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3D Bioprinting of Carboxymethylated-Periodate Oxidized Nanocellulose Constructs for Wound Dressing Applications

机译:羧甲基化含量氧化纳米纤维素构建体的3D Bioplint用于伤口敷料应用

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摘要

Nanocellulose has a variety of advantages, which make the material most suitable for use in biomedical devices such as wound dressings. The material is strong, allows for production of transparent films, provides a moist wound healing environment, and can form elastic gels with bioresponsive characteristics. In this study, we explore the application of nanocellulose as a bioink for modifying film surfaces by a bioprinting process. Two different nanocelluloses were used, prepared with TEMPO mediated oxidation and a combination of carboxymethylation and periodate oxidation. The combination of carboxymethylation and periodate oxidation produced a homogeneous material with short nanofibrils, having widths <20 nm and lengths <200 nm. The small dimensions of the nanofibrils reduced the viscosity of the nanocellulose, thus yielding a material with good rheological properties for use as a bioink. The nanocellulose bioink was thus used for printing 3D porous structures, which is exemplified in this study. We also demonstrated that both nanocelluloses did not support bacterial growth, which is an interesting property of these novel materials.
机译:纳米纤维素具有各种优点,使材料制造最适合于诸如伤口敷料的生物医学装置。该材料强,允许生产透明薄膜,提供湿润的伤口愈合环境,并且可以形成具有生物凝胶的弹性凝胶。在这项研究中,我们探讨纳米纤维素作为生物链的应用,用于通过生物印刷工艺改变膜表面。使用两种不同的纳米纤维素,用Tempo介导的氧化制备和羧甲基化和周期氧化的组合。羧甲基化和周期氧化的组合产生具有短纳米纤维的均匀材料,具有宽度<20nm和长度<200nm。纳米纤维的小尺寸降低了纳米纤维素的粘度,从而产生具有良好流变性能的材料用作生物旋。因此,纳米纤维素生物链用于印刷3D多孔结构,这在该研究中举例说明。我们还证明两种纳米纤维素都不支持细菌生长,这是这些新材料的有趣性质。

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