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Continuous Digital Light Processing (cDLP): Highly Accurate Additive Manufacturing of Tissue Engineered Bone Scaffolds

机译:连续数字光处理(CDLP):高精度的组织工程骨支架制造制造

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摘要

Highly accurate rendering of the external and internal geometry of bone tissue engineering scaffolds effects fit at the defect site, loading of internal pore spaces with cells, bioreactor-delivered nutrient and growth factor circulation, and scaffold resorption. It may be necessary to render resorbable polymer scaffolds with 50 μm or less accuracy to achieve these goals. This level of accuracy is available using Continuous Digital Light processing (cDLP) which utilizes a DLP>® (Texas Instruments, Dallas, TX) chip. One such additive manufacturing device is the envisionTEC (Ferndale, MI) Perfactory>®. To use cDLP we integrate a photo-crosslinkable polymer, a photo-initiator, and a biocompatible dye. The dye attenuates light, thereby limiting the depth of polymerization. In this study we fabricated scaffolds using the well-studied resorbable polymer, poly(propylene fumarate) (PPF), titanium dioxide (TiO2) as a dye, Irgacure® 819 (BASF [Ciba], Florham Park, NJ) as an initiator, and diethyl fumarate as a solvent to control viscosity.
机译:高精度渲染骨组织工程支架的外部和内部几何形状的效果适合缺陷部位,用细胞,生物反应器输送的营养素和生长因子循环加载内部孔隙空间,以及支架吸收。可能有必要以50μm或更低的准确度呈现可再吸收的聚合物支架以实现这些目标。使用连续数字光处理(CDLP)使用这种级别的精度,可利用DLP (Texas Instruments,Dallas,TX)芯片。一种这样的添加剂制造装置是EnvisionTec(Ferndale,Mi)Perfactory > 。使用CDLP,我们整合光交联的聚合物,光引发剂和生物相容性染料。染料衰减光,从而限制了聚合深度。在这项研究中,我们使用良好的可再吸收的聚合物,聚(丙烯富马酸丁酸酯)(PPF),二氧化钛(TiO 2)作为染料来制造支架,Irgacure ® 819(Basf [Ciba],Florham Park ,NJ)作为引发剂,富马酸二乙酯作为控制粘度的溶剂。

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