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Physical Biology in Cancer. 4. Physical cues guide tumor cell adhesion and migration

机译:癌症中的物理生物学。 4.物理提示指导肿瘤细胞的粘附和迁移

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摘要

As tumor cells metastasize from the primary tumor location to a distant secondary site, they encounter an array of biologically and physically heterogeneous microenvironments. While it is well established that biochemical signals guide all stages of the metastatic cascade, mounting evidence indicates that physical cues also direct tumor cell behavior, including adhesion and migration phenotypes. Physical cues acting on tumor cells in vivo include extracellular matrix mechanical properties, dimensionality, and topography, as well as interstitial flow, hydrodynamic shear stresses, and local forces due to neighboring cells. State-of-the-art technologies have recently enabled us and other researchers to engineer cell microenvironments that mimic specific physical properties of the cellular milieu. Through integration of these engineering strategies, along with physics, molecular biology, and imaging techniques, we have acquired new insights into tumor cell adhesion and migration mechanisms. In this review, we focus on the extravasation and invasion stages of the metastatic cascade. We first discuss the physical role of the endothelium during tumor cell extravasation and invasion and how contractility of endothelial and tumor cells contributes to the ability of tumor cells to exit the vasculature. Next, we examine how matrix dimensionality and stiffness coregulate tumor cell adhesion and migration beyond the vasculature. Finally, we summarize how tumor cells translate and respond to physical cues through mechanotransduction. Because of the critical role of tumor cell mechanotransduction at various stages of the metastatic cascade, targeting signaling pathways involved in tumor cell mechanosensing of physical stimuli may prove to be an effective therapeutic strategy for cancer patients.
机译:随着肿瘤细胞从原发肿瘤位置转移到遥远的继发部位,它们会遇到一系列生物学和物理上异质的微环境。虽然已经确定生化信号指导转移级联的所有阶段,但越来越多的证据表明,物理线索还指导肿瘤细胞的行为,包括粘附和迁移表型。在体内作用于肿瘤细胞的物理提示包括细胞外基质的机械性能,尺寸和形貌,以及间隙流动,流体动力剪切应力和由于邻近细胞引起的局部力。最近,最先进的技术使我们和其他研究人员能够设计出模仿细胞环境特定物理特性的细胞微环境。通过整合这些工程策略以及物理学,分子生物学和成像技术,我们获得了对肿瘤细胞粘附和迁移机制的新见解。在这篇综述中,我们关注转移级联的外渗和侵袭阶段。我们首先讨论内皮细胞在肿瘤细胞外渗和侵袭中的物理作用,以及内皮细胞和肿瘤细胞的收缩力如何促进肿瘤细胞离开脉管系统的能力。接下来,我们检查矩阵尺寸和刚度如何使肿瘤细胞的粘附和迁移超出脉管系统。最后,我们总结了肿瘤细胞如何通过机械转导翻译并响应物理提示。由于肿瘤细胞机械转导在转移级联的各个阶段的关键作用,靶向参与物理刺激的肿瘤细胞机械感测的信号通路可能被证明是癌症患者的有效治疗策略。

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