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Platform technology for scalable assembly of instantaneously functional mosaic tissues

机译:用于即时功能镶嵌组织的可伸缩组装的平台技术

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摘要

Engineering mature tissues requires a guided assembly of cells into organized three-dimensional (3D) structures with multiple cell types. Guidance is usually achieved by microtopographical scaffold cues or by cell-gel compaction. The assembly of individual units into functional 3D tissues is often time-consuming, relying on cell ingrowth and matrix remodeling, whereas disassembly requires an invasive method that includes either matrix dissolution or mechanical cutting. We invented Tissue-Velcro, a bio-scaffold with a microfabricated hook and loop system. The assembly of Tissue-Velcro preserved the guided cell alignment realized by the topographical features in the 2D scaffold mesh and allowed for the instant establishment of coculture conditions by spatially defined stacking of cardiac cell layers or through endothelial cell coating. The assembled cardiac 3D tissue constructs were immediately functional as measured by their ability to contract in response to electrical field stimulation. Facile, on-demand tissue disassembly was demonstrated while preserving the structure, physical integrity, and beating function of individual layers.
机译:工程化成熟组织需要将细胞引导组装为具有多种细胞类型的有组织的三维(3D)结构。指导通常通过微形支架提示或通过细胞凝胶压实来实现。将单个单元组装到功能性3D组织中通常很耗时,这取决于细胞向内生长和基质重塑,而拆卸则需要侵入性方法,包括基质溶解或机械切割。我们发明了Tissue-Velcro,这是一种具有微型制造的钩环系统的生物支架。组织-维可牢尼龙搭扣的组装保留了2D支架网状结构中的地形特征实现的引导细胞排列,并允许通过在空间上限定的心肌细胞层堆叠或通过内皮细胞涂层即时建立共培养条件。组装的心脏3D组织构造物通过响应电场刺激的收缩能力而立即发挥功能。在保持各个层的结构,物理完整性和跳动功能的同时,证明了按需组织拆卸的简便性。

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