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首页> 外文期刊>Journal of Theoretical Biology >A stochastic individual-based model to explore the role of spatial interactions and antigen recognition in the immune response against solid tumours
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A stochastic individual-based model to explore the role of spatial interactions and antigen recognition in the immune response against solid tumours

机译:一种随机的基于个体的模型,用于探讨空间相互作用和抗原识别在对实体瘤的免疫应答中的作用

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摘要

Spatial interactions between cancer and immune cells, as well as the recognition of tumour antigens by cells of the immune system, play a key role in the immune response against solid tumours. The existing mathematical models generally focus only on one of these key aspects. We present here a spatial stochastic individual-based model that explicitly captures antigen expression and recognition. In our model, each cancer cell is characterised by an antigen profile which can change over time due to either epimutations or mutations. The immune response against the cancer cells is initiated by the dendritic cells that recognise the tumour antigens and present them to the cytotoxic T cells. Consequently, T cells become activated against the tumour cells expressing such antigens. Moreover, the differences in movement between inactive and active immune cells are explicitly taken into account by the model. Computational simulations of our model clarify the conditions for the emergence of tumour clearance, dormancy or escape, and allow us to assess the impact of antigenic heterogeneity of cancer cells on the efficacy of immune action. Ultimately, our results highlight the complex interplay between spatial interactions and adaptive mechanisms that underpins the immune response against solid tumours, and suggest how this may be exploited to further develop cancer immunotherapies. (C) 2019 Elsevier Ltd. All rights reserved.
机译:癌症和免疫细胞之间的空间相互作用,以及免疫系统细胞的肿瘤抗原的识别,对实体瘤的免疫应答起着关键作用。现有数学模型通常仅关注这些关键方面的一个。我们在这里介绍一种空间随机的个体基础模型,明确地捕获抗原表达和识别。在我们的模型中,每个癌细胞的特征在于抗原型材,其由于缩样或突变而随时间而变化。对癌细胞的免疫应答由识别肿瘤抗原的树突细胞引发并将它们呈现给细胞毒性T细胞。因此,T细胞对表达这种抗原的肿瘤细胞激活。此外,模型明确考虑无活性和活性免疫细胞之间的运动的差异。我们模型的计算模拟阐明了肿瘤间隙,休眠或逃逸的出现的条件,并允许我们评估癌细胞抗原异质性对免疫作用的疗效的影响。最终,我们的结果突出了空间相互作用与适应机制之间的复杂相互作用,使免疫应答对固体瘤的免疫应答,并表明如何利用这种方式来进一步发展癌症免疫治疗。 (c)2019年elestvier有限公司保留所有权利。

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