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Biocompatibility of Bespoke 3D-Printed Titanium Alloy Plates for Treating Acetabular Fractures

机译:定制3D打印钛合金板的生物相容性治疗髋臼骨折

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摘要

Treatment of acetabular fractures is challenging, not only because of its complicated anatomy but also because of the lack of fitting plates. Personalized titanium alloy plates can be fabricated by selective laser melting (SLM) but the biocompatibility of these three-dimensional printing (3D-printed) plates remains unknown. Plates were manufactured by SLM and their cytocompatibility was assessed by observing the metabolism of L929 fibroblasts incubated with culture medium extracts using a CCK-8 assay and their morphology by light microscopy. Allergenicity was tested using a guinea pig maximization test. In addition, acute systemic toxicity of the 3D-printed plates was determined by injecting extracts from the implants into the tail veins of mice. Finally, the histocompatibility of the plates was investigated by implanting them into the dorsal muscles of rabbits. The in vitro results suggested that cytocompatibility of the 3D-printed plates was similar to that of conventional plates. The in vivo data also demonstrated histocompatibility that was comparable between the two manufacturing techniques. In conclusion, both in vivo and in vitro experiments suggested favorable biocompatibility of 3D-printed titanium alloy plates, indicating that it is a promising option for treatment of acetabular fractures.
机译:髋臼骨折的治疗具有挑战性,这不仅是因为其解剖结构复杂,而且还因为缺少固定板。可以通过选择性激光熔化(SLM)来制造个性化的钛合金板,但是这些三维打印(3D打印)板的生物相容性仍然未知。通过SLM制造板,并通过使用CCK-8测定观察与培养基提取物一起孵育的L929成纤维细胞的代谢,并通过光学显微镜观察其形态,从而评估其细胞相容性。使用豚鼠最大化试验测试了过敏性。另外,通过将来自植入物的提取物注射到小鼠的尾静脉中来确定3D打印板的急性全身毒性。最后,通过将板植入兔的背肌中来研究板的组织相容性。体外结果表明,3D打印板的细胞相容性与常规板相似。体内数据还证明了在两种制造技术之间可比的组织相容性。总之,体内和体外实验均表明3D打印的钛合金板具有良好的生物相容性,表明它是治疗髋臼骨折的有前途的选择。

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