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4D printing smart biomedical scaffolds with novel soybean oil epoxidized acrylate

机译:新型大豆油环氧化丙烯酸酯的4D打印智能生物医学支架

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摘要

Photocurable, biocompatible liquid resins are highly desired for 3D stereolithography based bioprinting. Here we solidified a novel renewable soybean oil epoxidized acrylate, using a 3D laser printing technique, into smart and highly biocompatible scaffolds capable of supporting growth of multipotent human bone marrow mesenchymal stem cells (hMSCs). Porous scaffolds were readily fabricated by simply adjusting the printer infill density; superficial structures of the polymerized soybean oil epoxidized acrylate were significantly affected by laser frequency and printing speed. Shape memory tests confirmed that the scaffold fixed a temporary shape at -18 °C and fully recovered its original shape at human body temperature (37 °C), which indicated the great potential for 4D printing applications. Cytotoxicity analysis proved that the printed scaffolds had significant higher hMSC adhesion and proliferation than traditional polyethylene glycol diacrylate (PEGDA), and had no statistical difference from poly lactic acid (PLA) and polycaprolactone (PCL). This research is believed to significantly advance the development of biomedical scaffolds with renewable plant oils and advanced 3D fabrication techniques.
机译:对于基于3D立体平版印刷的生物打印,非常需要光固化的生物相容性液态树脂。在这里,我们使用3D激光打印技术将一种新型的可再生大豆油环氧化丙烯酸酯固化为能够支持多能人骨髓间充质干细胞(hMSCs)生长的智能且高度生物相容的支架。只需调节打印机的填充密度即可轻松制造多孔支架。聚合大豆油环氧化丙烯酸酯的表面结构受激光频率和印刷速度的影响很大。形状记忆测试证实,该支架在-18°C下固定了一个临时形状,并在人体温度(37°C)下完全恢复了其原始形状,这表明4D打印应用具有巨大潜力。细胞毒性分析证明,与传统的聚乙二醇二丙烯酸酯(PEGDA)相比,印刷的支架具有更高的hMSC附着力和增殖能力,与聚乳酸(PLA)和聚己内酯(PCL)相比无统计学差异。相信这项研究将大大促进可再生植物油和先进的3D制造技术对生物医学支架的开发。

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