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首页> 外文期刊>Journal of the Royal Society Interface >Uncovering the underlying mechanism of cancer tumorigenesis and development under an immune microenvironment from global quantification of the landscape
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Uncovering the underlying mechanism of cancer tumorigenesis and development under an immune microenvironment from global quantification of the landscape

机译:从景观全球量化揭开免疫微环境下癌症肿瘤发生和发育的潜在机制

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The study of the cancer-immune system is important for understanding tumorigenesis and the development of cancer and immunotherapy. In this work, we build a comprehensive cancer-immune model including both cells and cytokines to uncover the underlying mechanism of cancer immunity based on landscape topography. We quantify three steady-state attractors, normal state, low cancer state and high cancer state, for the innate immunity and adaptive immunity of cancer. We also illustrate the cardinal inhibiting cancer immunity interactions and promoting cancer immunity interactions through global sensitivity analysis. We simulate tumorigenesis and the development of cancer and classify these into six stages. The characteristics of the six stages can be classified further into three groups. These correspond to the escape, elimination and equilibrium phases in immunoediting, respectively. Under specific cell-cell interactions strength oscillations emerge. We found that tumorigenesis and cancer recovery processes may need to go through cancer-immune oscillation, which consumes more energy. Based on the cancer-immune landscape, we predict three types of cells and two types of cytokines for cancer immunotherapy as well as combination immunotherapy. This landscape framework provides a quantitative way to understand the underlying mechanisms of the interplay between cancer and the immune system for cancer tumorigenesis and development.
机译:癌症免疫系统的研究对于了解肿瘤引发和癌症和免疫疗法的发展是重要的。在这项工作中,我们建立了一种综合性癌症免疫模型,包括细胞和细胞因子,以根据景观地形揭示癌症免疫的潜在机制。我们量化了三种稳态吸引子,正常状态,低癌症状态和高癌症状态,用于癌症的先天免疫和适应性免疫。我们还通过全局敏感性分析说明了基本抑制癌症免疫相互作用和促进癌症免疫相互作用。我们模拟肿瘤发生和癌症的发展,并将这些分为六个阶段。六个阶段的特征可以进一步分为三组。这些分别对应于免疫分别的逃逸,消除和平衡阶段。在特定的细胞间相互作用强度振荡出现。我们发现肿瘤鉴定和癌症回收过程可能需要通过癌症免疫振荡,这消耗更多的能量。基于癌症免疫景观,我们预测三种类型的细胞和两种类型的癌症免疫疗法细胞因子以及组合免疫疗法。这种景观框架提供了了解癌症和免疫系统之间相互作用的潜在机制提供了定量方法。

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