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用于牙科骨再生的硅/聚乳酸-羟基乙酸共聚物改性蛋壳衍生羟基磷灰石材料的制备及其生物相容性

Elaboration and Biocompatibility of an Eggshell-Derived Hydroxyapatite Material Modified with Si/PLGA for Bone Regeneration in Dentistry.

作者信息

Gutiérrez-Prieto Sandra Janeth, Fonseca Luis F, Sequeda-Castañeda Luis Gonzalo, Díaz Kelly J, Castañeda Linet Y, Leyva-Rojas José A, Salcedo-Reyes Juan Carlos, Acosta Adriana P

机构信息

Department of Dental Systems, Dentistry Research Centre, School of Dentistry, Pontificia Universidad Javeriana, Bogotá 110231, Colombia.

Resident in Pathology and Oral Surgery, School of Dentistry, Pontificia Universidad Javeriana, Bogotá 110231, Colombia.

出版信息

Int J Dent. 2019 Dec 5;2019:5949232. doi: 10.1155/2019/5949232. eCollection 2019.

Abstract

Hydroxyapatite (HAp) is the most commonly used biomaterial in modern bone regeneration studies because of its chemical similarity to bone, biocompatibility with different polymers, osteoconductivity, low cost, and lack of immune response. However, to overcome the disadvantages of HAp, which include fragility and low mechanical strength, current studies typically focus on property modification through the addition of other materials. . To develop and evaluate the biocompatibility of a HAp material extracted from eggshells and modified with silicon (Si) and poly(lactic-co-glycolic) acid (PLGA). . An in vitro experimental study in which a HAp material prepared from eggshells was synthesized by wet chemical and conventional chemical precipitation. Subsequently, this material was reinforced with Si/PLGA using the freezing/lyophilization method, and then osteoblast cells were seeded on the experimental material (HAp/Si/PLGA). To analyse the biocompatibility of this composite material, scanning electron microscopy (SEM) and fluorescence confocal microscopy (FCM) techniques were used. PLGA, bovine bone/PLGA (BB/PLGA), and HAp/PLGA were used as controls. . A cellular viability of 96% was observed for the experimental HAp/Si/PLGA material as well as for the PLGA. The viability for the BB/PLGA material was 90%, and the viability for the HAp/PLGA was 86%. Cell adhesion was observed on the exterior surface of all materials. However, a continuous monolayer and the presence of filopodia were observed over both external and internal surface of the experimental materials. . The HAp/Si/PLGA material is highly biocompatible with osteoblastic cells and can be considered promising for the construction of three-dimensional scaffolds for bone regeneration in dentistry.

摘要

羟基磷灰石(HAp)是现代骨再生研究中最常用的生物材料,因为它与骨的化学性质相似,与不同聚合物具有生物相容性,具有骨传导性,成本低且无免疫反应。然而,为了克服HAp的缺点,包括脆性和低机械强度,目前的研究通常集中于通过添加其他材料来改性其性能。 开发并评估从蛋壳中提取并用硅(Si)和聚(乳酸-共-乙醇酸)(PLGA)改性的HAp材料的生物相容性。 一项体外实验研究,其中通过湿化学和常规化学沉淀法合成了由蛋壳制备的HAp材料。随后,使用冷冻/冻干法用Si/PLGA对该材料进行增强,然后将成骨细胞接种在实验材料(HAp/Si/PLGA)上。为了分析这种复合材料的生物相容性,使用了扫描电子显微镜(SEM)和荧光共聚焦显微镜(FCM)技术。PLGA、牛骨/PLGA(BB/PLGA)和HAp/PLGA用作对照。 实验性HAp/Si/PLGA材料以及PLGA的细胞活力均观察到为96%。BB/PLGA材料的活力为90%,HAp/PLGA的活力为86%。在所有材料的外表面均观察到细胞粘附。然而,在实验材料的内外表面均观察到连续的单层以及丝状伪足的存在。 HAp/Si/PLGA材料与成骨细胞具有高度生物相容性,可被认为在牙科骨再生三维支架构建方面具有前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4704/6915137/315f67ea1402/IJD2019-5949232.001.jpg

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