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Clonal hematopoiesis of indeterminate potential and its impact on patient trajectories after stem cell transplantation

机译:干细胞移植后潜在的克隆性造血作用及其对患者轨迹的影响

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摘要

Clonal hematopoiesis of indeterminate potential (CHIP) is a recently identified process where older patients accumulate distinct subclones defined by recurring somatic mutations in hematopoietic stem cells. CHIP’s implications for stem cell transplantation have been harder to identify due to the high degree of mutational heterogeneity that is present within the genetically distinct subclones. In order to gain a better understanding of CHIP and the impact of clonal dynamics on transplantation outcomes, we created a mathematical model of clonal competition dynamics. Our analyses highlight the importance of understanding competition intensity between healthy and mutant clones. Importantly, we highlight the risk that CHIP poses in leading to dominance of precancerous mutant clones and the risk of donor derived leukemia. Furthermore, we estimate the degree of competition intensity and bone marrow niche decline in mice during aging by using our modeling framework. Together, our work highlights the importance of better characterizing the ecological and clonal composition in hematopoietic donor populations at the time of stem cell transplantation.
机译:不确定潜在克隆性造血(CHIP)是最近确定的过程,老年患者在造血干细胞中积累由反复体细胞突变定义的不同亚克隆。由于在遗传上不同的亚克隆中存在高度的突变异质性,因此CHIP对干细胞移植的影响很难确定。为了更好地了解CHIP以及克隆动力学对移植结果的影响,我们创建了克隆竞争动力学的数学模型。我们的分析突出了了解健康克隆和突变克隆之间竞争强度的重要性。重要的是,我们强调了CHIP导致主导癌前突变体克隆的风险以及供体来源的白血病的风险。此外,通过使用我们的建模框架,我们估计了衰老过程中小鼠的竞争强度和骨髓生态位下降的程度。在一起,我们的工作突出了在干细胞移植时更好地表征造血供体群体的生态和克隆组成的重要性。

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