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首页> 外文期刊>Biotechnology Progress >Using in situ nanocellulose-coating technology based on dynamic bacterial cultures for upgrading conventional biomedical materials and reinforcing nanocellulose hydrogels
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Using in situ nanocellulose-coating technology based on dynamic bacterial cultures for upgrading conventional biomedical materials and reinforcing nanocellulose hydrogels

机译:使用基于动态细菌培养的原位纳米纤维素包衣技术来升级常规生物医学材料并增强纳米纤维素水凝胶

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摘要

Bacterial nanocellulose (BNC) is a microbial nanofibrillar hydrogel with many potential applications. Its use is largely restricted by insufficient strength when in a highly swollen state and by inefficient production using static cultivation. In this study, an in situ nanocellulose-coating technology created a fabric-frame reinforced nanocomposite of BNC hydrogel with superior strength but retained BNC native attributes. By using the proposed technology, production time could be reduced from 10 to 3 days to obtain a desirable hydrogel sheet with approximately the same thickness. This novel technology is easier to scale up and is more suitable for industrial-scale manufacture. The mechanical properties (tensile strength, suture retention strength) and gel characteristics (water holding, absorption and wicking ability) of the fabric-reinforced BNC hydrogel were investigated and compared with those of ordinary BNC hydrogel sheets. The results reveal that the fabric-reinforced BNC hydrogel was equivalent with regard to gel characteristics, and exhibited a qualitative improvement with regard to its mechanical properties. For more advanced applications, coating technology via dynamic bacterial cultures could be used to upgrade conventional biomedical fabrics, i.e. medical cotton gauze or other mesh materials, with nanocellulose. (c) 2016 American Institute of Chemical Engineers Biotechnol. Prog., 32:1077-1084, 2016
机译:细菌纳米纤维素(BNC)是一种具有许多潜在应用的微生物纳米原纤维水凝胶。当其处于高度溶胀状态时,强度不足和使用静态栽培的生产效率低下,在很大程度上限制了其使用。在这项研究中,原位纳米纤维素涂层技术创建了一种织物框架增强的BNC水凝胶纳米复合材料,具有较高的强度,但保留了BNC的固有属性。通过使用提出的技术,可以将生产时间从10天减少到3天,以获得具有大致相同厚度的理想水凝胶片。这项新技术更易于扩展,更适合于工业规模的制造。研究了织物增强的BNC水凝胶的机械性能(拉伸强度,缝合线保持强度)和凝胶特性(保水,吸收和芯吸能力),并将其与普通BNC水凝胶片进行了比较。结果表明,织物增强的BNC水凝胶在凝胶特性方面是等效的,并且在其机械性能方面表现出质的改进。对于更高级的应用,可以使用通过动态细菌培养的涂覆技术来用纳米纤维素来升级常规的生物医学织物,即医用棉纱布或其他网状材料。 (c)2016美国化学工程师学会生物技术学会。 Prog。,32:1077-1084,2016

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