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首页> 外文期刊>Journal of Mechanical Science and Technology >Fabrication and tissue engineering application of a 3D PPF/DEF scaffold using Blu-ray based 3D printing system
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Fabrication and tissue engineering application of a 3D PPF/DEF scaffold using Blu-ray based 3D printing system

机译:三维PPF / DEF脚手架的制造和组织工程应用使用蓝光射线3D打印系统

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Micro-stereolithography (MSTL) among various 3D printing technologies reaches high resolution by using a focused laser beam, and therefore it can be used to fabricate objects that have feature sizes of tens to hundreds of micrometers. To fabricate a scaffold for the tissue engineering, we used a Blu-ray based MSTL system which is simpler and more compact than the conventional MSTL system. We selected a biodegradable photopolymer, Poly (propylene fumarate)/diethyl fumarate (PPF/DEF), as the construction material, and progressed post-curing to strengthen the fabricated scaffold. We seeded MC3T3-E1 pre-osteoblasts on the fabricated PPF/DEF 3D scaffolds and cultured them in a multi-stimulus bioreactor system which mimics the in-vivo shear flow environment and simultaneously supplies a magnetic field to improve cell proliferation. A cell culture result showed the superiority of combining our bioreactor system with the PPF/DEF 3D scaffold. The combination of 3D scaffold fabricated by Blu-ray based MSTL and a multi-stimulus bioreactor system may be a valuable tool for bone tissue regeneration.
机译:在各种3D打印技术中,微立体光刻(MSTL)通过使用聚焦激光束达到高分辨率,因此可以用于制造特征尺寸为几十到几百微米的物体。为了制作组织工程支架,我们使用了基于蓝光的MSTL系统,该系统比传统的MSTL系统更简单、更紧凑。我们选择了一种可生物降解的光聚合物,聚富马酸丙烯酯/富马酸二乙酯(PPF/DEF)作为建筑材料,并进行后固化以增强所制备的支架。我们将MC3T3-E1前成骨细胞种植在制作好的PPF/DEF 3D支架上,并将其培养在多刺激生物反应器系统中,该系统模拟体内剪切流环境,同时提供磁场以促进细胞增殖。细胞培养结果显示了我们的生物反应器系统与PPF/DEF 3D支架相结合的优越性。基于蓝光的MSTL制作的三维支架和多刺激生物反应器系统的结合可能是骨组织再生的一个有价值的工具。

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