首页> 外文会议>Pacific Symposium on Biocomputing 2006 >MODELING AND SIMULATION WITH HYBRID FUNCTIONAL PETRI NETS OF THE ROLE OF INTERLEUKIN-6 IN HUMAN EARLY HAEMATOPOIESIS
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MODELING AND SIMULATION WITH HYBRID FUNCTIONAL PETRI NETS OF THE ROLE OF INTERLEUKIN-6 IN HUMAN EARLY HAEMATOPOIESIS

机译:白细胞介素6在人类早期造血中的作用的混合功能Petri网建模与仿真

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The regulation of human haematopoiesis is a complex biological system with numerous interdependent processes. In vivo Haematopoietic Stem Cells (HSCs) self-renew so as to maintain a constant pool of these cells. It would be very interesting to maintain these cells in vitro, in view of their therapeutical importance. Unfortunately, there is currently no known process to activate HSCs self-renewal in vitro.Since the difficulties related to in vitro experiments, modeling and simulating this process is indispensable. Moreover, the complexity of haematopoiesis makes it necessary to integrate various functionalities: both discrete and continuous models as well as consumption and production of resources. We thus focus on the use of Hybrid Functional Petri Nets, which offer a number of features and flexibility. We begin by modeling and simulating the role of a specific cytokine, interleukin-6, in the regulation of early haematopoiesis. Results obtained in silico lead to the disappearence of HSCs, which is in agreement with in vitro results.
机译:人类造血功能的调节是一个复杂的生物系统,具有许多相互依赖的过程。体内造血干细胞(HSC)自我更新,以保持这些细胞的恒定池。考虑到它们的治疗重要性,在体外维持这些细胞将是非常有趣的。不幸的是,目前尚无体外激活HSCs自我更新的已知方法。由于与体外实验有关的困难,因此建模和模拟此过程是必不可少的。此外,造血的复杂性使得必须集成各种功能:离散和连续模型以及资源的消耗和生产。因此,我们专注于使用混合功能Petri网,它具有许多功能和灵活性。我们首先通过建模和模拟特定细胞因子白介素6在早期造血过程中的作用。通过计算机获得的结果导致HSC消失,这与体外结果一致。

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