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基于增塑聚(3-羟基丁酸酯)/聚(d,l-丙交酯)共混物的用于骨组织工程的熔融沉积成型3D打印复合材料

FDM 3D Printed Composites for Bone Tissue Engineering Based on Plasticized Poly(3-hydroxybutyrate)/poly(d,l-lactide) Blends.

作者信息

Melčová Veronika, Svoradová Kateřina, Menčík Přemysl, Kontárová Soňa, Rampichová Michala, Hedvičáková Věra, Sovková Věra, Přikryl Radek, Vojtová Lucy

机构信息

Institute of Material Chemistry, Faculty of Chemistry, Brno University of Technology, Purkyňova 464/118, 612 00 Brno, Czech Republic.

Institute of Experimental Medicine, Czech Academy of Sciences, Vídeňská 1083, 142 20 Prague 4, Czech Republic.

出版信息

Polymers (Basel). 2020 Nov 27;12(12):2806. doi: 10.3390/polym12122806.

Abstract

Tissue engineering is a current trend in the regenerative medicine putting pressure on scientists to develop highly functional materials and methods for scaffolds' preparation. In this paper, the calibrated filaments for Fused Deposition Modeling (FDM) based on plasticized poly(3-hydroxybutyrate)/poly(d,l-lactide) 70/30 blend modified with tricalcium phosphate bioceramics were prepared. Two different plasticizers, Citroflex (-Butyryl tri--hexyl citrate) and Syncroflex (oligomeric adipate ester), both used in the amount of 12 wt%, were compared. The printing parameters for these materials were optimized and the printability was evaluated by recently published warping test. The samples were studied with respect to their thermal and mechanical properties, followed by biological in vitro tests including proliferation, viability, and osteogenic differentiation of human mesenchymal stem cells. According to the results from differential scanning calorimetry and tensile measurements, the Citroflex-based plasticizer showed very good softening effect at the expense of worse printability and unsatisfactory performance during biological testing. On the other hand, the samples with Syncroflex demonstrated lower warping tendency compared to commercial polylactide filament with the warping coefficient one third lower. Moreover, the Syncroflex-based samples exhibited the non-cytotoxicity and promising biocompatibility.

摘要

组织工程是再生医学领域的当前趋势,这促使科学家们开发用于制备支架的高功能材料和方法。本文制备了基于磷酸三钙生物陶瓷改性的增塑聚(3-羟基丁酸酯)/聚(d,l-丙交酯)70/30共混物的熔融沉积建模(FDM)校准长丝。比较了两种不同的增塑剂,用量均为12 wt%的柠檬酸丁酰三己酯(Citroflex)和低聚己二酸酯(Syncroflex)。对这些材料的打印参数进行了优化,并通过最近发表的翘曲试验评估了可打印性。研究了样品的热性能和力学性能,随后进行了体外生物学测试,包括人间充质干细胞的增殖、活力和成骨分化。根据差示扫描量热法和拉伸测量结果,基于柠檬酸丁酰三己酯的增塑剂显示出非常好的软化效果,但代价是可打印性较差且在生物学测试期间性能不理想。另一方面,与商业聚乳酸长丝相比,含有低聚己二酸酯的样品翘曲趋势更低,翘曲系数低三分之一。此外,基于低聚己二酸酯的样品表现出无细胞毒性和良好的生物相容性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1adf/7761374/0879156322ad/polymers-12-02806-g009.jpg

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