Centre de Recherche en Organogénèse Expérimentale de l'Université Laval, LOEX, Division of Regenerative Medicine, CHU de Québec Research Center-Université Laval, Quebec City, QC G1V 0A6, Canada.
Department of Surgery, Faculty of Medicine, Université Laval, Quebec City, QC G1V 0A6, Canada.
Int J Mol Sci. 2022 Mar 18;23(6):3302. doi: 10.3390/ijms23063302.
The success of dental implant treatment after tooth extraction is generally maximized by preserving the alveolar ridge using cell-free biomaterials. However, these treatments can be associated with inflammatory reactions, leading to additional bone volume loss hampering dental implant positioning. Our group developed a self-assembled bone-like substitute constituted of osteogenically induced human adipose-derived stromal/stem cells (hASCs). We hypothesized that a bone morphogenetic protein (BMP) supplementation could improve the in vitro osteogenic potential of the bone-like substitute, which would subsequently translate into enhanced alveolar bone healing after tooth extraction. ASCs displayed a better osteogenic response to BMP-9 than to BMP-2 in monolayer cell culture, as shown by higher transcript levels of the osteogenic markers , (/), and after three and six days of treatment. Interestingly, BMP-9 treatment significantly increased transcripts and alkaline phosphatase activity, as well as pro-angiogenic gene expression, in engineered bone-like substitutes after 21 days of culture. Alveolar bone healing was investigated after molar extraction in nude rats. Microcomputed tomography and histological evaluations revealed similar, or even superior, global alveolar bone preservation when defects were filled with BMP-9-treated bone-like substitutes for ten weeks compared to a clinical-grade biomaterial, with adequate gingival re-epithelialization in the absence of resorption.
拔牙后,使用无细胞生物材料保存牙槽嵴能最大限度地提高种植牙治疗的成功率。然而,这些治疗可能会引发炎症反应,导致额外的骨量损失,从而妨碍种植牙的定位。我们的团队开发了一种由诱导成骨的人脂肪来源基质/干细胞(hASC)组成的自组装类骨替代品。我们假设骨形态发生蛋白(BMP)的补充可以提高类骨替代品的体外成骨潜能,进而促进拔牙后的牙槽骨愈合。在单层细胞培养中,与 BMP-2 相比,ASCs 对 BMP-9 表现出更好的成骨反应,这表现在处理 3 天和 6 天后,成骨标志物 (/), 和 的转录水平更高。有趣的是,BMP-9 处理在 21 天的培养后显著增加了工程类骨替代品中的 转录物和碱性磷酸酶活性,以及促血管生成基因的表达。在裸鼠磨牙拔除后,研究了牙槽骨的愈合情况。微计算机断层扫描和组织学评估显示,与临床级生物材料相比,在 10 周内用 BMP-9 处理的类骨替代品填充缺陷时,整体牙槽骨保存情况相似,甚至更好,且在没有吸收的情况下,牙龈有足够的再上皮化。