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Antioxidant PLA Composites Containing Lignin for 3D Printing Applications: A Potential Material for Healthcare Applications

机译:含木质素的抗氧化剂PLA复合材料在3D打印应用中的应用:医疗保健应用的潜在材料

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摘要

Lignin (LIG) is a natural biopolymer with well-known antioxidant capabilities. Accordingly, in the present work, a method to combine LIG with poly(lactic acid) (PLA) for fused filament fabrication applications (FFF) is proposed. For this purpose, PLA pellets were successfully coated with LIG powder and a biocompatible oil (castor oil). The resulting pellets were placed into an extruder at 200 °C. The resulting PLA filaments contained LIG loadings ranging from 0% to 3% (w/w). The obtained filaments were successfully used for FFF applications. The LIG content affected the mechanical and surface properties of the overall material. The inclusion of LIG yielded materials with lower resistance to fracture and higher wettabilities. Moreover, the resulting 3D printed materials showed antioxidant capabilities. By using the 2,2-diphenyl-1-picrylhydrazyl (DPPH) method, the materials were capable of reducing the concentration of this compound up to ca. 80% in 5 h. This radical scavenging activity could be potentially beneficial for healthcare applications, especially for wound care. Accordingly, PLA/LIG were used to design meshes with different designs for wound dressing purposes. A wound healing model compound, curcumin (CUR), was applied in the surface of the mesh and its diffusion was studied. It was observed that the dimensions of the meshes affected the permeation rate of CUR. Accordingly, the design of the mesh could be modified according to the patient’s needs.
机译:木质素(LIG)是具有众所周知的抗氧化剂功能的天然生物聚合物。因此,在本工作中,提出了一种将LIG与聚乳酸(PLA)结合用于熔融长丝制造应用(FFF)的方法。为此,PLA药丸成功地用LIG粉和生物相容性油(蓖麻油)包衣。将所得粒料置于200℃的挤出机中。所得的PLA细丝的LIG含量为0%至3%(w / w)。所获得的长丝已成功用于FFF应用。 LIG含量影响整个材料的机械和表面性能。包含LIG产生的材料具有较低的抗断裂性和较高的润湿性。而且,所得的3D打印材料显示出抗氧化能力。通过使用2,2-二苯基-1-吡啶并肼基(DPPH)方法,该材料能够将这种化合物的浓度降低至约200克/升。 5小时内达到80%。这种根本的清除活性可能对医疗保健应用特别是伤口护理可能有益。因此,PLA / LIG用于设计具有不同设计的网格,以用于伤口包扎。将伤口愈合模型化合物姜黄素(CUR)应用于网孔表面,并研究其扩散。观察到网孔的尺寸影响CUR的渗透率。因此,网格的设计可以根据患者的需要进行修改。

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