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首页> 外文期刊>Acta biomaterialia >Anisotropic stiffness gradient-regulated mechanical guidance drives directional migration of cancer cells
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Anisotropic stiffness gradient-regulated mechanical guidance drives directional migration of cancer cells

机译:各向异性僵硬梯度调节的机械引导驱动癌细胞的定向迁移

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Interfacial interactions between cancer cells and surrounding microenvironment involve complex mechanotransduction mechanisms that are directly associated with tumor invasion and metastasis. Matrix remodeling triggers heterogeneity of stiffness in tumor microenvironment and thus generates anisotropic stiffness gradient (ASG). The migration of cancer cells mediated by ASG, however, still remains elusive. Based on a multi-layer polymerization method of microstructured hydrogels with surface topology, we develop an in vitro experimental platform for mechanical interactions of cancer cells with ASG matrix microenvironment. We show that mechanical guidance of mesenchymal cells is essentially modulated by ASG, leading to a spontaneous directional migration along the orientation parallel to the maximum stiffness although there is no stiffness gradient in the direction. The ASG-regulated mechanical guidance presents an alternative way of cancer cell directional migration. Further, our findings indicate that the mechanical guidance occurs only in mesenchymal cancer cells, but not in epithelial cancer cells, implying that cell contractility may contribute to ASG-regulated migration of cells. This work is not only helpful for elucidating the role of matrix remodeling in mediating tumor cell invasion and metastasis, but has potential implications for developing specific cancer treatments.
机译:癌细胞和周围微环境之间的界面相互作用涉及与肿瘤侵袭和转移直接相关的复杂机电机构机制。基质重塑触发肿瘤微环境中刚度的异质性,从而产生各向异性刚度梯度(ASG)。然而,由ASG介导的癌细胞迁移仍然是难以捉摸的。基于具有表面拓扑结构的微结构化水凝胶的多层聚合方法,我们开发了ASG基质微环境的癌细胞机械相互作用的体外实验平台。我们表明间充质细胞的机械引导基本上由ASG调节,导致沿着平行于最大刚度的方向的自发定向迁移,尽管在方向上没有刚度梯度。 ASG调节的机械指导呈现了癌细胞定向迁移的另一种方式。此外,我们的研究结果表明,仅在间充质癌细胞中发生的机械引导,但不在上皮癌细胞中发生,这意味着细胞收缩性可能有助于细胞的ASG调节迁移。这项工作不仅有助于阐明基质重塑在介导肿瘤细胞侵袭和转移中的作用,但对发展特异性癌症治疗具有潜在的影响。

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