首页> 外文期刊>Journal of biomedical materials research, Part A >Microscale multilayer cocultures for biomimetic blood vessels.
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Microscale multilayer cocultures for biomimetic blood vessels.

机译:用于仿生血管的微型多层共培养。

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Living tissues have complex and well-organized microstructures. Although microtechnology has been used to create in vivo-like cell microstructures in vitro, most available microscale systems are two-dimensional, and few three-dimensional (3D) systems have been explored. This article demonstrates a 3D hierarchical biomimetic multilayer microsystem created by a generally applicable technique. The technique employs layer-by-layer microfluidics to build layers of cells and biopolymers in microchannels, allowing controlled patterning of cells and their microenvironments in the x, y, and z-dimension. As a prototype, a multilayer system was created using three vascular cell types within heterogeneous types of biopolymers to mimic the structure and composition of a blood vessel wall. The effects of matrix composition and multilayer configurations on 3D cell-cell interactions and cell biology were revealed. Cell migration in the z-dimension, matrix remodeling, intercellular adhesion molecule expression and actin organization were examined under different 3D coculture conditions. A more biomimetic coculture was found to reproduce a more stable structure and in vivo-like function. This approach provides a method to fabricate microscale hierarchical "neotissues" with 3D configurations of matrix materials and multiple cell types, and an in vitro cell coculture model to understand 3D processes of cell-cell and cell-matrix interactions.
机译:活体组织具有复杂且组织良好的微观结构。尽管已经使用微技术在体外创建了类似体内的细胞微结构,但大多数可用的微尺度系统都是二维的,而很少研究三维(3D)系统。本文演示了通过普遍适用的技术创建的3D分层仿生多层微系统。该技术采用逐层微流控技术在微通道中构建细胞和生物聚合物层,从而可以在x,y和z维度上对细胞及其微环境进行可控的图案化。作为原型,使用异质生物聚合物中的三种维管细胞类型创建了多层系统,以模仿血管壁的结构和组成。揭示了基质组成和多层构型对3D细胞-细胞相互作用和细胞生物学的影响。在不同的3D共培养条件下,检查了z维度中的细胞迁移,基质重塑,细胞间粘附分子表达和肌动蛋白组织。发现更具仿生性的共培养可重现更稳定的结构和体内样功能。该方法提供了一种制造具有基质材料和多种细胞类型的3D配置的微型分层“新组织”的方法,以及一种体外细胞共培养模型,以了解细胞-细胞和细胞-基质相互作用的3D过程。

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