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首页> 外文期刊>ACS applied materials & interfaces >Spatial Patterning of Molecular Cues and Vascular Cells in Fully Integrated Hydrogel Channels via Interfacial Bioorthogonal Cross-Linking
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Spatial Patterning of Molecular Cues and Vascular Cells in Fully Integrated Hydrogel Channels via Interfacial Bioorthogonal Cross-Linking

机译:通过界面生物正交交联完全集成水凝胶通道中分子提示和血管细胞的空间图案化

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摘要

Fully integrated hydrogel channels were fabricated via interfacial bioorthogonal cross-linking, a diffusion-controlled method for the creation and patterning of synthetic matrices based on the rapid bioorthogonal reaction between s-tetrazines (Tz) and trans-cyclooctene (TCO) dienophiles. Injecting an aqueous solution of a bisTCO cross-linker into a reservoir of tetrazine-modified hyaluronic acid (HA-Tz), while simultaneously drawing the syringe needle through the reservoir, yielded a cross-linked hydrogel channel that was mechanically robust. Fluorescent tags and biochemical signals were spatially patterned into the channel wall through time-dependent perfusion of TCO-conjugated molecules into the lumen of the channel. Different cell populations were spatially encapsulated in the channel wall via temporal alteration of cells in the HA-Tz reservoir. The interfacial approach enabled the spatial patterning of vascular cells, including human abdominal aorta endothelial cells, aortic vascular smooth muscle cells, and aortic adventitial fibroblasts, into the hydrogel channels with high viability and proper morphology in the anatomical order found in human arteries. The bioorthogonal platform does not rely on external triggers and represents the first step toward the engineering of functional and implantable arteries.
机译:通过界面生物正交交联,基于S-四嗪(TCO)和反式环辛烯(TCO)促进剂(TCO)DieOnophers之间的快速生物正交反应,通过界面生物正交交联,用于产生和图案化合成基质的扩散控制方法来制造完全集成的水凝胶通道。将体菌的交联剂的水溶液注入四嗪改性的透明质酸(HA-TZ)的储存器中,同时通过储存器同时将注射器拉伸,得到一种机械鲁棒的交联水凝胶通道。荧光标签和生物化学信号通过将TCO-缀合的分子的时间依赖性灌注到通道的内腔中。通过在HA-TZ储层中的细胞的时间改变,不同的细胞群在沟道壁中包封。界面方法使血管细胞的空间图案化,包括人腹主动脉内皮细胞,主动脉血管平滑肌细胞和主动脉肠道成纤维细胞,进入水凝胶通道,其在人类动脉中发现的解剖学顺序中具有高的活力和适当的形态。生物正交平台不依赖于外部触发器,并表示朝向功能性和可植入动脉的工程的第一步。

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