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Homogeneous and porous modified bacterial cellulose achieved by in situ modification with low amounts of carboxymethyl cellulose

机译:通过用少量羧甲基纤维素原位改性获得的均质和多孔的改性细菌纤维素

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To improve the rehydration ability of bacterial cellulose (BC), many macromolecules have been used as modifiers in previous reports. However, the aggregation of additives in the BC matrix appears to be inevitable.Weinvestigated different parts of aBC pellicle, which was achieved by in situ modification with carboxymethyl cellulose (CMC) in culture with Gluconacetobacter xylinus ATCC53582 or Enterobacter sp. FY-07. We observed a concentration gradient of CMC in the BC pellicle from G. xylinus ATCC53582, but not with Enterobacter sp. FY-07. Low concentrations of CMC (0.01 %, m/v) are sufficient to modify BC in situ in culture with Enterobacter sp. FY-07, in which CMC could sufficiently contact with the newly formed BC. The crystallinity of the modified BC decreased by more than 39.8 %, and its rehydration ability and water holding capacity increased by 43.3 and 31.0 %, respectively. Unlike the pellicle of modified BC achieved from obligate aerobes, such as G. xylinus ATCC53582, that produced by Enterobacter sp. FY-07 exhibited better homogeneity and porosity.
机译:为了提高细菌纤维素(BC)的补液能力,在以前的报道中,许多大分子已被用作改性剂。然而,添加剂在BC基质中的聚集似乎是不可避免的。我们研究了ABC防护膜的不同部分,这是通过用羧甲基纤维素Xylinus ATCC53582或Enterobacter sp。 07财年。我们观察到来自G. xylinus ATCC53582的BC防护膜中CMC的浓度梯度,但没有Enterobacter sp。 07财年。低浓度的CMC(0.01%,m / v)足以在肠杆菌属细菌培养中原位修饰BC。 FY-07,CMC可以与新成立的BC充分接触。改性BC的结晶度降低了超过39.8%,其再水化能力和持水能力分别提高了43.3%和31.0%。不同于由专性需氧菌(例如,由肠杆菌属产生的木霉G. xylinus ATCC53582)获得的修饰BC的防护膜。 FY-07表现出更好的均匀性和孔隙率。

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