Roy Choudhury Ankit, Gupta Surabhi, Chaturvedi Pradeep Kumar, Kumar Neeraj, Pandey Deepak
Department of Reproductive Biology, All India Institute of Medical Sciences, Ansari Nagar, New Delhi, 110029, India.
Cancer Microenviron. 2019 Apr;12(1):17-27. doi: 10.1007/s12307-019-00222-4. Epub 2019 Apr 19.
Though the existence of cancer stem cells remained enigmatic initially, over the time their participation in tumorigenesis and tumor progression has become highly evident. Today, they are also appreciated as the causal element for tumor heterogeneity and drug-resistance. Cancer stem cells activate a set of molecular pathways some of which are triggered by the unique mechanical properties of the tumor tissue stroma. A relatively new field called mechanobiology has emerged, which aims to critically evaluate the mechanical properties associated with biological events like tissue morphogenesis, cell-cell or cell-matrix interactions, cellular migration and also the development and progression of cancer. Development of more realistic model systems and biophysical instrumentation for observation and manipulation of cell-dynamics in real-time has invoked a hope for some novel therapeutic modalities against cancer in the future. This review discusses the fundamental concepts of cancer stem cells from an intriguing viewpoint of mechanobiology and some important breakthroughs to date.
尽管癌症干细胞的存在最初仍不为人所知,但随着时间的推移,它们在肿瘤发生和肿瘤进展中的作用已变得非常明显。如今,它们也被视为肿瘤异质性和耐药性的成因。癌症干细胞激活了一组分子途径,其中一些是由肿瘤组织基质的独特力学特性触发的。一个名为机械生物学的相对较新的领域已经出现,其旨在严格评估与诸如组织形态发生、细胞-细胞或细胞-基质相互作用、细胞迁移以及癌症的发生和进展等生物学事件相关的力学特性。开发更逼真的模型系统和用于实时观察和操纵细胞动力学的生物物理仪器,为未来一些针对癌症的新型治疗方法带来了希望。本综述从机械生物学这一有趣的角度讨论了癌症干细胞的基本概念以及迄今为止的一些重要突破。