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Mechanical and Systems Biology of Cancer

机译:癌症的机械和系统生物学

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Mechanics and biochemical signaling are both often deregulated in cancer, leading to increased cell invasiveness, proliferation, and survival. The dynamics and interactions of cytoskeletal components control basic mechanical properties, such as cell tension, stiffness, and engagement with the extracellular environment, which can lead to extracellular matrix remodeling. Intracellular mechanics can alter signaling and transcription factors, impacting cell decision making. Additionally, signaling from soluble and mechanical factors in the extracellular environment, such as substrate stiffness and ligand density, can modulate cytoskeletal dynamics. Computational models closely integrated with experimental support, incorporating cancer-specific parameters, can provide quantitative assessments and serve as predictive tools toward dissecting the feedback between signaling and mechanics and across multiple scales and domains in tumor progression.
机译:在癌症中,力学和生化信号均经常被放松调节,从而导致细胞侵袭性,增殖和存活率增加。细胞骨架成分的动力学和相互作用控制基本的机械性能,例如细胞张力,刚度以及与细胞外环境的结合,这可能导致细胞外基质重塑。细胞内机制可以改变信号传导和转录因子,从而影响细胞的决策。另外,来自细胞外环境中可溶性和机械因素的信号,例如底物刚度和配体密度,可以调节细胞骨架动力学。与实验支持紧密集成的计算模型,结合了特定于癌症的参数,可以提供定量评估,并可以作为预测工具,用于剖析信号和力学之间以及肿瘤进展的多个尺度和领域之间的反馈。

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