首页> 外文会议>2018 IX International Seminar of Biomedical Engineering >Assessment of the Effects of Energy Density in Crosslinking of Keratin-Based Photo-Sensitive Resin
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Assessment of the Effects of Energy Density in Crosslinking of Keratin-Based Photo-Sensitive Resin

机译:能量密度对角蛋白基光敏树脂交联的影响评估

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Keratin, a natural fibrous structural protein that can be found in hair and skin, can self-assemble or be crosslinked into hydrogels that are physiologically biodegradable and provide adequate cell support. We have formulated a keratin-based photocrosslinkable resin that can be used to cast or 3D print keratin under an ultra-violet (UV) light source. The resin was used to produce keratin hydrogels, assessing how the amount of energy projected during curing (4 to 200 mJ/mmn3n) defines the network’s crosslinking degree, and thus the system’s physicochemical properties. The energy density was proven to regulate the dityrosine chemical reaction needed to crosslink keratin, and it determines the extent to which the hydrogel network crosslinks. As expected it follows a saturation trend, limited by the amount of tyrosine available in keratin. The crosslinking degree, and its saturation nature, determines microstructural properties of the hydrogel, including swelling capacity and degradation trends. The relation between energy density and crosslinking degree was further elucidated with the differences observed in both the thermal degradation profiles (using DSC) and the infrared profiles (using FTIR). Understanding the effects of energy density on the creation of the crosslinked network allowed us to further optimize printing parameters, particularly UV intensity, of the photo-sensitive resin in a cDLP 3D printing system.
机译:角蛋白是一种可以在头发和皮肤中发现的天然纤维结构蛋白,可以自组装或交联成可生理生物降解的水凝胶,并提供足够的细胞支持。我们配制了一种基于角蛋白的光可交联树脂,该树脂可用于在紫外线(UV)光源下浇铸或3D打印角蛋白。该树脂用于生产角蛋白水凝胶,评估固化过程中的能量投射方式(4至200 mJ / mmn 3 n)定义了网络的交联度,从而定义了系统的物理化学性质。能量密度被证明可调节交联角蛋白所需的二酪氨酸化学反应,并决定了水凝胶网络交联的程度。如预期的那样,它遵循饱和趋势,受到角蛋白中可用酪氨酸量的限制。交联度及其饱和性质决定了水凝胶的微结构性质,包括溶胀能力和降解趋势。通过在热降解曲线(使用DSC)和红外曲线(使用FTIR)中观察到的差异进一步阐明了能量密度和交联度之间的关系。了解能量密度对生成交联网络的影响后,我们可以进一步优化cDLP 3D打印系统中光敏树脂的打印参数,尤其是UV强度。

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