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Core–shell patterning of synthetic hydrogels via interfacial bioorthogonal chemistry for spatial control of stem cell behavior

机译:通过界面生物正交化学对合成水凝胶进行核-壳构图以控制干细胞行为

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摘要

A new technique is described for the patterning of cell-guidance cues in synthetic extracellular matrices (ECM) for tissue engineering applications. Using s-tetrazine modified hyaluronic acid (HA), bis-trans-cyclooctene (TCO) crosslinkers and monofunctional TCO conjugates, interfacial bioorthogonal crosslinking was used to covalently functionalize hydrogels as they were synthesized at the liquid–gel interface. Through temporally controlled introduction of TCO conjugates during the crosslinking process, the enzymatic degradability, cell adhesivity, and mechanical properties of the synthetic microenvironment can be tuned with spatial precision. Using human mesenchymal stem cells (hMSCs) and hydrogels with a core–shell structure, we demonstrated the ability of the synthetic ECM with spatially defined guidance cues to modulate cell morphology in a biomimetic fashion. This new method for the spatially resolved introduction of cell-guidance cues for the establishment of functional tissue constructs complements existing methods that require UV-light or specialized equipment.
机译:描述了一种新技术,用于在组织工程应用的合成细胞外基质(ECM)中对细胞指导线索进行构图。使用s-四嗪改性的透明质酸(HA),双-反式-环辛烯(TCO)交联剂和单功能TCO共轭物,界面生物正交交联被用来共价官能化水凝胶,因为它们是在液-凝胶界面合成的。通过在交联过程中暂时控制引入TCO共轭物,可以精确地调节合成微环境的酶降解性,细胞粘附性和机械性能。通过使用具有核-壳结构的人间充质干细胞(hMSCs)和水凝胶,我们证明了具有空间定义的指导线索的合成ECM以仿生方式调节细胞形态的能力。这种用于空间分辨引入细胞指导线索以建立功能性组织构建体的新方法补充了需要紫外线或专用设备的现有方法。

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