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首页> 外文期刊>Food Hydrocolloids >Zinc oxide/clove essential oil incorporated type B gelatin nanocomposite formulations: A proof-of-concept study for 3D printing applications
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Zinc oxide/clove essential oil incorporated type B gelatin nanocomposite formulations: A proof-of-concept study for 3D printing applications

机译:氧化锌/丁香精油掺入的B型明胶纳米复合材料配方:3D打印应用的概念验证研究

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Bioactive bovine skin gelatin (BSG)/zinc oxide (ZnO)/clove essential oil (CEO) nanocomposites films were fabricated by a solution-cast. The suitable combinations of ZnO (2 wt%) and CEO (25 wt%) improve the desirable film properties, namely, elongation at break (EAB), optical, structural, thermal, barrier and microbiological properties. XRD confirmed the presence of ZnO in the gelatin-composites and the highest thermal stability of the composites was evident by the TGA thermograms. Currently, additive manufacturing has received serious attention in the development of complex structures in the tissue engineering and allied areas, with tailored properties. In this work, the optimized formulation was further explored for its potential applications in 3D (bio) printing. The BSG/ZnO/CEO blend was converted into a semi-solid viscous mass by means of a twin-screw extrusion process. The extruded materials were utilized further to develop 3D printable bioinks in the presence of sodium alginate polymer. Round shaped thin alginate-based films (D x H = 10 mm x 1 mm) were printed via a commercial 3D printer (cross-linked with 100 mM CaCl2 solution). This technique could bring advantages and superiority over the conventional processes, with the competence of generating reproducible, tailored, and functional structures, which could effectively endorse regeneration of different tissues and can be used across the disciplines including food packaging and food printing.
机译:通过溶液流延制备生物活性牛皮肤明胶(BSG)/氧化锌(ZnO)/丁香精油(CEO)纳米复合材料薄膜。 ZnO(2重量%)和CEO(25重量%)的合适组合改善了所需的膜性质,即断裂伸长率(EAB),光学,结构,热,阻隔和微生物性质。 XRD证实明胶复合物中存在ZnO,并且通过TGA热分析图证明了复合物的最高热稳定性。目前,增材制造在组织工程和相关领域具有定制性能的复杂结构的开发中受到了严重的关注。在这项工作中,针对其在3D(生物)打印中的潜在应用,进一步探索了优化的配方。通过双螺杆挤出工艺将BSG / ZnO / CEO共混物转化为半固体粘性物质。在海藻酸钠聚合物存在下,挤出的材料可进一步用于开发3D可打印生物墨水。通过商用3D打印机(与100 mM CaCl2溶液交联)打印圆形藻酸盐薄膜(D x H = 10 mm x 1 mm)。该技术可以产生优于传统工艺的优势和优势,具有产生可复制,定制和功能性结构的能力,可以有效地支持不同组织的再生,并且可以在包括食品包装和食品印刷在内的各个领域使用。

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