首页> 美国卫生研究院文献>Journal of Functional Biomaterials >The 3D Printing of Calcium Phosphate with K-Carrageenan under Conditions Permitting the Incorporation of Biological Components—A Method
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The 3D Printing of Calcium Phosphate with K-Carrageenan under Conditions Permitting the Incorporation of Biological Components—A Method

机译:在允许掺入生物成分的条件下用K-角叉菜胶进行磷酸钙3D打印的方法

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摘要

Critical-size bone defects are a common clinical problem. The golden standard to treat these defects is autologous bone grafting. Besides the limitations of availability and co-morbidity, autografts have to be manually adapted to fit in the defect, which might result in a sub-optimal fit and impaired healing. Scaffolds with precise dimensions can be created using 3-dimensional (3D) printing, enabling the production of patient-specific, ‘tailor-made’ bone substitutes with an exact fit. Calcium phosphate (CaP) is a popular material for bone tissue engineering due to its biocompatibility, osteoconductivity, and biodegradable properties. To enhance bone formation, a bioactive 3D-printed CaP scaffold can be created by combining the printed CaP scaffold with biological components such as growth factors and cytokines, e.g., vascular endothelial growth factor (VEGF), bone morphogenetic protein-2 (BMP-2), and interleukin-6 (IL-6). However, the 3D-printing of CaP with a biological component is challenging since production techniques often use high temperatures or aggressive chemicals, which hinders/inactivates the bioactivity of the incorporated biological components. Therefore, in our laboratory, we routinely perform extrusion-based 3D-printing with a biological binder at room temperature to create porous scaffolds for bone healing. In this method paper, we describe in detail a 3D-printing procedure for CaP paste with K-carrageenan as a biological binder.
机译:临界大小的骨缺损是常见的临床问题。治疗这些缺陷的黄金标准是自体骨移植。除了可用性和合并症的局限性之外,还必须手动调整自体移植物以适应缺损,这可能会导致次优的合身性并损害愈合。可以使用3维(3D)打印来创建尺寸精确的脚手架,从而能够生产出适合患者的,量身定制的“量身定制”骨替代品。磷酸钙(CaP)由于具有生物相容性,骨传导性和可生物降解的特性,因此是用于骨组织工程的流行材料。为了增强骨骼形成,可以通过将打印的CaP支架与生物成分(例如生长因子和细胞因子,例如血管内皮生长因子(VEGF),骨形态发生蛋白2(BMP-2))结合来创建具有生物活性的3D打印的CaP支架)和白介素6(IL-6)。然而,由于生产技术经常使用高温或腐蚀性化学物质,这会阻碍/使掺入的生物成分的生物活性失活,因此用生物成分对CaP进行3D打印具有挑战性。因此,在我们的实验室中,我们通常在室温下使用生物粘合剂执行基于挤压的3D打印,以创建用于骨骼愈合的多孔支架。在此方法文件中,我们详细描述了以K-角叉菜胶为生物粘合剂的CaP糊剂的3D打印程序。

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