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MICROFLUIDIC DEVICE FOR SPATIAL CONTROL OF CELL SEEDING IN ENGINEERED TISSUES

机译:用于空间控制工程组织中细胞播种的微流控装置

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In vivo tissues have finely controlled hierarchical structure that is often difficult to mimic in vitro. Microfabrication techniques, such as microcontact printing, can be used to reproduce tissue structure in vitro by controlling cell shape and orientation. Several recent results suggest that cellular organization and structure can influence tissue function in engineered tissues. For example, using microcontact printing and muscular thin film technology, we recently demonstrated that engineered vascular tissues whose smooth muscle cells possessed more elongated spindle-like geometries, similar to in vivo structure, exhibited more physiological contractile function. In these studies, cells were seeded using traditional imprecise seeding methods. But recent results have shown that cell-cell coupling plays a significant role in functional contractility, suggesting that not only cellular geometry, but cell-cell organization, within a tissue is important to reproduce in engineered tissues to mimic in vivo function.
机译:体内组织具有精细控制的层次结构,通常很难在体外模拟。诸如微接触印刷的微细加工技术可用于通过控制细胞的形状和方向在体外复制组织结构。最近的一些结果表明,细胞的组织和结构可以影响工程组织中的组织功能。例如,使用微接触印刷和肌肉薄膜技术,我们最近证明了工程血管组织,其平滑肌细胞具有更细长的纺锤状几何形状,类似于体内结构,表现出更多的生理收缩功能。在这些研究中,使用传统的不精确播种方法播种细胞。但是最近的结果表明,细胞-细胞偶联在功能性收缩中起着重要作用,这表明不仅组织中的细胞几何形状而且细胞-细胞组织对于在工程组织中复制以模仿体内功能都是重要的。

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