Evaluation of Bone Regeneration Efficacy in a Rabbit Model of Femoral Condyles Defect by Polyphenols-Containing Bone Filler

G. Iviglia, C. Cassinelli, José Luis Peris Serra, Víctor Javier Primo Capella, M. Morra
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Abstract

Replacement of bone loss or reconstruction of bone defect is still a clinical challenge. Different type of bone substitutes are used in clinical practice for treating bone defect caused by trauma, osteoporosis or dental pathology such as periodontitis [1,2]. The mode of action of the biomaterials available on the market mainly relies on mechanical support and is thus limited to providing a functional scaffold for cell adhesion. Synthetic bone fillers, mostly based on calcium phosphate materials, have been widely used due to their good reproducibility, biocompatibility, non-immunogenicity, and also because they offer the opportunity of advanced material engineering [3,4]. Hydroxyapatite (HA) and β-tricalcium phosphate (β-TCP) are widely used in bone tissue engineering as bone filler particles [5,6].
含多酚骨填充物对兔股骨髁缺损模型骨再生效果的评价
骨丢失的置换或骨缺损的重建仍是临床面临的挑战。不同类型的骨替代品在临床实践中用于治疗创伤、骨质疏松或牙周炎等口腔病理引起的骨缺损[1,2]。市场上可用的生物材料的作用方式主要依赖于机械支持,因此仅限于提供细胞粘附的功能性支架。合成骨填充物主要以磷酸钙材料为基础,由于其具有良好的可重复性、生物相容性、非免疫原性,同时也为先进的材料工程提供了机会,因此得到了广泛的应用[3,4]。羟基磷灰石(HA)和β-磷酸三钙(β-TCP)作为骨填充颗粒广泛应用于骨组织工程中[5,6]。
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