with an assessment of the robustness of the dynamics. Using this approach, we map out conditions under which HSCs can outcompete LSCs. In therapeutic applications, we clearly want to drive haematopoiesis into such regimes and the current analysis provide some guidance as to how we can identify new therapeutic targets. Our results suggest that maintaining a viable population of HSCs and their progenies in the niche may often already be nearly sufficient to eradicate LSCs from the system.
机译:造血干细胞(HSC)负责维持生命中的免疫细胞,红细胞和血小板。造血干细胞必须位于其生态位(骨髓)中才能正常运行,即再生自身及其后代。后者最终离开骨髓进入循环系统。我们建议具有致癌潜力的细胞-癌症/白血病干细胞(LSC)-及其子代也将占据这一位置。数学模型描述了HSC,LSC及其子代的动力学,从而可以研究击败恶性小生境的必要条件。这里开发并分析了两个这样的模型。为了表征它们的行为,我们使用一个推论框架,该框架使我们能够研究参数空间中引起期望行为的区域,并评估动力学的鲁棒性。使用这种方法,我们可以确定HSC可以胜过LSC的条件。在治疗应用中,我们显然希望将造血功能带入这种治疗方案中,而当前的分析为我们如何确定新的治疗靶点提供了一些指导。我们的结果表明,在适当的地方维持可行的HSC及其后代种群可能通常已经足以从系统中根除LSC。

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