Systems Biology of Cancer Metastasis.

Yasir Suhail, Margo P Cain, Kiran Vanaja, Paul A Kurywchak, Andre Levchenko, Raghu Kalluri, Kshitiz
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Abstract

Cancer metastasis is no longer viewed as a linear cascade of events but rather as a series of concurrent, partially overlapping processes, as successfully metastasizing cells assume new phenotypes while jettisoning older behaviors. The lack of a systemic understanding of this complex phenomenon has limited progress in developing treatments for metastatic disease. Because metastasis has traditionally been investigated in distinct physiological compartments, the integration of these complex and interlinked aspects remains a challenge for both systems-level experimental and computational modeling of metastasis. Here, we present some of the current perspectives on the complexity of cancer metastasis, the multiscale nature of its progression, and a systems-level view of the processes underlying the invasive spread of cancer cells. We also highlight the gaps in our current understanding of cancer metastasis as well as insights emerging from interdisciplinary systems biology approaches to understand this complex phenomenon.

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癌症转移的系统生物学。
癌症转移不再被视为一系列线性的事件,而是一系列同时发生的、部分重叠的过程,因为成功转移的细胞呈现出新的表型,同时放弃了旧的行为。对这一复杂现象缺乏系统的了解,限制了转移性疾病治疗的进展。由于转移传统上是在不同的生理区室中进行研究的,因此这些复杂且相互关联的方面的整合对于转移的系统级实验和计算建模来说仍然是一个挑战。在这里,我们介绍了一些关于癌症转移复杂性的最新观点,其进展的多尺度性质,以及癌症细胞侵袭性扩散过程的系统级观点。我们还强调了我们目前对癌症转移的理解存在的差距,以及跨学科系统生物学方法对理解这一复杂现象的见解。
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