Impact of Freeze-dried Corticocancellous Bone Allograft Combined with Enamel Matrix Derivative in the Treatment of Critical-sized Calvarial Bone Defects: An Animal Study.

Rouida N Zakri, Mohammed E Grawish, Bassant Mowafey, Jilan Youssef
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Abstract

Aim: This study compared the quality and quantity of newly formed bone in rabbits' critical-sized calvarial defects filled with enamel matrix derivative (EMD) combined with freeze-dried bone allograft (FDBA) vs FDBA alone.

Materials and methods: A total of 24 adult male white New Zealand rabbits were included. In each rabbit, three bone defects with a diameter of 8 mm were created on the calvarium bone; the first defect was left untreated, while the second was filled with FDBA, and the third was filled with EMD + FDBA. Twelve rabbits were randomly euthanized after a month, and the remaining 2 month postsurgery. Bone sections were histologically evaluated by hematoxylin and eosin and vascular endothelial growth factor (VEGF), alkaline phosphatase (ALP), osteoprotegerin (OPG), and receptor activator of NF-kappaB (RANK) immune-histochemical staining.

Results: An improvement in the newly formed bone percentage was found in the defects filled with EMD + FDBA in comparison with FDBA and control defects at 1 month and 2 months postsurgery. Additionally, the expression of VEGF, ALP, OPG, and RANK showed highly significant differences in the defects filled with EMD + FDBA compared to the FDBA and control ones at 1 month postsurgery (p = 0.001). Meanwhile, VEGF and ALP expression showed a significant decrease in defects filled with EMD + FDBA compared to the FDBA and control ones (p = 0.001), while OPG and RANK expression showed non-significant differences between treated groups at 2 months postsurgery.

Conclusion: Enamel matrix derivative combined with FDBA has a synergistic effect on bone formation and graft substitution. This combination accelerates the expression of VEGF, ALP, OPG, and RANK.

Clinical significance: The combination of EMD and FDBA accelerates and ameliorates the quality of newly formed bone, aiding in maxillofacial reconstruction. How to cite this article: Zakri RN, Grawish ME, Mowafey B, et al. Impact of Freeze-dried Corticocancellous Bone Allograft Combined with Enamel Matrix Derivative in the Treatment of Critical-sized Calvarial Bone Defects: An Animal Study. J Contemp Dent Pract 2024;25(5):424-431.

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冷冻干燥的皮质冠状骨异体移植结合釉质基质衍生物在治疗临界大小钙骨缺损中的影响:一项动物研究。
目的:本研究比较了使用釉基质衍生物(EMD)结合冻干骨异体移植(FDBA)与单独使用冻干骨异体移植填充兔子临界大小腓骨缺损中新形成骨的质量和数量:共纳入 24 只成年雄性新西兰白兔。每只兔子的小腿骨上都有三个直径为 8 毫米的骨缺损,第一个缺损未经处理,第二个缺损用 FDBA 填充,第三个缺损用 EMD + FDBA 填充。12 只兔子在一个月后被随机安乐死,其余兔子在手术后两个月被安乐死。通过苏木精、伊红和血管内皮生长因子(VEGF)、碱性磷酸酶(ALP)、骨保护素(OPG)和 NF-kappaB受体激活剂(RANK)免疫组织化学染色对骨切片进行组织学评估:结果:术后1个月和2个月,EMD+FDBA填充的缺损与FDBA填充的缺损和对照组相比,新形成骨的比例有所提高。此外,与 FDBA 和对照组相比,EMD + FDBA 填补的缺损在术后 1 个月的 VEGF、ALP、OPG 和 RANK 表达有非常显著的差异(p = 0.001)。同时,与 FDBA 和对照组相比,使用 EMD + FDBA 填补的缺损中 VEGF 和 ALP 的表达显著下降(p = 0.001),而 OPG 和 RANK 的表达在术后 2 个月的治疗组间无显著差异:结论:釉质基质衍生物与 FDBA 的结合对骨形成和移植物替代具有协同作用。临床意义:临床意义:EMD 和 FDBA 的组合可加速和改善新形成骨的质量,有助于颌面部重建。本文引用方式Zakri RN, Grawish ME, Mowafey B, et al:一项动物研究。J Contemp Dent Pract 2024;25(5):424-431.
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来源期刊
Journal of Contemporary Dental Practice
Journal of Contemporary Dental Practice Dentistry-Dentistry (all)
CiteScore
1.80
自引率
0.00%
发文量
174
期刊介绍: The Journal of Contemporary Dental Practice (JCDP), is a peer-reviewed, open access MEDLINE indexed journal. The journal’s full text is available online at http://www.thejcdp.com. The journal allows free access (open access) to its contents. Articles with clinical relevance will be given preference for publication. The Journal publishes original research papers, review articles, rare and novel case reports, and clinical techniques. Manuscripts are invited from all specialties of dentistry i.e., conservative dentistry and endodontics, dentofacial orthopedics and orthodontics, oral medicine and radiology, oral pathology, oral surgery, orodental diseases, pediatric dentistry, implantology, periodontics, clinical aspects of public health dentistry, and prosthodontics.
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