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Fabrication of 3D biocompatible/biodegradable micro-scaffolds using dynamic mask projection microstereolithography

机译:使用动态掩模投影微立体光刻技术制造3D生物相容/可生物降解的微支架

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Microstereolithography (μSL) technology can fabricate three-dimensional (3D) tissue engineered scaffolds with controlled biochemical and mechanical micro-architectures. A (μSL system for tissue engineering was developed using a Digital Micromirror Device (DMD) for dynamic pattern generation and an ultraviolet (UV) lamp filtered at 365 nm for crosslinking the photoreactive polymer solution. The ΜSL system was designed with x-y resolution of ~2 μm and a vertical (z) resolution of ~1 μm. To demonstrate the use of μ-SL in tissue engineering, poly(propylene fumarate) (PPF) was synthesized with a molecular weight of ~1200Da. The viscosity of the PPF was reduced to ~150cP (at 50℃) by mixing with diethyl fumarate (DEF) in the ratio of 7:3 (w/w). Finally, ~2% (w/w) of bis(2,4,6-trimethylbenzoyl) phenylphosphine oxide (BAPO) was added to the solution to serve as a photoinitiator. Cure depth experiments were performed to determine the curing characteristics of the synthesized PPF, and the resulting system and prepolymer were used to construct a 3D porous scaffold with interconnected pores of ~100μm. Scanning electron microscopy (SEM), and micro-computed tomography (μCT) images of the micro-architecture illustrate that the developed μSL system is a promising technology for producing biodegradable and biocompatible 3D micro-scaffolds with fully interconnected pores.
机译:微立体光刻(μSL)技术可以制造具有可控生化和机械微结构的三维(3D)组织工程支架。 (用于组织工程的μSL系统是使用数字微镜设备(DMD)进行动态图形生成,并在365 nm处过滤了紫外灯以使光反应性聚合物溶液交联而开发的。该MLSL系统的xy分辨率为〜2 μm,垂直(z)分辨率约为〜1μm。为了证明μ-SL在组织工程中的应用,合成了分子量约为1200Da的聚富马酸丙二酯(PPF),降低了PPF的粘度通过以7:3(w / w)的比例与富马酸二乙酯(DEF)混合至〜150cP(在50℃),最后,双(2,4,6-三甲基苯甲酰)的〜2%(w / w)在溶液中加入苯氧化膦(BAPO)作为光引发剂,进行固化深度实验,确定合成PPF的固化特性,并用所得体系和预聚物构建孔相互连通的3D多孔支架100μm扫描电子显微镜(SEM)和微型计算机断层扫描微结构的hy(μCT)图像表明,已开发的μSL系统是一种有前途的技术,可用于生产具有可完全互连的孔的可生物降解和生物相容的3D微支架。

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