首页> 外文会议>PSB;Pacific symposium on biocomputing; 20090105-09;20090105-09; Kohala Coast, HI(US);Kohala Coast, HI(US) >INTEGRATION OF ANGIOGENESIS MODULES AT MULTIPLE SCALES: FROM MOLECULAR TO TISSUE
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INTEGRATION OF ANGIOGENESIS MODULES AT MULTIPLE SCALES: FROM MOLECULAR TO TISSUE

机译:在多个层面上整合血管生成模块:从分子到组织

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Multiscale modeling has emerged as a powerful approach to interpret and capitalize on the biological complexity underlying blood vessel growth. We present a multiscale model of angiogenesis that heralds the start of a large scale initiative to integrate related biological models. The goal of the integrative project is to better understand underlying biological mechanisms from the molecular level up through the organ systems level, and test new therapeutic strategies. Model methodology includes ordinary and partial differential equations, stochastic models, complex logical rules, and agent-based architectures. Current modules represent blood flow, oxygen transport, growth factor distribution and signaling, cell sensing, cell movement and cell proliferation. Challenges of integration lie in connecting modules that are diversely designed, seamlessly coordinating feedback, and representing spatial and time scales from ligand-receptor interactions and intracellular signaling, to cell-level movement and cell-matrix interactions, to vessel branching and capillary network formation, to tissue level characteristics, to organ system response. We briefly introduce the individual modules, discuss our approach to integration, present initial results from the coordination of modules, and propose solutions to some critical issues facing angiogenesis multiscale modeling and integration.
机译:多尺度建模已成为一种强大的方法,可以解释和利用血管生长背后的生物复杂性。我们提出了一种血管生成的多尺度模型,预示着整合相关生物学模型的大规模计划的开始。整合项目的目标是更好地理解从分子水平到器官系统水平的潜在生物学机制,并测试新的治疗策略。模型方法论包括普通和偏微分方程,随机模型,复杂的逻辑规则和基于代理的体系结构。当前模块代表血流量,氧气运输,生长因子分布和信号传导,细胞感测,细胞运动和细胞增殖。集成面临的挑战在于连接模块的设计多样化,无缝协调反馈,并代表从配体-受体相互作用和细胞内信号传导到细胞水平运动和细胞-基质相互作用,再到血管分支和毛细血管网络形成的时空尺度,对组织水平的特征,对器官系统的反应。我们简要介绍了各个模块,讨论了集成方法,介绍了模块协调的初步结果,并提出了解决血管生成多尺度建模和集成所面临的一些关键问题的解决方案。

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