Tissue-Engineered Bone Construct Promotes Early Osseointegration of Implants with Low Primary Stability in oversized osteotomy

Lianyi Xu, Reinhilde Jacobs, Yingguang Cao, Xiaojuan Sun, Xu Qin
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Abstract

Abstract Objectives To evaluate the histological parameters and bone mechanical properties around implants with low primary stability (PS) in grafted bone substitutes within an oversized osteotomy. Materials and Methods An oversized osteotomy penetrating the double cortical bone layers was made on both femora of 24 New Zealand white rabbits. Bilaterally in the femur of all animals, 48 implants were installed, subdivided into four groups, corresponding to four prepared tissue-engineered bone grafts (TEBGs), which were placed between the implant surface and native bone wall: A: tricalcium phosphate β (TCP-β); B: autologous adipose derived-stem cells with TCP-β (ASCs/TCP-β); C: ASCs transfected with the enhanced-GFP gene with TCP-β (EGFP-ASCs/TCP-β); D: ASCs transfected with the BMP-2 gene with TCP-β (BMP2-ASCs/TCP-β). Trichrome fluorescent labeling was conducted. Animals were sacrificed after eight weeks. The trichromatic fluorescent labeling (%TFL), area of new bone (%NB), residual material (%RM), bone-implant contact (%BIC), and the removal torque force (RTF, N/cm) were assessed. Results The BMP-2 overexpression of ASCs sustained for ten days and greatly enhanced osteogenic differentiation. At eight weeks post-implantation, increased %NB and RTF were found in all groups. The most significant value of %TFL, %BIC and lowest %RM was detected in group D. Conclusion The low PS implants osseointegrate with considerable new bone in TEBGs peri-stuffed site. The addition of ASCs and BMP-2 further stimulated the %BIC. Bone graft offers wedging effect for the implant with low PS at placement and promotes osteogenesis on their surface in the healing period.
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组织工程骨构建促进早期骨整合种植体在大尺寸截骨术中初始稳定性低
【摘要】目的评价大截骨术中低初级稳定性(PS)植骨替代物周围的组织学参数和骨力学特性。材料与方法对24只新西兰大白兔双股行穿透双皮质骨层的超大截骨术。在所有动物的双侧股骨内安装48个种植体,分为四组,对应于4个制备好的组织工程骨移植物(TEBGs),放置在种植体表面和天然骨壁之间:A:磷酸三钙β (TCP-β);B:含有TCP-β的自体脂肪源性干细胞(ASCs/TCP-β);C:用TCP-β转染增强gfp基因的ASCs (EGFP-ASCs/TCP-β);D:用TCP-β转染BMP-2基因的ASCs (BMP2-ASCs/TCP-β)。进行三色荧光标记。动物在8周后被处死。评估三色荧光标记(%TFL)、新骨面积(%NB)、残留材料(%RM)、骨与种植体接触(%BIC)和去除扭矩力(RTF, N/cm)。结果BMP-2在ASCs中的过表达持续10天,并显著增强了成骨分化。植入后8周,各组NB、RTF均升高。结论低PS种植体在TEBGs填充周围部位具有相当数量的新骨。ASCs和BMP-2的加入进一步刺激了%BIC。植骨对植入时PS较低的种植体具有楔入作用,在愈合期间促进种植体表面成骨。
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