间充质干细胞
刚度
微通道
肿瘤微环境
癌细胞
纳米技术
细胞迁移
癌症转移
化学
生物物理学
材料科学
细胞
癌症
细胞生物学
肿瘤细胞
癌症研究
生物
复合材料
生物化学
遗传学
作者
Meng Wang,Bo Cheng,Yaowei Yang,Han Liu,Guoyou Huang,Lichun Han,Fei Li,Feng Xu
出处
期刊:Nano Letters
[American Chemical Society]
日期:2019-08-15
卷期号:19 (9): 5949-5958
被引量:82
标识
DOI:10.1021/acs.nanolett.9b01597
摘要
The physical confinement of cell microenvironment could enhance the invasive capability and drug resistance of cancer cells. However, due to the lack of in vitro experimental platform to mimic both stiffness and confinement of the tumor microenvironment, the underlying mechanism remains elusive. Here, we developed a hydrogel-based microchannel platform with independently tunable channel stiffness and width in a physiological range. We found that the migration speed of the cancer cell is influenced by the synergistic effect of channel stiffness and width. In addition, the mesenchymal-amoeboid transition has a strong correlation with the channel stiffness. Besides, with a developed computational model, the role of nuclear stiffness on cancer migration speed and thus the mesenchymal-amoeboid transition in microchannels was also revealed. This platform is capable of mimicking the native physical microenvironment during metastasis, providing a powerful tool for high-throughput screening applications and investigating the interaction between cancer migration and biophysical microenvironment.
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