Nallanthighal Sameera, Heiserman James Patrick, Cheon Dong-Joo
Department of Regenerative and Cancer Cell Biology, Albany Medical College, Albany, NY, United States.
Front Cell Dev Biol. 2019 Jul 5;7:86. doi: 10.3389/fcell.2019.00086. eCollection 2019.
As our understanding of cancer cell biology progresses, it has become clear that tumors are a heterogenous mixture of different cell populations, some of which contain so called "cancer stem cells" (CSCs). Hallmarks of CSCs include self-renewing capability, tumor-initiating capacity and chemoresistance. The extracellular matrix (ECM), a major structural component of the tumor microenvironment, is a highly dynamic structure and increasing evidence suggests that ECM proteins establish a physical and biochemical niche for CSCs. In cancer, abnormal ECM dynamics occur due to disrupted balance between ECM synthesis and secretion and altered expression of matrix-remodeling enzymes. Tumor-derived ECM is biochemically distinct in its composition and is stiffer compared to normal ECM. In this review, we will provide a brief overview of how different components of the ECM modulate CSC properties then discuss how physical, mechanical, and biochemical cues from the ECM drive cancer stemness. Given the fact that current CSC targeting therapies face many challenges, a better understanding of CSC-ECM interactions will be crucial to identify more effective therapeutic strategies to eliminate CSCs.
随着我们对癌细胞生物学的理解不断深入,肿瘤是不同细胞群体的异质混合物这一点已变得清晰,其中一些细胞群体包含所谓的“癌症干细胞”(CSCs)。癌症干细胞的特征包括自我更新能力、肿瘤起始能力和化学抗性。细胞外基质(ECM)是肿瘤微环境的主要结构成分,是一种高度动态的结构,越来越多的证据表明,细胞外基质蛋白为癌症干细胞建立了一个物理和生化微环境。在癌症中,由于细胞外基质合成与分泌之间的平衡被打破以及基质重塑酶的表达改变,导致细胞外基质出现异常动态变化。肿瘤来源的细胞外基质在组成上具有生化差异,并且比正常细胞外基质更硬。在本综述中,我们将简要概述细胞外基质的不同成分如何调节癌症干细胞的特性,然后讨论来自细胞外基质的物理、机械和生化信号如何驱动癌症干性。鉴于目前针对癌症干细胞的治疗面临诸多挑战,更好地理解癌症干细胞与细胞外基质的相互作用对于确定更有效的消除癌症干细胞的治疗策略至关重要。