首页> 外文会议>Engineering in Medicine and Biology Society, 2004. IEMBS '04. 26th Annual International Conference of the IEEE >Quantitative analysis of signaling mechanisms controlling adult neural progenitor cell proliferation
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Quantitative analysis of signaling mechanisms controlling adult neural progenitor cell proliferation

机译:控制成年神经祖细胞增殖的信号传导机制的定量分析

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Summary form only given. Tools of systems engineering and signal dynamics were employed to develop a quantitative model of the intracellular signaling systems involved in adult neural stem cell proliferation, based on pathways elucidated in our experimental systems. Neural progenitors isolated from the adult rat hippocampus are dependent on the basic fibroblast growth factor (FGF-2) and extracellular matrix (ECM) proteins. However, the intracellular effects of these stimuli were previously undetermined. We employed chemical inhibitors of known signal transduction molecules to identify important players in the FGF-2/ECM signal cascade, such as the cyclic AMP responsive element binding protein (CREB), protein kinase B/Akt, and several related molecules. Genetic mutants of these proteins were used to confirm their role in adult neural progenitor proliferation. Proliferation was assayed using the incorporation of a thymidine analog to determine cell doubling rate under various stimuli. Such assays have also uncovered novel synergistic signaling between FGF-2 and ECM components. This research is, to our knowledge, the first to elucidate intracellular signaling pathways for adult neural stem cell proliferation. Upon determination of the pertinent intracellular signaling pathways, quantitative immunoblots were employed to examine the dynamics of these systems. These data, as well as enzyme kinetics information from the literature, are being used to parameterize a dynamic mathematical model of progenitor proliferation events induced by FGF-2. This computational model will be used to predict the biochemical and mechanical signaling inputs necessary to achieve a desired proliferative output from the cells, based on specific extracellular stimuli. It is our hope that this essential quantitative understanding will facilitate the use of adult neural stem cells in medical applications.
机译:仅提供摘要表格。基于我们实验系统中阐明的途径,采用了系统工程和信号动力学工具来开发参与成人神经干细胞增殖的细胞内信号系统的定量模型。从成年大鼠海马中分离出的神经祖细胞依赖于碱性成纤维细胞生长因子(FGF-2)和细胞外基质(ECM)蛋白。但是,这些刺激的细胞内作用以前是不确定的。我们采用了已知信号转导分子的化学抑制剂来识别FGF-2 / ECM信号级联反应中的重要参与者,例如环状AMP响应元件结合蛋白(CREB),蛋白激酶B / Akt和一些相关分子。这些蛋白质的遗传突变体被用于确认其在成年神经祖细胞增殖中的作用。使用掺入胸苷类似物来测定增殖,以确定在各种刺激下的细胞倍增速率。这样的测定还发现了FGF-2和ECM组分之间的新型协同信号传导。据我们所知,这项研究是第一个阐明成人神经干细胞增殖的细胞内信号传导途径的研究。在确定相关的细胞内信号传导途径后,采用定量免疫印迹来检查这些系统的动力学。这些数据以及来自文献的酶动力学信息被用于参数化FGF-2诱导的祖细胞增殖事件的动态数学模型。基于特定的细胞外刺激,该计算模型将用于预测从细胞获得所需增殖输出所必需的生化和机械信号输入。我们希望这种基本的定量理解将有助于成人神经干细胞在医学应用中的使用。

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