Department of Cranio-Maxillofacial Surgery, University Hospital, University of Bern, 3010 Bern, Switzerland.
Department of Oral and Maxillofacial Surgery, School of Life Dentistry at Tokyo, The Nippon Dental University, Chiyoda-ku, Tokyo 102-8159, Japan.
Int J Mol Sci. 2022 Sep 10;23(18):10516. doi: 10.3390/ijms231810516.
(1) Aim: To investigate the effect of synthetic bone substitutes, α-tricalcium phosphate (α-TCP) or bi-layered biphasic calcium-phosphate (BBCP) combined with deproteinized bovine bone mineral (DBBM), on bone formation. (2) Methods: Thirty critical size defects were randomly treated with the following five different treatment modalities: (1) negative control (NC, empty), (2) DBBM, (3) α-TCP + DBBM (1:1), (4) BBCP 3%HA/97%α-TCP + DBBM (1:1), and (5) BBCP 6%HA/94%α-TCP + DBBM (1:1). The samples, at four weeks post-surgery, were investigated by micro-CT and histological analysis. (3) Results: A similar level of new bone formation was demonstrated in the DBBM with α-TCP bone substitute groups when compared to the negative control by histomorphometry. DBBM alone showed significantly lower new bone area than the negative control ( = 0.0252). In contrast to DBBM, the micro-CT analysis revealed resorption of the α-TCP + DBBM, BBCP 3%HA/97%α-TCP + DBBM and BBCP 6%HA/94%α-TCP + DBBM, as evidenced by a decrease of material density ( = 0.0083, = 0.0050 and = 0.0191, respectively), without changing their volume. (4) Conclusions: New bone formation was evident in all defects augmented with biomaterials, proving the osteoconductive properties of the tested material combinations. There was little impact of the HA coating degree on α-TCP in bone augmentation potential and material resorption for four weeks when mixed with DBBM.
(1)目的:研究合成骨替代物α-磷酸三钙(α-TCP)或双层双相钙磷(BBCP)与脱蛋白牛骨矿物质(DBBM)结合对骨形成的影响。(2)方法:将 30 个临界尺寸缺陷随机分为以下 5 种不同的治疗方式:(1)阴性对照(NC,空);(2)DBBM;(3)α-TCP+DBBM(1:1);(4)BBCP 3%HA/97%α-TCP+DBBM(1:1);(5)BBCP 6%HA/94%α-TCP+DBBM(1:1)。术后 4 周,通过微 CT 和组织学分析进行检测。(3)结果:与阴性对照相比,组织形态计量学显示,DBBM 与 α-TCP 骨替代物组的新骨形成水平相似。DBBM 单独使用时,新骨面积明显低于阴性对照(=0.0252)。与 DBBM 相反,微 CT 分析显示α-TCP+DBBM、BBCP 3%HA/97%α-TCP+DBBM 和 BBCP 6%HA/94%α-TCP+DBBM 发生吸收,表现为材料密度降低(=0.0083、=0.0050 和=0.0191),但体积不变。(4)结论:所有用生物材料增强的缺陷都有新骨形成,证明了所测试的材料组合具有骨诱导性。当与 DBBM 混合时,HA 涂层程度对 α-TCP 的骨增强潜力和材料吸收在 4 周内影响不大。