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用生物活性玻璃支架再生骨:骨缺损模型中体内研究的综述。

Regenerating bone with bioactive glass scaffolds: A review of in vivo studies in bone defect models.

机构信息

Department of Biomaterials, Faculty of Oral and Dental Medicine, Cairo University, 11562 Cairo, Egypt.

Institute of Polymer Materials, University of Erlangen-Nuremberg, 91058 Erlangen, Germany.

出版信息

Acta Biomater. 2017 Oct 15;62:1-28. doi: 10.1016/j.actbio.2017.08.030. Epub 2017 Aug 24.

Abstract

UNLABELLED

Large bone defects resulting from fractures and disease are a medical concern, being often unable to heal spontaneously by the body's repair mechanisms. Bone tissue engineering (BTE) is a promising approach for treating bone defects through providing a template to guide osseous regeneration. 3D scaffolds with microstructure mimicking host bone are necessary in common BTE strategies. Bioactive glasses (BGs) attract researchers' attention as BTE scaffolds as they are osteoconductive and osteoinductive in certain formulations. In vivo animal models allow understanding and evaluation of materials' performance in the complex physiological environment, being an inevitable step before clinical trials. The aim of this paper is to review for the first time published research investigating the in vivo osseous regenerative capacity of 3D BG scaffolds in bone defect animal models, to better understand and evaluate the progress and future outlook of the use of such scaffolds in BTE. The literature analysis reveals that the regenerative capacity of BG scaffolds depends on several factors; including BG composition, fabrication method, scaffold microstructure and pore characteristics, in addition to scaffold pretreatment and whether or not the scaffolds are loaded with growth factors. In addition, animal species selected, defect size and implantation time affect the scaffold in vivo behavior and outcomes. The review of the literature also makes clear the difficulty encountered to compare different types of bioactive glass scaffolds in their bone forming ability. Even considering such limitations of the current state-of-the-art, results generated from animal bone defect models provide an essential source of information to guide the design of BG scaffolds in future.

STATEMENT OF SIGNIFICANCE

Bioactive glasses are at the centre of increasing research efforts in bone tissue engineering as the number of research groups around the world carrying out research on this type of biomaterials continues to increase. However, there are no previous reviews in literature which specifically cover investigations of the performance of bioactive glass scaffolds in bone defect animal models. This is the topic of the present review, in which we have analysed comprehensively all available literature in the field. The review thus fills a gap in the biomaterials literature providing a broad platform of information for researchers interested in bioactive glasses in general and specifically in the outcomes of in vivo models. Bioactive glass scaffolds of different compositions tested in relevant bone defect models are covered.

摘要

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由于骨折和疾病导致的大骨缺损是医学关注的问题,通常无法通过身体的修复机制自发愈合。骨组织工程(BTE)是一种有前途的治疗骨缺损的方法,它提供了一个模板来引导骨骼再生。在常见的 BTE 策略中,需要具有模仿宿主骨微结构的 3D 支架。生物活性玻璃(BGs)作为 BTE 支架吸引了研究人员的注意,因为在某些配方中它们具有骨传导性和骨诱导性。体内动物模型允许在复杂的生理环境中理解和评估材料的性能,是临床试验前不可或缺的一步。本文的目的是首次综述已发表的研究,这些研究调查了 3D BG 支架在骨缺损动物模型中的体内骨再生能力,以更好地理解和评估此类支架在 BTE 中的应用进展和未来前景。文献分析表明,BG 支架的再生能力取决于几个因素;包括 BG 成分、制备方法、支架微结构和孔特征,以及支架预处理和支架是否加载生长因子。此外,所选动物种类、缺陷大小和植入时间会影响支架的体内行为和结果。文献综述还清楚地表明,比较不同类型的生物活性玻璃支架在形成骨方面的能力存在困难。即使考虑到当前技术的局限性,动物骨缺损模型产生的结果为指导未来 BG 支架的设计提供了重要的信息来源。

意义声明

生物活性玻璃是骨组织工程中越来越多的研究努力的中心,因为世界各地越来越多的研究小组正在研究这种类型的生物材料。然而,文献中没有以前的综述专门涵盖生物活性玻璃支架在骨缺损动物模型中的性能研究。这是本综述的主题,我们在其中全面分析了该领域的所有现有文献。因此,该综述填补了生物材料文献中的空白,为对生物活性玻璃感兴趣的研究人员提供了一个广泛的信息平台,特别是在体内模型的结果方面。涵盖了不同成分的生物活性玻璃支架在相关骨缺损模型中的测试。

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