Wellcome-MRC Cambridge Stem Cell Institute, Department of Haematology, Jeffrey Cheah Biomedical Centre, University of Cambridge, Cambridge, UK.
Centre for Haemato-Oncology, Barts Cancer Institute, Queen Mary University of London, London EC1M 6BQ, UK; Institute of Cancer Research, London SM2 5NG, UK.
Cell Stem Cell. 2024 Feb 1;31(2):244-259.e10. doi: 10.1016/j.stem.2023.12.001. Epub 2024 Jan 5.
The paradigmatic hematopoietic tree model is increasingly recognized to be limited, as it is based on heterogeneous populations largely defined by non-homeostatic assays testing cell fate potentials. Here, we combine persistent labeling with time-series single-cell RNA sequencing to build a real-time, quantitative model of in vivo tissue dynamics for murine bone marrow hematopoiesis. We couple cascading single-cell expression patterns with dynamic changes in differentiation and growth speeds. The resulting explicit linkage between molecular states and cellular behavior reveals widely varying self-renewal and differentiation properties across distinct lineages. Transplanted stem cells show strong acceleration of differentiation at specific stages of erythroid and neutrophil production, illustrating how the model can quantify the impact of perturbations. Our reconstruction of dynamic behavior from snapshot measurements is akin to how a kinetoscope allows sequential images to merge into a movie. We posit that this approach is generally applicable to understanding tissue-scale dynamics at high resolution.
造血树模型逐渐被认为是有限的,因为它是基于异质群体建立的,而这些群体主要是通过非稳态检测细胞命运潜能来定义的。在这里,我们将持续标记与时间序列单细胞 RNA 测序相结合,为小鼠骨髓造血建立一个实时、定量的体内组织动力学模型。我们将级联的单细胞表达模式与分化和生长速度的动态变化相结合。分子状态与细胞行为之间的这种明确联系揭示了不同谱系之间广泛存在的自我更新和分化特性。移植的干细胞在红细胞和中性粒细胞产生的特定阶段表现出强烈的分化加速,这说明了该模型如何量化干扰的影响。我们从快照测量中重建动态行为的方法类似于活动电影放映机如何将连续的图像合并成电影。我们假设这种方法通常适用于以高分辨率理解组织尺度的动态。