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用于兔颅骨临界尺寸缺损模型骨再生的间充质干细胞片、羟基磷灰石和富血小板纤维蛋白颗粒的混合复合材料

Hybrid composites of mesenchymal stem cell sheets, hydroxyapatite, and platelet-rich fibrin granules for bone regeneration in a rabbit calvarial critical-size defect model.

作者信息

Wang Xi, Li Guanghui, Guo Jia, Yang Lei, Liu Yiming, Sun Qiang, Li Rui, Yu Weiwei

机构信息

Department of Stomatology, The First Affiliated Hospital of Zhengzhou University, Zhengzhou, Henan 450052, P.R. China.

Department of Orthodontics, Beijing Ruitai Dental Hospital, Beijing 100107, P.R. China.

出版信息

Exp Ther Med. 2017 May;13(5):1891-1899. doi: 10.3892/etm.2017.4199. Epub 2017 Mar 8.

Abstract

The reconstruction of large bone defects remains a major clinical challenge, and tissue engineering is a promising technique for resolving this problem. Many attempts have been made to optimize bone tissue engineering protocols. The aim of the present study was to develop a process incorporating mesenchymal stem cell (MSC) sheets with nanoscale hydroxyapatite (nano-HA) and autologous platelet-rich fibrin (PRF) granules for enhanced bone formation within a critical-sized rabbit cranial defect. MSC sheets and PRF were prepared prior to experiments. The osteogenic differentiation ability of MSCs and the ultrastructure of PRF were also studied. A total of 15 New Zealand white rabbits were used in the current study and critical-size defects (CSDs) were surgically introduced in the cranium (diameter, 15 mm). The surgical defects were treated with MSC/PRF composites, MSC composites or left empty. Animals were euthanized at week 8 post-surgery. Iconography, histological and histomorphometric analysis were performed to assess bone formation. The percentage of new bone in the MSC/PRF group (35.7±5.1%) was significantly higher than that in the MSC (18.3±3.2%; P<0.05) and empty defect groups (4.7±1.5%; P<0.05). The results of the present study suggest that combined application of an MSC sheet with nano-HA and granular PRF enhances bone regeneration in a rabbit calvarial CSD model, and provides a novel insight into bone tissue regeneration for large bone defects.

摘要

大骨缺损的修复仍然是一项重大的临床挑战,而组织工程是解决这一问题的一项有前景的技术。人们已进行了许多尝试来优化骨组织工程方案。本研究的目的是开发一种将间充质干细胞(MSC)片层与纳米级羟基磷灰石(nano-HA)和自体富血小板纤维蛋白(PRF)颗粒相结合的方法,以促进兔颅骨临界尺寸缺损内的骨形成。在实验前制备了MSC片层和PRF。还研究了MSC的成骨分化能力和PRF的超微结构。本研究共使用了15只新西兰白兔,并通过手术在颅骨上制造了临界尺寸缺损(直径15毫米)。手术缺损分别用MSC/PRF复合材料、MSC复合材料处理或留空。在术后第8周对动物实施安乐死。进行影像学、组织学和组织形态计量学分析以评估骨形成情况。MSC/PRF组的新骨百分比(35.7±5.1%)显著高于MSC组(18.3±3.2%;P<0.05)和缺损空白组(4.7±1.5%;P<0.05)。本研究结果表明,将MSC片层与nano-HA和颗粒状PRF联合应用可增强兔颅骨临界尺寸缺损模型中的骨再生,并为大骨缺损的骨组织再生提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a7ac/5443196/79f036ecc758/etm-13-05-1891-g00.jpg

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