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首页> 外文期刊>Journal of materials science >Different post-processing conditions for 3D bioprinted alpha-tricalcium phosphate scaffolds
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Different post-processing conditions for 3D bioprinted alpha-tricalcium phosphate scaffolds

机译:3D生物打印的α-磷酸三钙支架的不同后处理条件

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摘要

The development of 3D printing hardware, software and materials has enabled the production of bone substitute scaffolds for tissue engineering. Calcium phosphates cements, such as those based on a-tricalcium phosphate (alpha-TCP), have recognized properties of osteoinductivity, osteoconductivity and resorbability and can be used to 3D print scaffolds to support and induce tissue formation and be replaced by natural bone. At present, however, the mechanical properties found for 3D printed bone scaffolds are only satisfactory for non-load bearing applications. This study varied the post-processing conditions of the 3D powder printing process of a-TCP cement scaffolds by either immersing the parts into binder, Ringer's solution or phosphoric acid, or by sintering in temperatures ranging from 800 to 1500 degrees C. The porosity, composition (phase changes), morphology, shrinkage and compressive strength were evaluated. The mechanical strength of the post-processed 3D printed scaffolds increased compared to the green parts and was in the range of the trabecular bone. Although the mechanical properties achieved are still low, the high porosity presented by the scaffolds can potentially result in greater bone ingrowth. The phases present in the scaffolds after the post-processing treatments were calciumdeficient hydroxyapatite, brushite, monetite, and unreacted a-TCP. Due to their chemical composition, the 3D printed scaffolds are expected to be resorbable, osteoinductive, and osteoconductive.
机译:3D打印硬件,软件和材料的开发使用于组织工程的骨替代支架的生产成为可能。磷酸钙水泥,例如基于α-磷酸三钙(α-TCP)的那些,具有公认的骨诱导性,骨传导性和可吸收性,可用于3D打印支架以支撑和诱导组织形成,并被天然骨替代。然而,目前,对于3D打印的骨支架发现的机械性能仅对于非承重应用是令人满意的。这项研究通过将零件浸入粘合剂,林格氏溶液或磷酸中,或通过在800至1500摄氏度的温度范围内进行烧结,改变了a-TCP水泥脚手架3D粉末打印过程的后处理条件。评价了组成(相变),形态,收缩率和抗压强度。与绿色部分相比,后处理的3D打印支架的机械强度有所提高,并且在小梁骨的范围内。尽管获得的机械性能仍然很低,但支架提供的高孔隙率可能会导致更大的骨骼向内生长。经过后处理后,支架中存在的相为缺钙的羟基磷灰石,透钙磷石,透钙磷石和未反应的α-TCP。由于其化学成分,预计3D打印的支架具有可吸收性,骨诱导性和骨传导性。

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  • 来源
    《Journal of materials science》 |2017年第10期|168.1-168.12|共12页
  • 作者单位

    Univ Fed Rio Grande do Sul, Mat Dept, Lab Biomat Labiomat, Ave Bento Goncalves 9500, BR-91501970 Porto Alegre, RS, Brazil;

    Univ Fed Rio Grande do Sul, Mat Dept, Lab Biomat Labiomat, Ave Bento Goncalves 9500, BR-91501970 Porto Alegre, RS, Brazil;

    Univ Fed Rio Grande do Sul, Mat Dept, Lab Biomat Labiomat, Ave Bento Goncalves 9500, BR-91501970 Porto Alegre, RS, Brazil;

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