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Biodegradable scaffold with built-in vasculature for organ-on-a-chip engineering and direct surgical anastomosis

机译:具有内置脉管系统的可生物降解支架用于单片器官工程和直接外科手术吻合

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摘要

We report the fabrication of a scaffold (hereafter referred to as AngioChip) that supports the assembly of parenchymal cells on a mechanically tunable matrix surrounding a perfusable, branched, three-dimensional microchannel network coated with endothelial cells. The design of AngioChip decouples the material choices for the engineered vessel network and for cell seeding in the parenchyma, enabling extensive remodelling while maintaining an open-vessel lumen. The incorporation of nanopores and micro-holes in the vessel walls enhances permeability, and permits intercellular crosstalk and extravasation of monocytes and endothelial cells on biomolecular stimulation. We also show that vascularized hepatic tissues and cardiac tissues engineered by using AngioChips process clinically relevant drugs delivered through the vasculature, and that millimeter-thick cardiac tissues can be engineered in a scalable manner. Moreover, we demonstrate that AngioChip cardiac tissues implanted via direct surgical anastomosis to the femoral vessels of rat hindlimbs establish immediate blood perfusion.
机译:我们报道了支架(以下称为AngioChip)的制造,该支架支持在围绕着内皮细胞的可灌注,分支,三维微通道网络周围的机械可调基质上组装实质细胞。 AngioChip的设计将工程血管网络和薄壁组织中的细胞播种的材料选择脱钩,从而在维持开放血管腔的同时实现了广泛的重塑。在血管壁上掺入纳米孔和微孔可增强通透性,并在生物分子刺激下允许单核细胞和内皮细胞的细胞间串扰和外渗。我们还显示,通过使用AngioChips设计的血管化肝组织和心脏组织可处理通过脉管系统输送的临床相关药物,并且可以以可扩展的方式设计毫米厚的心脏组织。此外,我们证明了通过直接外科吻合术植入大鼠后肢股血管的AngioChip心脏组织可立即进行血液灌注。

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