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Preparation and properties of cellulose nanocrystals, gelatin, hyaluronic acid composite hydrogel as wound dressing

机译:纤维素纳米晶体,明胶,透明质酸复合水凝胶作为伤口敷料的制备与性能

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Gelatin (GA), hyaluronic acid (HA) and cellulose nanocrystals (CNC) are promising materials for skin wound care. In this study the GA-HA-CNC hydrogels were prepared by cross-linking and freeze-drying. The composition and mechanism of GA-HA-CNC hydrogels were confirmed by FTIR. The morphology and pore size were obtained by SEM. We accessed the physical property from rheological results and swelling ratio. NIH-3T3 cells were inoculated into the hydrogels and cultured for different days, then we analyzed the cytotoxicity of the prepared hydrogels by CCK-8 methods and live/dead pictorial diagram using staining kits. FTIR revealed the combination between GA, HA and CNC was attributed to the amide bond and hydrogen bonding. SEM results showed that the drying GA-HA-CNC hydrogels were spongy, with the pore diameter about 80-120 mu m. CNC significantly enhanced the property of the hydrogels and play a vital role according to the rheology and swelling results. The cells culture results showed that NIH-3T3 cells can attached to, grow, and proliferate well on the GA-HA-CNC hydrogels. In conclusion, the natural GA-HA-CNC hydrogel has great potential for the skin wound repair.
机译:明胶(GA),透明质酸(HA)和纤维素纳米晶(CNC)是皮肤伤口护理的有希望的材料。在该研究中,通过交联和冷冻干燥制备Ga-HA-CNC水凝胶。通过FTIR证实了GA-HA-CNC水凝胶的组成和机制。通过SEM获得的形态和孔径。我们从流变率和膨胀比中进入了物理性质。将NiH-3T3细胞接种到水凝胶中并培养不同的日子,然后通过CCK-8方法和使用染色试剂盒分析制备的水凝胶的细胞毒性。 FTIR揭示了Ga,Ha和CNC之间的组合归因于酰胺键和氢键。 SEM结果表明,干燥Ga-ha-CNC水凝胶是海绵状的,孔径约80-120μm。 CNC显着增强了水凝胶的性质,并根据流变学和溶胀结果发挥重要作用。细胞培养结果表明,NIH-3T3细胞可以在Ga-Ha-CNC水凝胶上加入,生长和增殖孔。总之,天然GA-HA-CNC水凝胶具有巨大的皮肤伤口修复潜力。

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