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APS -APS March Meeting 2017 - Event - Contractile recovery of microtissues after giant shear events

机译:APS -APS 2017年3月会议-事件-巨大剪切事件后微组织的收缩恢复

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Cells are often dispersed in extracellular matrix (ECM) gels like collagen and Matrigel as minimal tissue models. Generally, large-scale contraction of these constructs is observed, in which the degree of contraction of the entire system correlates with cell density and ECM concentration. The freedom to perform diverse mechanical experiments on these contracting constructs is limited by the challenges of handling and supporting these delicate samples. Here, we present a method to create simple cell-ECM constructs that can be manipulated with significantly reduced experimental limitations. We 3D print mixtures of MCF10A cells and ECM (collagen-I and Matrigel) into a 3D growth medium made from jammed microgels. With this approach, we are able to apply shear stresses to the cell constructs times after printing and observe the collective response. Preliminary results reveal that, following shear deformations that exceed 300{%} and dramatically smear cells and matrix in space, the cells actively re-contract the construct toward the un-sheared construct. These results suggest that new principles of collective recovery can be employed for tissue engineering applications using jammed microgels as a re-configurable support medium.
机译:细胞通常作为最小的组织模型分散在诸如胶原蛋白和基质胶的细胞外基质(ECM)凝胶中。通常,观察到这些构建体的大规模收缩,其中整个系统的收缩程度与细胞密度和ECM浓度相关。在这些收缩结构上执行各种机械实验的自由受到处理和支持这些精密样品的挑战的限制。在这里,我们提出了一种创建简单的细胞ECM构建体的方法,该方法可以在大大减少实验限制的情况下进行操作。我们将MCF10A细胞和ECM(胶原蛋白I和基质胶)的混合物3D打印到由堵塞的微凝胶制成的3D生长培养基中。通过这种方法,我们能够在打印后向细胞构建体施加剪切应力,并观察集体反应。初步结果表明,在超过300 {%}的剪切变形和在空间中显着涂抹细胞和基质后,细胞会主动将构建体重新收缩为未剪切的构建体。这些结果表明,使用堵塞的微凝胶作为可重构载体介质,可以将新的集体回收原理用于组织工程应用。

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