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用于定制支架的3D打印可生物降解功能性温度刺激形状记忆聚合物。

3D printed biodegradable functional temperature-stimuli shape memory polymer for customized scaffoldings.

作者信息

Pandey Akash, Singh Gurminder, Singh Sunpreet, Jha Kanishak, Prakash Chander

机构信息

School of Mechanical Engineering, Lovely Professional University, Phagwara, India.

SIMAP, University of Grenoble Alpes, Genoble, France.

出版信息

J Mech Behav Biomed Mater. 2020 Aug;108:103781. doi: 10.1016/j.jmbbm.2020.103781. Epub 2020 Apr 18.

Abstract

Shape memory polymers (SMPs) and their composites have become the prominent choice of the various industries owing to the unique inherent characteristics which can be stimulated through the exposure of external stimuli. The use of SMPs in the three-dimensional (3D) technologies has produced enormous advantages. However, the potential of SMPs in 3D printing has limitedly explored. In the present study, an investigation was performed to study the shape memory effect (SME) of the fused filament fabricated (FFF) chitosan (CS) reinforced poly-lactic-acid (PLA) based porous scaffolds. Firstly, the composite filaments, with 1, 1.5, and 2% wt. of CS, were fabricated by using the twin-screw extrusion process, which was later used to print the test specimens at different infill density. The printed samples were selectively pre-elongated to 2.5 mm and then processed through direct heating, at 60-70 °C, for enabling the SME. It has been observed that the CS particles acted as rigid phases and interrupted the re-ordering of PLA chain. However, the scaffoldings showed 18.8% shape recovery at optimized process parametric settings. In addition, wettability and biocompatibility analyses of developed scaffoldings have also been performed to investigate the biological aspects of the developed scaffoldings. The stimulated samples found to be possessed with good wettability and cell proliferation. Overall, the 3D printed PLA/CS porous scaffoldings have shown significant shape recovery characteristics and are biologically active to be used as self-healing implants for acute bone deficiencies.

摘要

形状记忆聚合物(SMPs)及其复合材料因其独特的固有特性而成为各行业的首选,这些特性可通过外部刺激来激发。SMPs在三维(3D)技术中的应用产生了巨大优势。然而,SMPs在3D打印中的潜力尚未得到充分探索。在本研究中,进行了一项调查,以研究熔融长丝制造(FFF)的壳聚糖(CS)增强聚乳酸(PLA)基多孔支架的形状记忆效应(SME)。首先,通过双螺杆挤出工艺制备了含有1%、1.5%和2%重量比CS的复合长丝,随后用于以不同的填充密度打印测试样品。将打印后的样品选择性地预拉伸至2.5毫米,然后在60-70°C下通过直接加热进行处理,以实现形状记忆效应。据观察,CS颗粒起到了刚性相的作用,并中断了PLA链的重新排列。然而,在优化的工艺参数设置下,支架显示出18.8%的形状恢复率。此外,还对所开发支架的润湿性和生物相容性进行了分析,以研究其生物学特性。结果发现,经刺激的样品具有良好的润湿性和细胞增殖能力。总体而言,3D打印的PLA/CS多孔支架显示出显著的形状恢复特性,并且具有生物活性,可作为急性骨缺损的自愈植入物。

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