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Validating continuous digital light processing (cDLP) additive manufacturing accuracy and tissue engineering utility of a dye-initiator package

机译:验证染料引发剂包装的连续数字光处理(cDLP)增材制造精度和组织工程实用性

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This study tested the accuracy of tissue engineering scaffold rendering via the continuous digital light processing (cDLP) light-based additive manufacturing technology. High accuracy(i.e., <50 μm) allows the designed performance of features relevant to three scale spaces: cell-scaffold, scaffold-tissue, and tissue-organ interactions. The biodegradable polymer poly(propylene fumarate) was used to render highly accurate scaffolds through the use of a dye-initiator package, TiO_2 and bis (2,4,6-trimethylbenzoyl)phenylphosphine oxide. This dye-initiator package facilitates high accuracy in the Z dimension. Linear, round, and right-angle features were measured to gauge accuracy. Most features showed accuracies between 5.4–15% of the design. However, one feature, an 800 μm diameter circular pore, exhibited a 35.7% average reduction of patency. Light scattered in the x, y directions by the dye may have reduced this feature’s accuracy. Our new fine-grained understanding of accuracy could be used to make further improvements by including corrections in the scaffold design software. Successful cell attachment occurred with both canine and human mesenchymal stem cells (MSCs). Highly accurate cDLP scaffold rendering is critical to the design of scaffolds
机译:这项研究通过基于光的连续数字光处理(cDLP)增材制造技术测试了组织工程支架渲染的准确性。高精度(即<50μm)允许设计与以下三个尺度空间相关的特征的性能:细胞-支架,支架-组织和组织-器官相互作用。通过使用染料引发剂包,TiO_2和双(2,4,6-三甲基苯甲酰基)苯基膦氧化物,可生物降解的聚合物聚(富马酸丙二酯)被用于制成高度精确的支架。这种染料引发剂包装可促进Z尺寸的高精度。测量线性,圆形和直角特征以衡量精度。大多数功能都显示出设计精度的5.4%至15%。然而,一个特征是直径为800μm的圆形孔,其通畅性平均降低了35.7%。染料在x,y方向上散射的光可能会降低此功能的准确性。通过对脚手架设计软件进行更正,我们对精度的全新细化理解可用于进一步改进。犬和​​人间充质干细胞(MSC)均成功发生细胞附着。高精度cDLP支架渲染对于支架的设计至关重要

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