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用于生物打印的聚己内酯/羟基磷灰石生物医学复合材料:增强过程的综合解读

Biomedical Composites of Polycaprolactone/Hydroxyapatite for Bioplotting: Comprehensive Interpretation of the Reinforcement Course.

作者信息

Petousis Markos, Michailidis Nikolaos, Korlos Apostolos, Papadakis Vassilis, David Constantine, Sagris Dimitrios, Mountakis Nikolaos, Argyros Apostolos, Valsamos John, Vidakis Nectarios

机构信息

Department of Mechanical Engineering, Hellenic Mediterranean University, 71410 Heraklion, Greece.

Physical Metallurgy Laboratory, Mechanical Engineering Department, School of Engineering, Aristotle University of Thessaloniki, 54124 Thessaloniki, Greece.

出版信息

Polymers (Basel). 2024 Aug 24;16(17):2400. doi: 10.3390/polym16172400.

Abstract

Robust materials in medical applications are sought after and researched, especially for 3D printing in bone tissue engineering. Poly[ε-caprolactone] (PCL) is a commonly used polymer for scaffolding and other medical uses. Its strength is a drawback compared to other polymers. Herein, PCL was mixed with hydroxyapatite (HAp). Composites were developed at various concentrations (0.0-8.0 wt. %, 2.0 step), aiming to enhance the strength of PCL with a biocompatible additive in bioplotting. Initially, pellets were derived from the shredding of filaments extruded after mixing PCL and HAp at predetermined quantities for each composite. Specimens were then manufactured by bioplotting 3D printing. The samples were tested for their thermal and rheological properties and were also mechanically, morphologically, and chemically examined. The mechanical properties included tensile and flexural investigations, while morphological and chemical examinations were carried out employing scanning electron microscopy and energy dispersive spectroscopy, respectively. The structure of the manufactured specimens was analyzed using micro-computed tomography with regard to both their dimensional deviations and voids. PCL/HAp 6.0 wt. % was the composite that showed the most enhanced mechanical (14.6% strength improvement) and structural properties, proving the efficiency of HAp as a reinforcement filler in medical applications.

摘要

在医学应用中,人们一直在寻找和研究坚固的材料,特别是用于骨组织工程的3D打印。聚[ε-己内酯](PCL)是一种常用于支架和其他医学用途的聚合物。与其他聚合物相比,其强度是一个缺点。在此,PCL与羟基磷灰石(HAp)混合。以不同浓度(0.0 - 8.0 wt.%,步长为2.0)制备复合材料,旨在通过生物绘图中一种生物相容性添加剂来提高PCL的强度。最初,通过将PCL和HAp按每种复合材料的预定数量混合后挤出的长丝切碎得到颗粒。然后通过生物绘图3D打印制造样品。对样品进行了热性能和流变性能测试,并进行了机械、形态和化学检查。机械性能包括拉伸和弯曲研究,而形态和化学检查分别采用扫描电子显微镜和能量色散光谱进行。使用微计算机断层扫描分析制造样品的结构,包括尺寸偏差和孔隙率。PCL/HAp 6.0 wt.%是显示出机械性能(强度提高14.6%)和结构性能增强最多的复合材料,证明了HAp作为医学应用中增强填料的有效性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5b8f/11396925/d4b839efe561/polymers-16-02400-g001.jpg

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