首页> 外文期刊>Annals of Biomedical Engineering: The Journal of the Biomedical Engineering Society >Mechanical interactions of mouse mammary gland cells with collagen in a three-dimensional construct.
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Mechanical interactions of mouse mammary gland cells with collagen in a three-dimensional construct.

机译:三维结构中小鼠乳腺细胞与胶原蛋白的机械相互作用。

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摘要

An effort to understand the development of breast cancer motivates the study of mammary gland cells and their interactions with the extracellular matrix. A mixture of mammary gland epithelial cells (normal murine mammary gland), collagen, and fluorescent beads was loaded into microchannels and observed via four-dimensional imaging. Collagen concentrations of 1.3, 2, and 3 mg/mL were used. The displacements of the beads were used to calculate strains in the 3D matrix. To ensure physiologically relevant materials properties for analysis, the collagen was characterized using independent tensile testing with strain rates in the range of those measured in the cell-gel constructs. 3D elastic theory for an isotropic material was employed to calculate the stress. The technique presented adds to the field of measuring cell-generated stresses by providing the capability of measuring 3D stresses locally around a single cell and using physiologically relevant materials properties for analysis. The highest strains were observed in the most compliant matrix. Additionally, the stresses fluctuated over time due to the cells' interaction with the collagen matrix.
机译:努力了解乳腺癌的发展促使人们对乳腺细胞及其与细胞外基质的相互作用进行研究。将乳腺上皮细胞(正常鼠乳腺),胶原蛋白和荧光珠的混合物加载到微通道中,并通过三维成像进行观察。使用的胶原蛋白浓度为1.3、2和3 mg / mL。珠的位移用于计算3D矩阵中的应变。为了确保生理学上相关的材料特性进行分析,使用独立的拉伸测试对胶原蛋白进行了表征,应变率的范围在细胞凝胶构建体中测量。各向同性材料的3D弹性理论用于计算应力。所提供的技术通过提供在单个细胞周围局部测量3D应力并使用生理相关的材料属性进行分析的能力,增加了测量细胞产生的应力的领域。在最顺应的基质中观察到最高的应变。另外,由于细胞与胶原基质的相互作用,应力随时间波动。

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