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Riboflavin as a isible light photoinitiator for dynamic stiffening of cell-laden hydrogels

机译:核黄素作为可见光光引发剂,可动态强化充满细胞的水凝胶

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In summary, we have developed a dynamic hydrogel system using thiol-norbonene chemistry and riboflavin/visible light based in situ stiffening. Compared to other water soluble, visible light initiators (e.g., lithium acylphosphinate or LAP), riboflavin is naturally occurring, has higher molar absorbability at 400-500 nm-..The use of______ di-tyrosine crosslinking to stiffen_cell-laden hydrogels and does not produce heterogeneous crosslinks- and The the degree of stiffening could be readily controlled by adjusting tight intensity or tyrosine concentration. The system was highly cytocompatible for encapsulation of pancreatic cancer cells and the stiffening process did not induce cell deatheffectively affected cell fale in 3D. Future Current work is will be focused on optinizing the system and studying the effects of stiffened hydrogels on cells on at the molecular level.
机译:总之,我们已经开发出一种动态水凝胶系统,该系统使用硫醇-降冰片烯化学和基于黄素/可见光的原位硬化技术。与其他水溶性可见光引发剂(如酰基次膦酸锂或LAP)相比,核黄素是天然存在的,在400-500 nm-处具有更高的摩尔吸收能力。产生异质的交联键和-可以通过调节紧密强度或酪氨酸浓度来容易地控制硬化程度。该系统对胰腺癌细胞的封装具有高度的细胞相容性,并且强化过程并未诱导细胞死亡,从而有效地影响了3D细胞的生长。未来的当前工作将集中在优化系统和研究硬化水凝胶在分子水平上对细胞的作用。

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