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双相磷酸钙陶瓷在大鼠颅骨中的骨传导性评估:微观和组织计量学分析

Evaluation of Osteoconduction of Biphasic Calcium Phosphate Ceramic in the Calvaria of Rats: Microscopic and Histometric Analysis.

作者信息

Puttini Igor de Oliveira, Poli Pier Paolo, Maiorana Carlo, Vasconcelos Igor Rodrigues de, Schmidt Luis Eduardo, Colombo Luara Teixeira, Hadad Henrique, Santos Gabriel Mulinari Dos, Carvalho Paulo Sergio Perri de, Souza Francisley Ávila

机构信息

Department of Surgery and Integrated Clinic, Araçatuba Dental of School, São Paulo State University Júlio de Mesquita Filho-UNESP, Araçatuba, SP 16 015 050, Brazil.

Implant Center for Edentulism and Jawbone Atrophies, Maxillofacial Surgery and Odontostomatology Unit, Fondazione IRCSS Cà Granda Maggiore Policlinico Hospital, University of Milan, 20122 Milan, Italy.

出版信息

J Funct Biomater. 2019 Jan 17;10(1):7. doi: 10.3390/jfb10010007.

Abstract

(1) Background: Evaluate the osteoconduction capability of a biphasic calcium phosphate (BCP) ceramic composed of hydroxyapatite and β-tricalcium phosphate 60%/40% in a rat model. (2) Methods: In the calvarial bone of 54 adult male rats, 7-mm diameter critical size defects were performed. The animals were randomly allocated to three experimental groups according to the type of material: blood clot (BCG), blood clot covered with a bovine-derived collagen membrane (MBCG), and BCP ceramic covered with a bovine-derived collagen membrane (BCPG). In each group, 6 animals were euthanatized at post-operative days 7, 30, and 60 for histological and histometric analysis. (3) Results: The qualitative analysis revealed the persistence of the collagen membrane at seven days, with no relevant newly bone formation in all groups. At 30 days, centripetal bone formation was observed residual particles of the biomaterial surrounded by fibroblasts noted in the BCPG. At 60 days, while BCG and MBCG showed a partial maturation with the central part of the defect populated by a fibrous connective tissue, in the BCPG the critical area was entirely occupied by newly formed bone. In the intra groups analysis was noted a significant increase in new bone formation during the experimental period ( < 0.05). At 60 days, BCPG showed a higher percentage area of new bone formation ( < 0.05). (4) Conclusion: BCP promoted a new bone formation by osteoconduction and might be considered a valid alternative in bone regeneration procedures.

摘要

(1) 背景:在大鼠模型中评估由60%羟基磷灰石和40%β - 磷酸三钙组成的双相磷酸钙(BCP)陶瓷的骨传导能力。(2) 方法:在54只成年雄性大鼠的颅骨上制造直径为7毫米的临界尺寸骨缺损。根据材料类型将动物随机分为三个实验组:血凝块(BCG)、覆盖牛源胶原膜的血凝块(MBCG)和覆盖牛源胶原膜的BCP陶瓷(BCPG)。每组中,分别在术后第7天、30天和60天对6只动物实施安乐死,进行组织学和组织计量学分析。(3) 结果:定性分析显示,胶原膜在第7天持续存在,所有组均未观察到相关的新骨形成。在第30天,观察到向心性骨形成,在BCPG组中注意到生物材料的残留颗粒被成纤维细胞包围。在第60天,虽然BCG和MBCG显示出部分成熟,缺损中心部分被纤维结缔组织占据,但在BCPG组中,关键区域完全被新形成的骨组织占据。在组内分析中,注意到实验期间新骨形成有显著增加(<0.05)。在第60天,BCPG组显示出新骨形成的百分比面积更高(<0.05)。(4) 结论:BCP通过骨传导促进新骨形成,可能被认为是骨再生程序中的一种有效替代物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0515/6462940/f8f3fb29bb12/jfb-10-00007-g001.jpg

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