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Effect of Photoinitiator on Precursory Stability and Curing Depth of Thiol-Ene Clickable Gelatin

机译:光引发剂对硫醇 - 烯醇的前兆稳定性和固化深度的影响

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摘要

Recent advances highlight the potential of photopolymerizable allylated gelatin (GelAGE) as a versatile hydrogel with highly tailorable properties. It is, however, unknown how different photoinitiating system affects the stability, gelation kinetics and curing depth of GelAGE. In this study, sol fraction, mass swelling ratio, mechanical properties, rheological properties, and curing depth were evaluated as a function of time with three photo-initiating systems: Irgacure 2959 (Ig2959; 320–500 nm), lithium phenyl-2,4,6-trimethylbenzoylphosphinate (LAP; 320–500 nm), and ruthenium/sodium persulfate (Ru/SPS; 400–500 nm). Results demonstrated that GelAGE precursory solutions mixed with either Ig2959 or LAP remained stable over time while the Ru/SPS system enabled the onset of controllable redox polymerization without irradiation during pre-incubation. Photo-polymerization using the Ru/SPS system was significantly faster (<5 s) compared to both Ig2959 (70 s) and LAP (50 s). Plus, The Ru/SPS system was capable of polymerizing a thick construct (8.88 ± 0.94 mm), while Ig2959 (1.62 ± 0.49 mm) initiated hydrogels displayed poor penetration depth with LAP (7.38 ± 2.13 mm) in between. These results thus support the use of the visible light based Ru/SPS photo-initiator for constructs requiring rapid gelation and a good curing depth while Ig2959 or LAP can be applied for photo-polymerization of GelAGE materials requiring long-term incubation prior to application if UV is not a concern.
机译:最近的进展突出的可光聚合烯丙基化明胶(GelAGE),为具有高度可调节的性质的水凝胶多功能的电势。它是,但是,未知的不同引发体系如何影响稳定性,凝胶动力学和GelAGE的固化深度。在这项研究中,溶胶级分,质量溶胀率,机械性能,流变学特性和固化深度的评价为时间有三个光引发系统的功能:IRGACURE 2959(Ig2959; 320-500纳米),锂苯基-2, 4,6- trimethylbenzoylphosphinate(LAP; 320-500纳米),和钌/过硫酸钠(RU / SPS; 400-500纳米)。结果表明,与任一Ig2959或LAP混合GelAGE前兆溶液保持随时间稳定的,而在Ru / SPS系统的预温育期间,使能可控氧化还原聚合反应开始没有辐射。相比,无论Ig2959(70个S)和LAP(50秒),使用的Ru / SPS系统的光聚合是显著更快(<5秒)。此外,中的Ru / SPS系统能够厚厚构建体(8.88±0.94毫米)聚合,而Ig2959(1.62±0.49 MM)发起的水凝胶显示穿透深度差在它们之间LAP(7.38±2.13毫米)。因此,这些结果支持使用基于钌/ SPS光引发剂用于需要快速凝胶化和良好的固化深度的构建体的可见光的同时可以应用于Ig2959或LAP为GelAGE材料的光聚合反应之前,应用程序,如果需要长期培养紫外线是不是一个问题。

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