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熔融静电纺丝写入法制备医用聚己内酯支架用于口腔骨再生的体外初步研究。

Medical-grade polycaprolactone scaffolds made by melt electrospinning writing for oral bone regeneration - a pilot study in vitro.

机构信息

Department of Oral and Maxillofacial Plastic Surgery, University Hospital Würzburg, Pleicherwall 2, 97080, Würzburg, Germany.

Department for Functional Materials in Medicine and Dentistry, University Hospital Würzburg, Pleicherwall 2, 97080, Würzburg, Germany.

出版信息

BMC Oral Health. 2019 Feb 1;19(1):28. doi: 10.1186/s12903-019-0717-5.

Abstract

BACKGROUND

The spectrum of indications for the use of membranes and scaffolds in the field of oral and maxillofacial surgery includes, amongst others, guided bone regeneration (GBR). Currently available membrane systems face certain disadvantages such as difficult clinical handling, inconsistent degradation, undirected cell growth and a lack of stability that often complicate their application. Therefore, new membranes which can overcome these issues are of great interest in this field.

METHODS

In this pilot study, we investigated polycaprolactone (PCL) scaffolds intended to enhance oral wound healing by means of melt electrospinning writing (MEW), which allowed for three-dimensional (3D) printing of micron scale fibers and very exact fiber placement. A singular set of box-shaped scaffolds of different sizes consisting of medical-grade PCL was examined and the scaffolds' morphology was evaluated via scanning electron microscopy (SEM). Each prototype sample with box sizes of 225 μm, 300 μm, 375 μm, 450 μm and 500 μm was assessed for cytotoxicity and cell growth by seeding each scaffold with human osteoblast-like cell line MG63.

RESULTS

All scaffolds demonstrated good cytocompatibility according to cell viability, protein concentration, and cell number. SEM analysis revealed an exact fiber placement of the MEW scaffolds and the growth of viable MG63 cells on them. For the examined box-shaped scaffolds with pore sizes between 225 μm and 500 μm, a preferred box size for initial osteoblast attachment could not be found.

CONCLUSIONS

These well-defined 3D scaffolds consisting of medical-grade materials optimized for cell attachment and cell growth hold the key to a promising new approach in GBR in oral and maxillofacial surgery.

摘要

背景

口腔颌面外科学领域中使用膜和支架的适应证范围广泛,包括引导骨再生(GBR)。目前可用的膜系统存在一些缺点,例如临床处理困难、降解不一致、细胞生长无方向性和缺乏稳定性,这些缺点常常使它们的应用复杂化。因此,在该领域中,具有克服这些问题的新型膜具有很大的研究兴趣。

方法

在这项初步研究中,我们通过熔融静电纺丝书写(MEW)研究了聚己内酯(PCL)支架,旨在通过熔融静电纺丝书写(MEW)增强口腔伤口愈合,这允许对微米级纤维进行三维(3D)打印和非常精确的纤维放置。研究了一组由不同尺寸的盒状支架组成的医用级 PCL 支架,通过扫描电子显微镜(SEM)评估了支架的形态。对每个具有 225μm、300μm、375μm、450μm 和 500μm 盒尺寸的原型样品进行细胞毒性和细胞生长评估,通过将人成骨样细胞系 MG63 接种到每个支架上来进行。

结果

所有支架的细胞活力、蛋白质浓度和细胞数量均显示出良好的细胞相容性。SEM 分析显示 MEW 支架具有精确的纤维放置,以及活的 MG63 细胞在其上的生长。对于所研究的具有 225μm 至 500μm 孔径的盒状支架,未找到初始成骨细胞附着的优选盒尺寸。

结论

这些由医用级材料制成的具有明确定义的 3D 支架经过优化,可促进细胞附着和细胞生长,为口腔颌面外科 GBR 提供了一种有前途的新方法。

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