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三维打印 Ti6Al4V 植入物与 Trevira®植入物肌腱附着的比较:一项配对的实验动物研究。

Comparison of tendon attachment to 3D printed Ti6Al4V implant versus Trevira® implant: A paired experimental animal study.

机构信息

Department of Orthopaedic Oncology, Aarhus University Hospital, Palle Juul-Jensens Boulevard 165, 8200, Aarhus N, Denmark.

Department of Orthopaedic Oncology, Aarhus University Hospital, Palle Juul-Jensens Boulevard 165, 8200, Aarhus N, Denmark.

出版信息

J Mech Behav Biomed Mater. 2024 Dec;160:106789. doi: 10.1016/j.jmbbm.2024.106789. Epub 2024 Oct 28.

Abstract

BACKGROUND

Soft-tissue attachment is crucial for the success of megaprosthesis surgery and improvement in current treatment is needed. The aim of this study was to compare the biomechanical and histomorphometric properties of soft-tissue attachment between 3D printed Ti6Al4V implants featuring a 630 μm microporous structure and commercially available Trevira® implants with a 200 μm porous structure in a non-loadbearing ovine model.

METHODS

Ten skeletally mature ewes underwent surgical implantation with both implants. After 4-weeks, mechanical pull-out testing assessed the attachment strength, while histomorphometric analysis evaluated fibroblast cell profile density, multinucleated giant cell profile density, microvessel length and volume density.

RESULTS

3D printed Ti6Al4V implants demonstrated a 129% greater attachment strength compared to Trevira® implants (p = 0.003). In the Trevira® group, a 35% increase in fibroblast profile density (p < 0.001) and a 98% increase in multinucleated giant cell profile density (p < 0.001) were observed, with no significant difference in microvessel length density between the groups. However, the Ti6Al4V group exhibited a 50% higher microvessel volume density (p < 0.001) compared to the Trevira® group.

CONCLUSION

3D printed Ti6Al4V implants with a 630 μm microporous structure demonstrated superior attachment strength, enhanced neovascularization, and reduced foreign body reaction compared to the Trevira® implants. These findings suggest that 3D printed Ti6Al4V implants may enhance soft-tissue attachment in megaprosthesis surgeries.

摘要

背景

软组织附着对于 megaprosthesis 手术的成功至关重要,需要改进当前的治疗方法。本研究旨在比较 3D 打印 Ti6Al4V 植入物(具有 630μm 微孔结构)和市售 Trevira®植入物(具有 200μm 多孔结构)在非承重绵羊模型中的软组织附着的生物力学和组织形态计量特性。

方法

10 只骨骼成熟的绵羊接受了两种植入物的手术植入。4 周后,机械拔出试验评估了附着强度,而组织形态计量分析评估了成纤维细胞形态密度、多核巨细胞形态密度、微血管长度和体积密度。

结果

3D 打印 Ti6Al4V 植入物的附着强度比 Trevira®植入物高 129%(p=0.003)。在 Trevira®组中,成纤维细胞形态密度增加了 35%(p<0.001),多核巨细胞形态密度增加了 98%(p<0.001),但两组之间微血管长度密度没有显著差异。然而,Ti6Al4V 组的微血管体积密度比 Trevira®组高 50%(p<0.001)。

结论

与 Trevira®植入物相比,具有 630μm 微孔结构的 3D 打印 Ti6Al4V 植入物具有更高的附着强度、增强的新生血管形成和减少的异物反应。这些发现表明,3D 打印 Ti6Al4V 植入物可能增强 megaprosthesis 手术中的软组织附着。

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