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两种可钻孔磷酸镁骨水泥在兔体内骨缺损模型中的降解及骨接触生物相容性

Degradation and Bone-Contact Biocompatibility of Two Drillable Magnesium Phosphate Bone Cements in an In Vivo Rabbit Bone Defect Model.

作者信息

Ewald Andrea, Fuchs Andreas, Boegelein Lasse, Grunz Jan-Peter, Kneist Karl, Gbureck Uwe, Hoelscher-Doht Stefanie

机构信息

Department for Functional Materials in Medicine and Dentistry, University Hospital of Wuerzburg, Pleicherwall 2, 97070 Wuerzburg, Germany.

Department of Oral and Maxillofacial Plastic Surgery, University Hospital of Wuerzburg, Pleicherwall 2, 97070 Wuerzburg, Germany.

出版信息

Materials (Basel). 2023 Jun 28;16(13):4650. doi: 10.3390/ma16134650.

Abstract

The use of bone-cement-enforced osteosynthesis is a growing topic in trauma surgery. In this context, drillability is a desirable feature for cements that can improve fracture stability, which most of the available cement systems lack. Therefore, in this study, we evaluated a resorbable and drillable magnesium-phosphate (MgP)-based cement paste considering degradation behavior and biocompatibility in vivo. Two different magnesium-phosphate-based cement (MPC) pastes with different amounts of phytic acid (IP 6) as setting retarder (MPC 22.5 and MPC 25) were implanted in an orthotopic defect model of the lateral femoral condyle of New Zealand white rabbits for 6 weeks. After explantation, their resorption behavior and material characteristics were evaluated by means of X-ray diffraction (XRD), porosimetry measurement, histological staining, peripheral quantitative computed tomography (pQCT), cone-beam computed tomography (CBCT) and biomechanical load-to-failure tests. Both cement pastes displayed comparable results in mechanical strength and resorption kinetics. Bone-contact biocompatibility was excellent without any signs of inflammation. Initial resorption and bone remodeling could be observed. MPC pastes with IP 6 as setting retardant have the potential to be a valuable alternative in distinct fracture patterns. Drillability, promising resorption potential and high mechanical strength confirm their suitability for use in clinical routine.

摘要

骨水泥增强骨固定术的应用在创伤外科领域是一个日益受到关注的话题。在这种背景下,可钻性是骨水泥所期望具备的特性,它能够提高骨折稳定性,而大多数现有的骨水泥系统都缺乏这一特性。因此,在本研究中,我们评估了一种可吸收且可钻的磷酸镁(MgP)基骨水泥糊剂,考察其在体内的降解行为和生物相容性。将两种不同的添加不同量植酸(IP 6)作为缓凝剂的磷酸镁基骨水泥(MPC)糊剂(MPC 22.5和MPC 25)植入新西兰白兔股骨外侧髁的原位缺损模型中6周。取出后,通过X射线衍射(XRD)、孔隙率测量、组织学染色、外周定量计算机断层扫描(pQCT)、锥形束计算机断层扫描(CBCT)和生物力学破坏载荷试验来评估它们的吸收行为和材料特性。两种骨水泥糊剂在机械强度和吸收动力学方面均表现出相当的结果。骨接触生物相容性良好,无任何炎症迹象。可以观察到初始吸收和骨重塑。以IP 6作为缓凝剂的MPC糊剂在特定骨折类型中有可能成为一种有价值的替代物。可钻性、有前景的吸收潜力和高机械强度证实了它们适用于临床常规应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ab8d/10342658/44a57984e441/materials-16-04650-g001.jpg

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