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用于评估可植入生物材料细胞表面相互作用的骨球模型

Osteosphere Model to Evaluate Cell-Surface Interactions of Implantable Biomaterials.

作者信息

Brochado Ana Carolina Batista, de Souza Victor Hugo, Correa Joice, Dos Anjos Suzana Azevedo, de Almeida Barros Mourão Carlos Fernando, Cardarelli Angelo, Montemezzi Pietro, Gameiro Vinicius Schott, Pereira Mariana Rodrigues, Mavropoulos Elena, Alves Gutemberg Gomes

机构信息

Post-Graduation Program in Science & Biotechnology, Institute of Biology, Fluminense Federal University, Niteroi 24210-201, Brazil.

Clinical Research Unit, Antônio Pedro University Hospital, Fluminense Federal University, Niteroi 24033-900, Brazil.

出版信息

Materials (Basel). 2021 Oct 7;14(19):5858. doi: 10.3390/ma14195858.

Abstract

Successful biomaterials for bone tissue therapy must present different biocompatible properties, such as the ability to stimulate the migration and proliferation of osteogenic cells on the implantable surface, to increase attachment and avoid the risks of implant movement after surgery. The present work investigates the applicability of a three-dimensional (3D) model of bone cells (osteospheres) in the evaluation of osteoconductive properties of different implant surfaces. Three different titanium surface treatments were tested: machined (MA), sandblasting and acid etching (BE), and Hydroxyapatite coating by plasma spray (PSHA). The surfaces were characterized by Scanning Electron Microscopy (SEM) and atomic force microscopy (AFM), confirming that they present very distinct roughness. After seeding the osteospheres, cell-surface interactions were studied in relation to cell proliferation, migration, and spreading. The results show that BE surfaces present higher densities of cells, leaving the aggregates towards than titanium surfaces, providing more evidence of migration. The PSHA surface presented the lowest performance in all analyses. The results indicate that the 3D model allows the focal analysis of an in vitro cell/surfaces interaction of cells and surfaces. Moreover, by demonstrating the agreement with the clinical data observed in the literature, they suggest a potential use as a predictive preclinical tool for investigating osteoconductive properties of novel biomaterials for bone therapy.

摘要

用于骨组织治疗的成功生物材料必须具备不同的生物相容性特性,例如能够刺激成骨细胞在可植入表面迁移和增殖,增强附着并避免术后植入物移动的风险。本研究调查了骨细胞三维(3D)模型(骨球)在评估不同植入表面骨传导特性方面的适用性。测试了三种不同的钛表面处理方式:机械加工(MA)、喷砂和酸蚀(BE)以及等离子喷涂羟基磷灰石涂层(PSHA)。通过扫描电子显微镜(SEM)和原子力显微镜(AFM)对表面进行表征,证实它们具有非常明显的粗糙度。接种骨球后,研究了细胞与表面的相互作用与细胞增殖、迁移和铺展的关系。结果表明,BE表面的细胞密度更高,与钛表面相比,细胞从聚集体中迁出的情况更多,提供了更多迁移的证据。PSHA表面在所有分析中表现最差。结果表明,3D模型能够对细胞与表面的体外相互作用进行重点分析。此外,通过证明与文献中观察到的临床数据一致,它们表明该模型有潜力作为一种预测性临床前工具,用于研究新型骨治疗生物材料的骨传导特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8bc9/8510223/70aaac206fd6/materials-14-05858-g001.jpg

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