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Quantitative analyses of embryonic stem cell fate responses to cytokine supplementation: Mechanisms of LIF-mediated regulation.

机译:胚胎干细胞命运对细胞因子补充的定量分析:LIF介导的调节机制。

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摘要

The therapeutic use of stem cells is limited by our inability to control and predict their behavior. Applying engineering analyses to experimental results offers the means for developing the kind of quantitative appreciation of stem cell fate mechanisms that is needed for their eventual clinical use. In this study, a novel experimental and computational framework was developed to predictably link murine embryonic stem (ES) cell responses to interleukin-6 (IL-6)-type cytokine stimuli. It was hypothesized that thresholds in levels of appropriate ligand-receptor interactions modulate individual stem cell proliferation, differentiation, and survival responses, thus dynamically contributing to population composition. Using two cytokines that exhibited quantitative differences in ligand-receptor interactions, a direct correlation between the number of ligand-receptor signaling complexes formed and individual ES cell fate was demonstrated. To investigate whether signaling complex numbers were also responsible for selectively promoting the survival and/or proliferation of undifferentiated cells, cell responses were kinetically tracked using a transgenic ES cell line (that expressed green fluorescent protein (GFP) under control of the Oct4 promoter; Oct4 is a transcription factor critical to the establishment and maintenance of ES cells). Sub-population specific analyses showed that undifferentiated cells had a ligand dose-dependent survival and proliferation advantage over their immediately differentiated counterparts. The findings attributed changes in population output to the net outcome of competitive responses between undifferentiated and differentiated cells and showed that strategic alteration of culture conditions (e.g., adjusting relative concentrations of exogenous cytokines/growth factors) can allow one sub-population to predictably dominate the system. Kinetic measurements of sub-fraction specific responses were used to develop a comprehensive computational model of stem cell fate determination that predicted cell outputs over multiple cell divisions. Model simulations identified parameters (e.g., Oct4 protein half-life, cell growth and death rates, sensitivity to extrinsic regulation, etc.) that distinctly impacted the growth of stem vs. differentiated cells, and therefore provided clues to differentially control the two sub-populations. Together, these integrated experimental and computational analyses provided novel insights on the effects of exogenous parameters on stem cell fate regulation. These findings have important applications in the emerging field of stem cell-derived products and therapeutics.
机译:干细胞的治疗用途受到我们无法控制和预测其行为的限制。将工程分析应用于实验结果,为开发最终临床应用所需的干细胞命运机制的定量评估提供了手段。在这项研究中,开发了一种新的实验和计算框架,以可预测地将鼠胚胎干(ES)细胞反应与白介素6(IL-6)型细胞因子刺激联系起来。假设适当的配体-受体相互作用水平的阈值调节个体干细胞的增殖,分化和存活反应,从而动态地促进种群组成。使用两种在配体-受体相互作用中表现出定量差异的细胞因子,证明了所形成的配体-受体信号传导复合物的数量与单个ES细胞命运之间存在直接的相关性。为了研究信号转导的复合数目是否还负责选择性促进未分化细胞的存活和/或增殖,使用转基因ES细胞系(在Oct4启动子控制下表达绿色荧光蛋白(GFP);从动力学上跟踪了细胞应答)是对ES细胞的建立和维持至关重要的转录因子。亚群特异性分析表明,未分化细胞比其立即分化的细胞具有配体剂量依赖性的存活和增殖优势。研究结果将种群输出的变化归因于未分化和分化细胞之间竞争反应的净结果,并表明培养条件的战略性改变(例如,调整外源细胞因子/生长因子的相对浓度)可以使一个亚种群可预测地主导系统。亚组分特异性反应的动力学测量用于建立干细胞命运确定的综合计算模型,该模型可预测多个细胞分裂中的细胞输出。模型仿真确定了明显影响干细胞与分化细胞生长的参数(例如Oct4蛋白半衰期,细胞生长和死亡率,对外部调控的敏感性等),因此提供了差异控制两个亚细胞的线索。人口。这些综合的实验和计算分析共同为外源性参数对干细胞命运调控的影响提供了新颖的见解。这些发现在干细胞衍生产品和疗法的新兴领域中具有重要的应用。

著录项

  • 作者

    Viswanathan, Sowmya.;

  • 作者单位

    University of Toronto (Canada).;

  • 授予单位 University of Toronto (Canada).;
  • 学科 Engineering Biomedical.; Biology Cell.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 185 p.
  • 总页数 185
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物医学工程;细胞生物学;
  • 关键词

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