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Eco-friendly and biodegradable cellulose hydrogels produced from low cost okara: towards non-toxic flexible electronics

机译:从低成本生产的环保和可生物降解的纤维素水凝胶:朝向无毒的柔性电子器件

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With increasing resource shortage and environmental pollution, it is preferable?to utilize materials which are sustainable and biodegradable. Side-streams products generated from the food processing industry is one potential avenue?that can be used in a wide range of applications. In this study, the food by-product okara was effectively reused for the extraction of cellulose. Then, the okara cellulose was further employed to fabricate cellulose hydrogels with favorable mechanical properties, biodegrablability, and non-cytotoxicity. The results showed that it could be biodegraded in soil within 28 days, and showed no cytotoxicity on NIH3T3 cells. As a proof of concept, a demostration of wearable and biocompatible strain sensor was achieved, which allowed a good and stable detection of human body movement behaviors. The okara-based hydrogels could provide an alternative platform for further physical and/or chemical modification towards tissue engineering, medical supplies, or smart biomimetic soft materials.
机译:随着资源短缺和环境污染的增加,优选使用可持续和可生物降解的材料。从食品加工行业产生的侧流产品是一个潜在的大道?可用于各种应用。在这项研究中,食品副产物Okara被有效地重复使用纤维素的提取。然后,进一步用于制造具有有利机械性能,生物重症性和非细胞毒性的纤维素水凝胶的牛肉纤维素。结果表明,在28天内,它可以在土壤中生物降解,并在NIH3T3细胞上显示细胞毒性。作为概念证据,实现了可穿戴和生物相容性应变传感器的发出,其允许对人体运动行为的良好和稳定的检测。基于Okara的水凝胶可以为组织工程,医疗用品或智能仿生软材料提供进一步的物理和/或化学改性的替代平台。

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