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Qualitative modelling and analysis of the regulatory network of indoleamine 2, 3-dioxygenase in tumour immune escape

机译:吲哚胺2,3-二加氧酶在肿瘤免疫逃逸中调控网络的定性建模与分析

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Immune escape is a critical gateway to malignancy; it is recently discovered that Indoleamine 2, 3 Dioxygenase (IDO) is involved in suppressing T-cell immunity in pathological settings including cancer. The modeling of the biological regulatory networks (BRNs) using kinetic logics of René Thomas, a well-known and powerful approach for modeling formalism, helps in understanding their dynamical behaviors. This paper presents the dynamic behaviors of the IDO related BRN. The sustained production after tumor invasion is detrimental which is shown as a stable steady state in the results. The homeostasis of IDO and T cell mediated immune regulation in the body, which is responsible for suppressing the tumor by controlling IDO activation, is shown by a qualitative cycle.
机译:免疫逃逸是通往恶性肿瘤的关键途径。最近发现,吲哚胺2、3双加氧酶(IDO)在包括癌症在内的病理环境中参与抑制T细胞免疫。使用RenéThomas的动力学逻辑对生物调节网络(BRN)进行建模,这是一种著名的,强大的形式化建模方法,有助于理解其动力学行为。本文介绍了IDO相关BRN的动态行为。肿瘤侵袭后的持续产生是有害的,结果显示为稳定的稳定状态。定性循环显示了IDO和T细胞介导的体内免疫调节的稳态,其通过控制IDO的活化​​来抑制肿瘤。

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