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Computational Simulation Of Networks Dynamics In Cancer Cell Adhesion

机译:网络动力学在癌细胞粘附中的计算仿真

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In this work, we analyze different cell signaling pathways associated with cell adhesion processes altered by cancer, we represent the interaction of different proteins involved in these processes of cell adhesion, as a result of mechanisms of activation, overexpression and regulation. These interactions are characterized by their complexity but the use of computational tools allows to better understand the signaling dynamics in cells affected by cancer. The objective of this work was to develop an computational simulation of several signaling pathways involved in cell adhesion in cancer. Software was used to simulate the signaling cascade with KAF proteins, integrins, cadherins and growth factors, which regulate cancer progression mechanisms. In addition, the interaction of 34 of these types of proteins was represented through graphs, finally obtaining the relevance of those proteins that establish more interactions, indicating their high activity in cell adhesion mechanisms in cancer and enhancing their possibility of becoming targets for therapeutic treatment in cancer.
机译:在这项工作中,我们分析了与癌症改变的细胞黏附过程相关的不同细胞信号通路,我们代表了参与活化,过度表达和调节机制的这些细胞黏附过程中涉及的不同蛋白质之间的相互作用。这些相互作用的特点是复杂性,但使用计算工具可以更好地了解受癌症影响的细胞中的信号传导动态。这项工作的目的是开发一种与癌症细胞粘附有关的几种信号通路的计算机模拟。软件用于模拟与KAF蛋白,整联蛋白,钙粘着蛋白和生长因子的信号传导级联,调节癌症的进展机制。此外,通过图形表示了34种这类蛋白质的相互作用,最终获得了建立更多相互作用的蛋白质的相关性,表明它们在癌症的细胞粘附机制中具有很高的活性,并增强了它们成为治疗靶标的可能性。癌症。

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