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Comparative study of visible light polymerized gelatin hydrogels for 3D culture of hepatic progenitor cells

机译:可见光聚合明胶水凝胶用于肝祖细胞3D培养的比较研究

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摘要

Photopolymerization techniques have been widely used to create hydrogels for biomedical applications. Visible light-based photopolymerizations are commonly initiated by type II (i.e., noncleavage-type) photoinitiator in conjunction with a coinitiator. On the other hand, type I photoinitiators (i.e., cleavage type) are rarely compatible with visible light-based initiation due to their limited molar absorbability in the visible light wavelengths. Here, we report visible light initiated orthogonal photoclick crosslinking to fabricate gelatin-norbornene and poly(ethylene glycol)-tetra-thiol hydrogels using either cleavage-type (i.e., lithium acylphosphinate, LAP) or noncleavage-type photoinitiator (i.e., eosin-Y, EY) without the use of a coinitiator. Regardless of the initiator type, the step-growth gelatin-PEG hybrid hydrogels crosslinked and degraded similarly. While both systems exhibited similar cytocompatibility for hepatic progenitor HepaRG cells, gelation initiated by noncleavage-type initiator EY afforded slightly higher degree of hepatic gene expression.
机译:光聚合技术已被广泛用于制造生物医学应用的水凝胶。基于可见光的光聚合通常由II型(即非裂解型)光引发剂与共引发剂结合引发。另一方面,由于I型光引发剂(即裂解型)在可见光波长中的摩尔吸收能力有限,因此很少与基于可见光的引发剂相容。在这里,我们报告可见光引发的正交光点击交联,以使用裂解型(即酰基次膦酸锂,LAP)或非裂解型光引发剂(即曙红-Y)制造明胶-降冰片烯和聚乙二醇-四硫醇水凝胶,EY),而无需使用共引发剂。无论引发剂类型如何,逐步生长的明胶-PEG杂化水凝胶均会发生交联和降解。虽然两个系统对肝祖HepaRG细胞均表现出相似的细胞相容性,但由非裂解型引发剂EY引发的胶凝作用却提供了更高程度的肝基因表达。

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