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Mathematical modeling of multiple pathways in colorectal carcinogenesis using dynamical systems with Kronecker structure

机译:快速致癌作用动力学系统与大肠病癌中多路径的数学建模

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Like many other types of cancer, colorectal cancer (CRC) develops through multiple pathways of carcinogenesis. This is also true for colorectal carcinogenesis in Lynch syndrome (LS), the most common inherited CRC syndrome. However, a comprehensive understanding of the distribution of these pathways of carcinogenesis, which allows for tailored clinical treatment and even prevention, is still lacking. We suggest a linear dynamical system modeling the evolution of different pathways of colorectal carcinogenesis based on the involved driver mutations. The model consists of different components accounting for independent and dependent mutational processes. We define the driver gene mutation graphs and combine them using the Cartesian graph product. This leads to matrix components built by the Kronecker sum and product of the adjacency matrices of the gene mutation graphs enabling a thorough mathematical analysis and medical interpretation. Using the Kronecker structure, we developed a mathematical model which we applied exemplarily to the three pathways of colorectal carcinogenesis in LS. Beside a pathogenic germline variant in one of the DNA mismatch repair (MMR) genes, driver mutations in APC, CTNNB1, KRAS and TP53 are considered. We exemplarily incorporate mutational dependencies, such as increased point mutation rates after MMR deficiency, and based on recent experimental data, biallelic somatic CTNNB1 mutations as common drivers of LS-associated CRCs. With the model and parameter choice, we obtained simulation results that are in concordance with clinical observations. These include the evolution of MMR-deficient crypts as early precursors in LS carcinogenesis and the influence of variants in MMR genes thereon. The proportions of MMR-deficient and MMR-proficient APC-inactivated crypts as first measure for the distribution among the pathways in LS-associated colorectal carcinogenesis are compatible with clinical observations. The approach provides a modular framework for modeling multiple pathways of carcinogenesis yielding promising results in concordance with clinical observations in LS CRCs.
机译:与许多其他类型的癌症一样,结直肠癌(CRC)通过致癌作用的多种途径发展。这对于林奇综合征(LS)中的结肠直肠癌,最常见的遗传性CRC综合征也是如此。然而,综合了解这些致癌性途径的分布,这仍然缺乏定制临床治疗甚至预防。我们建议基于涉及的驾驶员突变模拟着模拟结直肠癌不同途径的演变的线性动力系统。该模型由不同的组件组成,用于独立和依赖的突变过程。我们定义了驾驶员基因突变图,并使用笛卡尔图产品组合它们。这导致由基因突变图表的邻接矩阵的kronecker和和乘积构建的矩阵组件,其能够彻底的数学分析和医学解释。使用Kronecker结构,我们开发了一种数学模型,我们示例性地应用于LS中的结肠直肠癌的三种途径。除了DNA失配修复(MMR)基因之一中的致病种系变体旁边,考虑APC,CTNNB1,KRAS和TP53中的驾驶员突变。我们示例性地掺入了突变依赖性,例如MMR缺乏后的增加的点突变率,并且基于最近的实验数据,双挠性体细胞CTNNB1突变作为LS相关CRC的常见驱动器。通过模型和参数选择,我们获得了与临床观察一致的仿真结果。这些包括MMR缺陷型隐窝作为LS致癌的早期前体的演变及其在其上MMR基因中的变体的影响。 MMR缺陷和MMR型易于灭活的隐窝的比例作为LS-相关结直肠癌发生的途径中分布的第一措施与临床观察相容。该方法提供了一种模块化框架,用于建模致癌癌的多种途径,其有前途的结果在LS CRC中的临床观察中有一种一致性。

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