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第 10 期 张 雯,等: 细菌纤维素/聚乳酸复合膜制备及性能 ·1701·
3 结论 on the mechanical and thermal expansion properties of kenaf/
polylactic acid composites[J]. Applied Mechanics and Materials,
2012, 117-119: 1343-1351.
发酵法制备 BC/PLA 复合膜最优工艺为:纺
[13] Wang Junli (王军丽), Wang Shiwei (王市伟), Sun Bo (孙波), et al.
PLA 膜速率 0.15 mm/s,发酵时间 36 h。所制备 Research on the modification of poly(lactic acid) by bacterial
BC/PLA 复合膜在 500 mL 质量浓度为 15 mg/L 双氯 cellulose grafted with malaic anhydride[J]. China Plastics (中国塑
料), 2014, 28(3):54-58.
芬酸钾药液中,最大载药率为 2.51 mg/g。所制备复 [14] Yin Xiaochen (尹晓琛), Lin Qunfang (林群芳), Chen Yuanxi (陈袁
合膜具有三维网状多孔结构,可成功负载双氯芬酸 曦), et al. Study on surface modification of wood fibers with
microorganism[J]. Engineering Plastics Application (工程塑料应
钾。BC/PLA 复合膜载释药过程研究表明,其药物
用), 2012, 40(5):13-16.
释放过程符合一级释放动力学模型。该 BC/PLA 复 [15] Liu Jiguang (刘继光), Lu Rong (路荣), Li Muqin (李慕勤), et al.
合膜在药物载体方面具有良好的应用前景。 Preliminary results of culture in vitro of osteoblasts on BC/PLA/HA
composite scaffold materials[J]. Chinese Journal of Stereology and
参考文献: Image Analysis (中国体视学与图像分析), 2012, 16(3): 318-321.
[16] Zhang W, Wang X C, Qi X J, et al. Isolation and identification of a
[1] Lunt J. Large-scale production, properties and commercial applications of bacterial cellulose synthesizing strain from kombucha in different
polylactic acid polymers[J]. Polymer Degradation and Stability, conditions: Gluconacetobacter Xylinus ZHCJ618[J]. Food Sci
1998, 59(1/2/3): 145-152. Biotechnol, 2018, 27(3): 705-713.
[2] Li S, Tenon M, Garreau H, et al. Enzymatic degradation of [17] Turner M B, Spear S K, Holbrey J D, et al. Production of bioactive
etereocopolymers derived from L-, dl- and meso-lactide[J]. Polymer cellulose films reconstituted from ionic liquids[J]. J Biomacromol,
Degradation and Stability, 2000, 67(1): 85-90. 2004, 5(4): 1379-1386.
[3] Chisholm M H, Iyer S S, Mccollum D G, et al. Microstructure of [18] Q T T, Zhao J, Li J. Direct synthesis of Zr-doped SBA-15
poly (lactide) phase-sensitive HETCOR spectra of poly (meso- mesoporous silica via zirconium chelates[J]. Microporous and
lactide), poly (rac-lactide), and atactic poly (lactide)[J]. Macromolecules, Mesoporous Materials, 2018, 257: 162-174.
1999, 32(4): 963-973. [19] Cai Z J, Yang G. Bacterial cellulose/collagen composite: Characterization
[4] Wang C H, Hsiue G. New amphiphilic poly (2-ethyl-2-oxazoline)/ and first evaluation of cytocompatibility[J]. J Appl Polym Sci, 2011,
poly (L-lactide) triblock copolymers[J]. Biomacromolecules, 2003, 4: 120(5): 2938-2944.
1487-1490. [20] Saska S, Teixeir L N, Oliveira P T D, et al. Bacterial cellulose-
[5] Li Hongyue (李红月), Lu Xiuping (卢秀萍), Yang Hua (杨华), et al. collagen nanocomposite for bone tissue engineering[J]. J Mater
Preparation and properties of polylactic acid /bacterial cellulose Chem, 2012, 22: 22102-22112.
bio-composites with interpenetrating networks structure[J]. Polymer [21] Yang Junxing (杨军星), Wang Qi (王琦), Wang Yuanyuan (王媛
Materials Science and Engineering (高分子材料科学与工程), 2016, 媛), et al. Preparation and in vitro release of multilayer alginate
32(1): 169-173. chitosan microspheres loading VEGF and vancomycin[J]. Chemical
[6] Zhu Yulong (朱玉龙), Wang Yahui (王亚慧), Cui Li (崔莉), et al. Journal of Chinese Universities (高等学校化学学报), 2015, 36(5):
Preparation of polylactic acid /bacterial cellulose compatibilized with 1025-1032.
maleic anhydride grafted polylactic acid[J]. Journal of Beijing [22] Pei Y, Yang J, Liu P, et al. Fabrication, properties and
Institute of Clothing Technology (北京服装学院学报), 2016, 36(2): bioapplications of celulose-collagen hydrolysate composite films[J].
40-44. Carbohydrate Polymers, 2013, 92: 1752-1760.
[7] Tan Yujing (谭玉静), Hong Feng (洪枫), Shao Zhiyu (邵志宇). [23] Klemm D, Kramer F, Moritz S, et al. Nanocelluloses: a new family
Advances in applications of bacterial cellulose in biomedical of nature-based materials[J]. Angew Chem Int Ed, 2011, 50:
materials[J]. China Biotechnology (中国生物工程杂志), 2007, 5438-5466.
27(4): 126-131. [24] Wang Jinshuang (王进爽), Peng Fei (彭飞), Yan Fangfang (严芳芳).
[8] Li Rui ( 李瑞 ). Research on physical properties of bacterial et al. Preparation and drug releasing property of poly(N-
cellulose[D]. Xi'an: Northwest A & F University (西北农林科技大 isopropylacrylaimde-co-N-hydroxymethyl acrylamide)/ chitosan
学), 2014. hydrogel[J]. Journal of Chemical Engineering of Chinese Universities (高
[9] Ma Xia (马霞). Study on fermentation production and medical 校化学工程学报), 2014, 28(5): 1119-1125.
application of bacterial cellulose[D]. Tianjin: Tianjin University of [25] Korsmeyer R W, Gumy R, Doelker E, et al. Mechanisms of solute
Science & Technology (天津科技大学), 2003. release from porous hydrophilic polymers[J]. Int J Pharm, 1983,
[10] Zhao Zinian (赵梓年), Wang Hong (王红). Study on preparation of 15(1): 25-35.
PLA/BC composite membrane[J]. China Plastics Industry (塑料工 [26] Schwartz J B, Simonelli A P, Higuchi W I. Drug release from wax
业), 2008, 36(12): 11-13. matrics I. Analysis of data with first-order kinetics and with
[11] Kim Y, Jung R, Kim H S, et al. Transparent nanocomposites diffusion-controllde model[J]. J Pharm Sci, 1968, 57(2): 274-277.
prepared by incorporating microbial nanofibres into ploy(L-lactic [27] Higuchi T. Mechanism of sustained-action medication. Theoretical
acid)[J]. Current Applied Physics, 2009, 9: 69-71. analysis of rate of release of solid drugs dispersed in solid
[12] Sukyai P, Sriroth K, Lee B H, et al. The effect of bacterial cellulose matrices[J]. J Pharm Sci, 1963, 52(12): 1145-1148.