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Biofabrication of 3D printed hydroxyapatite composite scaffolds for bone regeneration

机译:3D印刷羟基磷灰石复合支架的生物再生骨再生

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摘要

Biofabrication has been adapted in engineering patient-specific biosynthetic grafts for bone regeneration. Herein, we developed a three-dimensional (3D) high-resolution, room-temperature printing approach to fabricate osteoconductive scaffolds using calcium phosphate cement (CPC). The non-aqueous CPC bioinks were composed of tetracalcium phosphate, dicalcium phosphate anhydrous, and Polyvinyl butyral (PVB) dissolved in either ethanol (EtOH) or tetrahydrofuran (THF). They were printed in an aqueous sodium phosphate bath, which performs as a hardening accelerator for hydroxyapatite formation and as a retainer for 3D microstructure. The PVB solvents, EtOH or THF, affected differently the slurry rheological properties, scaffold microstructure, mechanical properties, and osteoconductivity. Our proposed approach overcomes limitations of conventional fabrication methods, which require high-temperature (>50 degrees C), low-resolution (>400 mu m) printing with an inadequate amount of large ceramic particles (>35 mu m). This proof-of-concept study opens venues in engineering high-resolution, implantable, and osteoconductive scaffolds with predetermined properties for bone regeneration.
机译:生物制备已经适用于工程患者特异性生物合成移植物,用于骨再生。这里,我们开发了一种三维(3D)高分辨率,室温印刷方法,用于使用磷酸钙水泥(CPC)制造骨导电支架。非磷酸盐,磷酸二钙,无水磷酸二钙和溶解在乙醇(EtOH)或四氢呋喃(THF)中的聚乙烯醇缩丁醛(PVB)组成。它们在磷酸钠水溶液中印刷,其作为羟基磷灰石形成的硬化促进剂和用于3D微观结构的保持器。 PVB溶剂,EtOH或THF,影响不同的浆液流变性质,支架微观结构,机械性能和骨导电性。我们所提出的方法克服了常规制造方法的限制,该方法需要高温(> 50℃),低分辨率(>400μm)印刷,其含量不足的大陶瓷颗粒(>35μm)。该概念证明研究在工程高分辨率,植入和骨导电支架中打开场地,具有预定的骨再生性能。

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