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钛螺钉表面钛酸钙涂层在兔股骨中增强的生物相容性和骨整合性

Enhanced biocompatibility and osseointegration of calcium titanate coating on titanium screws in rabbit femur.

作者信息

Wang Zi-Li, He Rong-Zhen, Tu Bin, Cao Xu, He Jin-Shen, Xia Han-Song, Liang Chi, Zou Min, Wu Song, Wu Zhen-Jun, Xiong Kun

机构信息

Department of Orthopedics, Third Xiangya Hospital, Central South University, Changsha, 410013, China.

Department of Orthopaedics, Leping People's Hospital, Leping, 333399, China.

出版信息

J Huazhong Univ Sci Technolog Med Sci. 2017 Jun;37(3):362-370. doi: 10.1007/s11596-017-1741-9. Epub 2017 Jun 6.

Abstract

This study aimed to examine the biocompatibility of calcium titanate (CaTiO) coating prepared by a simplified technique in an attempt to assess the potential of CaTiO coating as an alternative to current implant coating materials. CaTiO-coated titanium screws were implanted with hydroxyapatite (HA)-coated or uncoated titanium screws into medial and lateral femoral condyles of 48 New Zealand white rabbits. Imaging, histomorphometric and biomechanical analyses were employed to evaluate the osseointegration and biocompatibility 12 weeks after the implantation. Histology and scanning electron microscopy revealed that bone tissues surrounding the screws coated with CaTiO were fully regenerated and they were also well integrated with the screws. An interfacial fibrous membrane layer, which was found in the HA coating group, was not noticeable between the bone tissues and CaTiO-coated screws. X-ray imaging analysis showed in the CaTiO coating group, there was a dense and tight binding between implants and the bone tissues; no radiation translucent zone was found surrounding the implants as well as no detachment of the coating and femoral condyle fracture. In contrast, uncoated screws exhibited a fibrous membrane layer, as evidenced by the detection of a radiation translucent zone between the implants and the bone tissues. Additionally, biomechanical testing revealed that the binding strength of CaTiO coating with bone tissues was significantly higher than that of uncoated titanium screws, and was comparable to that of HA coating. The study demonstrated that CaTiO coating in situ to titanium screws possesses great biocompatibility and osseointegration comparable to HA coating.

摘要

本研究旨在通过一种简化技术制备钛酸钙(CaTiO)涂层,以检验其生物相容性,从而评估CaTiO涂层作为当前植入物涂层材料替代品的潜力。将CaTiO涂层钛螺钉与羟基磷灰石(HA)涂层或未涂层的钛螺钉植入48只新西兰白兔的股骨内外侧髁。植入12周后,采用影像学、组织形态计量学和生物力学分析来评估骨整合和生物相容性。组织学和扫描电子显微镜显示,CaTiO涂层螺钉周围的骨组织完全再生,并且与螺钉也很好地整合在一起。在HA涂层组中发现的界面纤维膜层,在骨组织和CaTiO涂层螺钉之间并不明显。X射线成像分析表明,在CaTiO涂层组中,植入物与骨组织之间存在致密且紧密的结合;在植入物周围未发现放射性透光区,也未发现涂层脱落和股骨髁骨折。相比之下,未涂层螺钉表现出纤维膜层,植入物与骨组织之间检测到放射性透光区证明了这一点。此外,生物力学测试表明,CaTiO涂层与骨组织的结合强度明显高于未涂层钛螺钉,且与HA涂层相当。该研究表明,钛螺钉原位CaTiO涂层具有与HA涂层相当的良好生物相容性和骨整合性。

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