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采用 UiO-66 纳米材料增强兔股骨临界尺寸骨缺损再生。

Enhancement of critical-sized bone defect regeneration using UiO-66 nanomaterial in rabbit femurs.

机构信息

Department of Surgery, Anesthesiology, and Radiology, Faculty of Veterinary Medicine, Assiut University, Assiut, Egypt.

Department of Cell and Histology, Faculty of Veterinary Medicine, Assiut University, Assiut, Egypt.

出版信息

BMC Vet Res. 2022 Jul 5;18(1):260. doi: 10.1186/s12917-022-03347-9.

Abstract

BACKGROUND

Repair of large-sized bone defects is a challengeable obstacle in orthopedics and evoked the demand for the development of biomaterials that could induce bone repair in such defects. Recently, UiO-66 has emerged as an attractive metal-organic framework (MOF) nanostructure that is incorporated in biomedical applications due to its biocompatibility, porosity, and stability. In addition, its osteogenic properties have earned a great interest as a promising field of research. Thus, the UiO-66 was prepared in this study and assessed for its potential to stimulate and support osteogenesis in vitro and in vivo in a rabbit femoral condyle defect model. The nanomaterial was fabricated and characterized using x-ray diffraction (XRD) and transmission electron microscopy (TEM). Afterward, in vitro cytotoxicity and hemolysis assays were performed to investigate UiO-66 biocompatibility. Furthermore, the material in vitro capability to upregulate osteoblast marker genes was assessed using qPCR. Next, the in vivo new bone formation potential of the UiO-66 nanomaterial was evaluated after induction of bone defects in rabbit femoral condyles. These defects were left empty or filled with UiO-66 nanomaterial and monitored at weeks 4, 8, and 12 after bone defect induction using x-ray, computed tomography (CT), histological examinations, and qPCR analysis of osteocalcin (OC) and osteopontin (OP) expressions.

RESULTS

The designed UiO-66 nanomaterial showed excellent cytocompatibility and hemocompatibility and stimulated the in vitro osteoblast functions. The in vivo osteogenesis was enhanced in the UiO-66 treated group compared to the control group, whereas evidence of healing of the treated bone defects was observed grossly and histologically. Interestingly, UiO-66 implanted defects displayed a significant osteoid tissue and collagen deposition compared to control defects. Moreover, the UiO-66 nanomaterial demonstrated the potential to upregulate OC and OP in vivo.

CONCLUSIONS

The UiO-66 nanomaterial implantation possesses a stimulatory impact on the healing process of critical-sized bone defects indicating that UiO-66 is a promising biomaterial for application in bone tissue engineering.

摘要

背景

修复大尺寸骨缺损是骨科领域的一个具有挑战性的难题,这促使人们开发能够诱导此类缺损骨修复的生物材料。最近,UiO-66 作为一种有吸引力的金属-有机骨架(MOF)纳米结构出现在生物医学应用中,因为其具有生物相容性、多孔性和稳定性。此外,其成骨特性作为一个有前途的研究领域引起了极大的兴趣。因此,本研究制备了 UiO-66,并评估了其在兔股骨髁缺损模型中体外和体内刺激和支持成骨的潜力。该纳米材料通过 X 射线衍射(XRD)和透射电子显微镜(TEM)进行了制备和表征。随后,进行了体外细胞毒性和溶血试验以研究 UiO-66 的生物相容性。此外,还使用 qPCR 评估了该材料体外上调成骨细胞标记基因的能力。接下来,在兔股骨髁诱导骨缺损后,评估了 UiO-66 纳米材料的体内新骨形成潜力。这些缺陷为空或填充了 UiO-66 纳米材料,并在骨缺损诱导后 4、8 和 12 周使用 X 射线、计算机断层扫描(CT)、组织学检查和 qPCR 分析骨钙素(OC)和骨桥蛋白(OP)的表达进行监测。

结果

设计的 UiO-66 纳米材料表现出优异的细胞相容性和血液相容性,并刺激了体外成骨细胞功能。与对照组相比,UiO-66 治疗组的体内成骨作用增强,而大体和组织学上均观察到治疗性骨缺损的愈合。有趣的是,与对照缺陷相比,UiO-66 植入缺陷显示出明显的类骨质组织和胶原沉积。此外,UiO-66 纳米材料在体内具有上调 OC 和 OP 的潜力。

结论

UiO-66 纳米材料的植入对临界尺寸骨缺损的愈合过程具有刺激作用,表明 UiO-66 是一种有前途的骨组织工程应用生物材料。

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