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利用与刚度和形态相关的细胞黏附调控乳腺癌细胞命运的工程化三维支架

Engineered Three-Dimensional Scaffolds Modulating Fate of Breast Cancer Cells Using Stiffness and Morphology Related Cell Adhesion.

作者信息

Hanumantharao Samerender N, Que Carolynn A, Vogl Brennan J, Rao Smitha

机构信息

Michigan Technological University Houghton MI 49931 USA.

Department of Biomedical EngineeringMichigan Technological University Houghton MI 49931 USA.

出版信息

IEEE Open J Eng Med Biol. 2020 Feb 14;1:41-48. doi: 10.1109/OJEMB.2020.2965084. eCollection 2020.

Abstract

Artificially engineering the tumor microenvironment as a vital tool for understanding the mechanism of tumor progression. In this study, we developed three-dimensional cell scaffold systems with different topographical features and mechanical properties but similar surface chemistry. The cell behavior was modulated by the topography and mechanical properties of the scaffold. Adenocarcinoma (MCF7), triple-negative (MDA-MB-231) and premalignant (MCF10AneoT) breast cancer cells were seeded on the scaffold systems. The cell viability, cell-cell interaction and cell-matrix interactions were analyzed. The preferential growth and alignment of specific population of cells were demonstrated. Among the different scaffolds, triple-negative breast cancer cells preferred honeycomb scaffolds while adenocarcinoma cells favored mesh scaffolds and premalignant cells preferred the aligned scaffolds. The 3D model system developed here can be used to support growth of only specific cell populations or for the growth of tumors. This model can be used for understanding the topographical and mechanical features affecting tumorigenesis, cancer cell growth and migration behavior of malignant and metastatic cancer cells.

摘要

人工构建肿瘤微环境作为理解肿瘤进展机制的重要工具。在本研究中,我们开发了具有不同拓扑特征和力学性能但表面化学性质相似的三维细胞支架系统。细胞行为受到支架的拓扑结构和力学性能的调节。将腺癌(MCF7)、三阴性(MDA-MB-231)和癌前(MCF10AneoT)乳腺癌细胞接种在支架系统上。分析了细胞活力、细胞间相互作用和细胞与基质的相互作用。证明了特定细胞群体的优先生长和排列。在不同的支架中,三阴性乳腺癌细胞更喜欢蜂窝状支架,而腺癌细胞更喜欢网状支架,癌前细胞更喜欢排列好的支架。这里开发的三维模型系统可用于支持仅特定细胞群体的生长或肿瘤的生长。该模型可用于理解影响肿瘤发生、癌细胞生长以及恶性和转移性癌细胞迁移行为的拓扑和力学特征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/04a4/8979620/25f18b50280d/rao1-2965084.jpg

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