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首页> 外文期刊>Cellulose >Bacterial cellulose/hyaluronic acid nanocomposites production through co-culturing Gluconacetobacter hansenii and Lactococcus lactis under different initial pH values of fermentation media
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Bacterial cellulose/hyaluronic acid nanocomposites production through co-culturing Gluconacetobacter hansenii and Lactococcus lactis under different initial pH values of fermentation media

机译:细菌纤维素/透明质酸纳米复合材料通过共同培养的葡聚糖杆菌和乳酸乳晕乳酸乳酸乳酸乳糖在发酵培养基的不同初始pH值下产生

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摘要

Providing additives into the culture media is a traditional method to manufacture bacterial cellulose (BC) based nanocomposites. This study employed a novel fermentation process, which is to co-culture Gluconacetobacter hansenii (G. hansenii) with genetically modified Lactococcus lactis (L. lactis) under static conditions, to synthesize BC/HA (hyaluronic acid) nanocomposites. The HA concentration produced by L. lactis and the dry weight of BC/HA during co-culture were regulated by the initial pH values of culture media. The incorporation of HA into the cellulose network increased the crystal sizes when the initial pH values were at 7.0, 6.2, and 5.5. The strain at break was also increased while Young's modulus was decreased when comparing BC/HA to pure BC produced under the initial pH values of culture media at 7.0 and 6.2. When the initial pH value was 4.0, the HA concentration in the culture media exhibited the lowest level observed, which was 20.4 +/- 2.3 mg/L. The BC/HA composite synthesized under this condition exhibited an improved Young's modulus of 5029 +/- 1743 MPa from 2705 +/- 656 MPa associated with the pure BC. The FESEM images showed that the presence of HA dramatically changed the distribution of ribbon width in BC/HA compared to that of pure BC. The BC/HA produced by co-culture fermentation didn't need to add extra and expensive HA during production and could be used in biomedical applications such as wound dressing and tissue engineering.
机译:向培养基中提供添加剂是一种制造基于细菌纤维素(BC)的纳米复合材料的传统方法。本研究采用了一种新型发酵过程,其是在静态条件下与遗传修饰的乳酸乳酸乳酸乳酸(L.乳酸)共同培养Gluconacetobacter Hansenii(G. hansenii),以合成BC / HA(透明质酸)纳米复合材料。通过培养基的初始pH值调节由L.乳酸菌产生的HA浓度和BC / HA的干重。当初始pH值为7.0,6.2和5.5时,将HA掺入纤维素网络增加晶体尺寸。当比较BC / HA在7.0和6.2的培养基的初始pH值下产生的BC / HA到纯BC时,杨氏的模量减少。当初始pH值为4.0时,培养基中的HA浓度显示出观察到的最低水平,即20.4 +/- 2.3 mg / L.在该条件下合成的BC / HA复合材料表现出与纯BC相关的2705 +/- 656MPa的5029 +/- 1743MPa的改善的杨氏模量。与纯BC的相比,FeSEM图像显示HA的存在显着改变了BC / HA中的带宽度的分布。通过共培养发酵生产的BC / HA不需要在生产过程中添加额外昂贵的HA,可用于伤口敷料和组织工程等生物医学应用。

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