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Lessons and perspectives for applications of stochastic models in biological and cancer research

机译:在生物和癌症研究中应用随机模型的经验教训和观点

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摘要

The effects of randomness, an unavoidable feature of intracellular environments, are observed at higher hierarchical levels of living matter organization, such as cells, tissues, and organisms. Additionally, the many compounds interacting as a well-orchestrated network of reactions increase the difficulties of assessing these systems using only experiments. This limitation indicates that elucidation of the dynamics of biological systems is a complex task that will benefit from the establishment of principles to help describe, categorize, and predict the behavior of these systems. The theoretical machinery already available, or ones to be discovered to help solve biological problems, might play an important role in these processes. Here, we demonstrate the application of theoretical tools by discussing some biological problems that we have approached mathematically: fluctuations in gene expression and cell proliferation in the context of loss of contact inhibition. We discuss the methods that have been employed to provide the reader with a biologically motivated phenomenological perspective of the use of theoretical methods. Finally, we end this review with a discussion of new research perspectives motivated by our results.
机译:随机效应是细胞内环境不可避免的特征,在更高层次的生物组织(例如细胞,组织和生物)的层次上可以观察到。另外,许多化合物作为精心编排的反应网络相互作用,增加了仅使用实验评估这些系统的难度。这种局限性表明,阐明生物系统的动力学是一项复杂的任务,它将受益于建立有助于描述,分类和预测这些系统行为的原理。已经存在的理论机制,或将被发现的有助于解决生物学问题的理论机制,可能在这些过程中起着重要的作用。在这里,我们通过讨论一些我们已经用数学方法解决的生物学问题来证明理论工具的应用:在失去接触抑制的情况下基因表达的波动和细胞增殖。我们讨论了已用于为读者提供理论方法使用的生物学动机现象学观点的方法。最后,我们以讨论结果为出发点,对新的研究观点进行了讨论,从而结束了本综述。

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