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ECM-based microchannel for culturing in vitro vascular tissues with simultaneous perfusion and stretch

机译:基于ECM的微通道,用于培养体外血管组织,同时灌注和伸展

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摘要

We present an extracellular matrix (ECM)-based stretchable microfluidic system for culturing in vitro three-dimensional (3D) vascular tissues, which mimics in vivo blood vessels. Human umbilical vein endothelial cells (HUVECs) can be cultured under perfusion and stretch simultaneously with real-time imaging by our proposed system. Our ECM (transglutaminase (TG) cross-linked gelatin)-based microchannel was fabricated by dissolving water-soluble sacrificial polyvinyl alcohol (PVA) molds printed with a 3D printer. Flows in the microchannel were analyzed under perfusion and stretch. We demonstrated simultaneous perfusion and stretch of TG gelatin-based microchannels culturing HUVECs. We suggest that our TG gelatin-based stretchable microfluidic system proves to be a useful tool for understanding the mechanisms of vascular tissue formation and mechanotransduction.
机译:我们提出了一种细胞外基质(ECM)的可伸缩性微流体系统,用于培养体外三维(3D)血管组织,其在体内血管中模拟。 人的脐静脉内皮细胞(HUVECS)可以在灌注下培养并通过我们所提出的系统的实时成像同时延伸。 通过溶解用3D打印机印刷的水溶性牺牲聚乙烯醇(PVA)模具来制造我们的ECM(转谷氨酰胺酶(Tg)交联明胶)基础微通道。 在灌注和伸展下进行微通道的流动。 我们展示了培养Huvecs的Tg明胶基微通道的同时灌注和延伸。 我们建议我们的TG明胶可拉伸的微流体系统证明是理解血管组织形成和机械障碍机制的有用工具。

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