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中文摘要
翻译
生物传感器计划的主要目标是继续开发用于细胞迁移中关键调控和效应节点的生物传感器,并使用现有和拟议的生物传感器获取可用于以下目的的定量数据: 由建模计划和其他机构开发一个经过实验验证的细胞迁移理论模型 在模特界。该倡议建立在传感器技术、荧光分析、高 从第一个CMC资助期到进入第二阶段, 其中我们计划可视化活细胞中的信号事件, 数据集。建模工作将与建模倡议密切合作进行。一个主要 该倡议的重点将是Rho家族监管机构,因为他们控制着关键的移民节点。此外 该计划将重点关注生物传感器和光活化试剂的构建,利用现有的 和新技术,这些信号通路的关键上游和下游成员。 最后,我们对一个具体的关键信号进行了详细的实验和数学分析 细胞迁移的途径。
英文摘要
The primary goals for the Biosensor Initiative are to continue to develop biosensors for key regulatory and effector nodes in cell migration and to use existing and proposed biosensors to acquire quantitative data that can be used to develop an experimentally verified theoretical model of cell migration by the Modeling Initiative and others in the modeling community. The Initiative builds on the sensor technologies, fluorescence assays, high throughput microscopy and collaborations from the first CMC funding period to move into Phase II, wherein we plan to visualize signaling events in living cells and to acquire and analyze large microscopic data sets. The modeling will be carried out as a close collaboration with the Modeling Initiative. A major focus of the Initiative will be Rho family regulators since they control key migration nodes. In addition the Initiative will focus on construction of biosensors and photoactivatable reagents, using both existing and new technologies, for key upstream and downstream members of these signaling pathways. In the end we produce a detailed experimental and mathematical analysis of a specific, critical signaling pathway in cell migration.
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Endothelial Cell Uptake of Infected Erythrocytes in Cerebral Malaria
Endothelial Cell Uptake of Infected Erythrocytes in Cerebral Malaria
Rho-mediated Signaling in Lung Endothelial Cells Induced by Neutrophil Adhesion
Rho-mediated Signaling in Lung Endothelial Cells Induced by Neutrophil Adhesion
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