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利用双光子聚合技术,从市售光敏材料微制造计算机辅助设计(CAD)的3D支架。

Two-photon polymerization technique for microfabrication of CAD-designed 3D scaffolds from commercially available photosensitive materials.

作者信息

Ovsianikov Aleksandr, Schlie Sabrina, Ngezahayo Anaclet, Haverich Axel, Chichkov Boris N

机构信息

Laser Zentrum Hannover e.V., Hollerithallee 8, D-30419 Hannover, Germany.

出版信息

J Tissue Eng Regen Med. 2007 Nov-Dec;1(6):443-9. doi: 10.1002/term.57.

Abstract

We report on recent advances in the fabrication of three-dimensional (3D) scaffolds for tissue engineering and regenerative medicine constructs using a two-photon polymerization technique (2PP). 2PP is a novel CAD/CAM technology allowing the fabrication of any computer-designed 3D structure from a photosensitive polymeric material. The flexibility of this technology and the ability to precisely define 3D construct geometry allows issues associated with vascularization and patient-specific tissue fabrication to be directly addressed. The fabrication of reproducible scaffold structures by 2PP is important for systematic studies of cellular processes and better understanding of in vitro tissue formation. In this study, 2PP was applied for the generation of 3D scaffold-like structures, using the photosensitive organic-inorganic hybrid polymer ORMOCER (ORganically MOdified CERamics) and epoxy-based SU8 materials. By comparing the proliferation rates of cells grown on flat material surfaces and under control conditions, it was demonstrated that ORMOCER and SU8 are not cytotoxic. Additional tests show that the DNA strand breaking of GFSHR-17 granulosa cells was not affected by the presence of ORMOCER. Furthermore, gap junction conductance measurements revealed that ORMOCER did not alter the formation of cell-cell junctions, critical for functional tissue growth. The possibilities of seeding 3D structures with cells were analysed. These studies demonstrate the great potential of 2PP technique for the manufacturing of scaffolds with controlled topology and properties.

摘要

我们报道了使用双光子聚合技术(2PP)制造用于组织工程和再生医学构建体的三维(3D)支架的最新进展。2PP是一种新颖的CAD/CAM技术,可从光敏聚合物材料制造任何计算机设计的3D结构。该技术的灵活性以及精确定义3D构建体几何形状的能力使得与血管化和患者特异性组织制造相关的问题能够得到直接解决。通过2PP制造可重复的支架结构对于细胞过程的系统研究和对体外组织形成的更好理解很重要。在本研究中,使用光敏有机-无机杂化聚合物ORMOCER(有机改性陶瓷)和基于环氧树脂的SU8材料,应用2PP生成3D支架状结构。通过比较在平坦材料表面和对照条件下生长的细胞的增殖率,证明ORMOCER和SU8没有细胞毒性。额外的测试表明,ORMOCER的存在不会影响GFSHR-17颗粒细胞的DNA链断裂。此外,间隙连接电导测量显示,ORMOCER不会改变对功能性组织生长至关重要的细胞间连接的形成。分析了用细胞接种3D结构的可能性。这些研究证明了2PP技术在制造具有可控拓扑结构和性能的支架方面的巨大潜力。

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