纳米生物陶瓷骨移植对不利下颌角骨折愈合过程的作用(一项实验研究)

Muhammed El Basiony, Walid Ghanem, Ibrahim Ahmed, Sabry Elkorash, Amr El-Swify
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摘要

简介最常见的骨折是下颌角骨折,由于没有成熟的通用技术,治疗下颌角骨折具有挑战性。因此,针对不同的种植系统,人们开发了不同种类的骨板。目的:本研究旨在评估纳米生物陶瓷骨移植与三维骨板对下颌角骨折愈合的影响。材料与方法:本研究包括 18 只成年雄性杂种狗,动物被分为(每组 9 只):研究组(I),用纳米生物玻璃骨移植三维骨板治疗角骨折。对照组(II)仅使用三维骨板治疗角骨折。在狗的下颌角创建非临界大小的骨缺损(直径 3 毫米)。使用锥形束(CBCT)测量骨折线附近的骨密度。结果狗在术后 3、6 和 12 周安乐死,每次 6 只,每组 3 只。18 条骨折线均顺利愈合。软组织愈合正常,无任何感染迹象。本次研究的术后评估没有发现明显的并发症,没有发现任何术后感染或伤口裂开的情况。合成纳米生物玻璃骨移植体具有生物相容性,不会引起过敏。CBCT 显示,在 12 周后,研究组的骨密度读数比对照组有明显增加。在整个研究期间,研究组的骨密度测量值均高于对照组。结论:三维钛板在治疗角弓反张骨折时具有优越的生物力学特性和生物相容性。纳米生物玻璃骨移植是一种兼容材料,不会干扰骨折锉的愈合过程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Role of Nano-Bioceramic Bone Graft on the Healing Process of Unfavorable Mandibular Angle Fracture (An experimental study)
Introduction: The most frequent fracture is a mandibular angle fracture, which is challenging to treat because there is no established universal technique. So, for diverse implant systems, different kinds of plates have been developed. Aim: This study aimed to evaluate of nano bio-ceramic bone graft with 3D bone plate on the healing of unfavorable mandibular angle fracture. Material and methods: This study included 18 male adult mongrel dogs, animals were divided into (9 of each): study group (I) where the angle fracture treated by 3 dimension bone plate with Nano bio glass bone graft. Control group (II) where the angle fracture treated by 3 dimension bone plate only. Noncritical size bone defects (3 mm diameter) were created in the mandibular angle of the dogs. Bone density was measured in the vicinity of the fracture line using the cone beam (CBCT). Results: Dogs were euthanized at 3, 6 and 12 weeks postoperatively, six dogs at a time, three dogs from each group. All of the 18 fracture line healed uneventfully. Soft tissue healing normally proceeded without any signs of infection. Post-operative assessment of the current study revealed no obvious complications; neither post-operative infection nor wound dehiscence was detected in any case. The synthetic Nano bio glass bone graft was bio compatible and non-allergic. CBCT showed that measurements of the bone density reading were increased in study group more than control group throughout showing highly significantly reading after 12 weeks. The measurements of the bone density were higher in the study group than control group throughout the whole study intervals. Conclusion: 3D Titanium plates have superior biomechanical properties and biocompatibility when used in treatment of fractures of the angle. Nano bio glass bone graft is a compatible material and doesn’t interfere with the healing process of fracture filed.
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