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Sugar glass fugitive ink loaded with calcium chloride for the rapid casting of alginate scaffold designs

机译:装有氯化钙的糖玻璃短效油墨用于快速铸造藻酸盐支架设计

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摘要

Alginate-based hydrogels are widely used for the development of biomedical scaffolds in regenerative medicine. The use of sugar glass as a sacrificial template for fluidic channels fabrication within alginate scaffolds remains a challenge because of the premature dissolution of sugar by the water contained in the alginate as well as the relatively slow internal gelation rate of the alginate. Here, a new and simple method, based on a sugar glass fugitive ink loaded with calcium chloride to build sacrificial molds, is presented. We used a dual calcium cross-linking process by adding this highly soluble calcium source in the printed sugar, thus allowing the rapid gelation of a thin membrane of alginate around the sugar construct, followed by the addition of calcium carbonate and gluconic acid δ-lactone to complete the process. This innovative technique results in the rapid formation of "on-demand" alginate hydrogel with complex fluidic channels that could be used in biomedical applications such as highly vascularized scaffolds promoting pathways for nutrients and oxygen to the cells.
机译:基于藻酸盐的水凝胶被广泛用于再生医学中生物医学支架的开发。由于在藻酸盐支架中的水过早溶解糖以及藻酸盐的内部胶凝速度相对较慢,因此使用糖玻璃作为藻酸盐支架内流体通道制造的牺牲模板仍然是一个挑战。在此,提出了一种新的,简单的方法,该方法基于装载有氯化钙的糖杯逃犯油墨,以建立牺牲模子。我们通过在印制的糖中添加这种高度可溶的钙源,使用了双重钙交联工艺,从而使糖结构周围的藻酸盐薄膜快速凝胶化,然后添加碳酸钙和葡萄糖酸δ-内酯完成该过程。这项创新技术可快速形成带有复杂流体通道的“按需”藻酸盐水凝胶,可用于生物医学应用,例如高度血管化的支架,促进营养物质和氧气进入细胞。

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