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我们对 WE43 和 WE43-T5 Mg 合金螺钉进行了体外细胞黏附与分化试验以及体内组织形态学分析,该研究在绵羊模型中进行。

WE43 and WE43-T5 Mg alloys screws tested in-vitro cellular adhesion and differentiation assay and in-vivo histomorphologic analysis in an ovine model.

机构信息

New York University, New York, NY, USA.

New York University College of Dentistry, New York, NY, USA.

出版信息

J Biomater Appl. 2021 Mar;35(8):901-911. doi: 10.1177/0885328220956788. Epub 2020 Sep 9.

Abstract

WE43 Mg alloy proved to be an ideal candidate for production of resorbable implants in both clinical and trial settings. In previous studies we tested biocompatibility and degradation properties of WE43 (as-cast) and artificially aged (WE43-T5) Mg alloys in a sheep model. Both alloys showed excellent biocompatibility with the as-cast, WE43, form showing increased degradability compared to the artificially aged, WE43-T5. In the present study, our group assessed the biological behavior and degradation pattern of the same alloys when implanted as endosteal implants in a sheep model. Twelve screws (3x15 mm) were evaluated, one screw per each composition was placed bi-cortically in the mandible of each animal with a titanium (2x12 mm) screw serving as an internal positive control. At 6 and 24 weeks histomorphological analysis was performed, at 6 weeks as cast, WE43, yielded a higher degradation rate, increased bone remodeling and osteolysis compared to the WE43-T5 alloy; however, at 24 weeks WE43-T5 showed higher degradation rate and increased bone remodeling than as-cast. assay of cell growth, adhesion and differentiation was also conducted to investigate possible mechanisms underlying the behavior expressed from the alloys . In conclusion WE43-T5 indicated bone/implant interaction properties that makes it more suitable for fabrication of endosteal bone screws.

摘要

WE43Mg 合金被证明是一种理想的可吸收植入物生产候选材料,无论是在临床还是试验环境中。在之前的研究中,我们在绵羊模型中测试了 WE43(铸态)和人工时效(WE43-T5)Mg 合金的生物相容性和降解性能。这两种合金都表现出优异的生物相容性,与人工时效的 WE43-T5 相比,铸态的 WE43 具有更高的降解能力。在本研究中,我们的研究小组评估了相同合金作为皮质内植入物在绵羊模型中的生物学行为和降解模式。评估了 12 个螺钉(3x15mm),每个动物的每个组成部分都有一个螺钉,每个动物的双侧皮质各有一个,每个动物的钛(2x12mm)螺钉作为内部阳性对照。在 6 周和 24 周进行了组织形态学分析,在 6 周时,与 WE43-T5 合金相比,铸态的 WE43 具有更高的降解率、增加的骨重塑和骨溶解;然而,在 24 周时,WE43-T5 表现出更高的降解率和增加的骨重塑。还进行了细胞生长、黏附和分化的测定,以研究合金表达的行为的可能机制。总之,WE43-T5 表明具有骨/植入物相互作用的特性,使其更适合制造皮质骨内骨螺钉。

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