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肿瘤生长的机械生物学

Mechanobiology of Tumor Growth.

机构信息

Mechanobiology Institute , National University of Singapore , 5A Engineering Drive 1, Level 9 , Singapore 117411 , Singapore.

Department of Biomedical Engineering , Columbia University , New York , New York 10027 , United States.

出版信息

Chem Rev. 2018 Jul 25;118(14):6499-6515. doi: 10.1021/acs.chemrev.8b00042. Epub 2018 Jun 21.

Abstract

Over the past decade, researchers have highlighted the importance of mechanical cues of the metastatic niche such as matrix stiffness, topography, mechanical stresses, and deformation on cells in influencing tumor growth and proliferation. Understanding the cellular and molecular basis and fine-tuning the mechano-response of cancer cells to this niche could lead to new and novel therapeutic interventions. In this review, we discuss the importance of mechanical cues surrounding tumor microenvironment that govern the growth and progression of cancer. We also highlight some emergent principles underlying the mechanosensing and mechanotransduction mechanisms that link cellular responses such as gene expression to phenotypic changes arising from such external cues. Recent technological advancements to visualize, quantify, model, and test these crucial steps with great precision will further advance our understanding of this phenomenon. We will conclude by showcasing potential applications of mechanobiology in controlling cancer growth as alternative cancer treatment regimes.

摘要

在过去的十年中,研究人员强调了转移性生态位的机械线索的重要性,例如基质硬度、形貌、机械应力和细胞变形,这些都能影响肿瘤的生长和增殖。了解细胞和分子基础,并精细调整癌细胞对这种生态位的机械反应,可能会带来新的治疗干预措施。在这篇综述中,我们讨论了肿瘤微环境周围的机械线索对癌症生长和进展的重要性。我们还强调了一些新兴的原则,这些原则是机械感知和机械转导机制的基础,这些机制将基因表达等细胞反应与来自这些外部线索的表型变化联系起来。最近在可视化、量化、建模和精确测试这些关键步骤方面的技术进步将进一步加深我们对这一现象的理解。最后,我们将展示在控制癌症生长方面,机械生物学作为一种替代癌症治疗方案的潜在应用。

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