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Microneedles from Fishscale-Nanocellulose Blends Using Low Temperature Mechanical Press Method

机译:鱼鳞-纳米纤维素共混物的微针低温机械压制法

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摘要

Fish scale biopolymer blended with nanocellulose crystals is used for production of microneedles applying mechanical press microfabrication and the effect of nanocellulose on microfabrication, water absorption, moisture stability and mechanical properties of the microneedles is reported. The results show that microneedles produced from the nanocellulose loaded fish scale biopolymer requires higher temperature for micromolding (80 ± 5 °C) than microneedles from only fish scale biopolymer, which were moldable at 50 ± 5 °C. The mechanical properties of the fish scale biopolymer-nanocellulose (FSBP-NC) films showed that the addition of nanocellulose (NC) resulted in lower elongation and higher tensile stress compared to fish scale biopolymer (FSBP) films. The nanocellulose also prevented dissolution of the needles and absorbed up to 300% and 234% its own weight in water (8% and 12% w/w NC/FSBP), whereas FSBP films dissolved completely within 1 min, Indicating that the FSBP-NC films can be used to produce microneedles with prolonged dissolution rate. FTIR spectrometry of the FSBP films was compared with the FSBP-NC films and the NC gels. The FTIR showed typical peaks for fish scale polymer and nanocellulose with evidence of interactions. SEM micrographs showed relatively good dispersion of NC in FSBP at both NC contents corresponding to 8% and 12% w/w NC/FSBP respectively.
机译:将鱼鳞生物聚合物与纳米纤维素晶体混合用于通过机械压力微加工生产微针,并报道了纳米纤维素对微针的微加工,吸水率,水分稳定性和机械性能的影响。结果表明,由纳米纤维素负载的鱼鳞生物聚合物生产的微针比仅由鱼鳞生物聚合物生产的微针在更高的温度(80±5°C)可在50±5°C下模塑。鱼鳞生物聚合物-纳米纤维素(FSBP-NC)膜的机械性能表明,与鱼鳞生物聚合物(FSBP)膜相比,添加纳米纤维素(NC)导致较低的伸长率和较高的拉伸应力。纳米纤维素还防止了针头的溶解,并吸收了高达300%和234%的自重在水中(8%和12%w / w NC / FSBP),而FSBP薄膜在1分钟内完全溶解,表明FSBP- NC膜可用于生产溶解速度延长的微针。将FSBP膜的FTIR光谱与FSBP-NC膜和NC凝胶进行了比较。 FTIR显示出鱼鳞聚合物和纳米纤维素的典型峰,并有相互作用的证据。 SEM显微照片显示,在NC含量分别为8%和12%w / w NC / FSBP时,NC在FSBP中的分散性相对较好。

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