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APS -APS March Meeting 2017 - Event - Effects of geometry and cell-matrix interactions on the mechanics of 3D engineered microtissues

机译:APS -APS 2017年3月会议-活动-几何形状和细胞-基质相互作用对3D工程微组织力学的影响

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Approaches to measure and control cell-extracellular matrix (ECM) interactions in a dynamic mechanical environment are important both for studies of mechanobiology and for tissue design for bioengineering applications. We have developed a microtissue-based platform capable of controlling the ECM alignment of 3D engineered microtissues while simultaneously permitting measurement of cellular contractile forces and the tissues' mechanical properties. The tissues self-assemble from cell-laden collagen gels placed in micro-fabricated wells containing sets of flexible elastic pillars. Tissue geometry and ECM alignment are controlled by the pillars' number, shape and location. Optical tracking of the pillars provides readout of the tissues' contractile forces. Magnetic materials bound to selected pillars allow quasi-static or dynamic stretching of the tissue, and together with simultaneous measurements of the tissues' local dynamic strain field, enable characterization of the mechanical properties of the system, including their degree of anisotropy. Results on the effects of symmetry and degree of ECM alignment and organization on the role of cell-ECM interactions in determining tissue mechanical properties will be discussed.
机译:在动态机械环境中测量和控制细胞-细胞外基质(ECM)相互作用的方法对于机械生物学的研究以及生物工程应用的组织设计均很重要。我们已经开发了一种基于微组织的平台,该平台能够控制3D工程微组织的ECM对齐方式,同时允许测量细胞收缩力和组织的机械性能。这些组织是由装有细胞的胶原蛋白凝胶自组装而成的,这些凝胶蛋白凝胶放置在微加工的孔中,该孔中包含一组柔性弹性柱。组织的几何形状和ECM对齐方式由支柱的数量,形状和位置控制。支柱的光学跟踪可读取组织的收缩力。绑定到选定支柱的磁性材料允许组织进行准静态或动态拉伸,并同时测量组织的局部动态应变场,从而能够表征系统的机械性能,包括其各向异性程度。将讨论对称性和ECM对齐程度以及组织对细胞-ECM相互作用在决定组织机械特性中的作用的影响的结果。

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