[1] 侯东耀, 葛喜珍, 刘军锋, 田平芳, 谭天伟, HOU Dong-yao, GE Xi-zhen, LIU Jun-feng, TIAN Ping-fang, TAN Tian-wei. 小檗碱壳聚糖微球制备及其抗真菌活性测定 [J]. 过程工程学报 2008.doi:10.3321/j.issn:1009-606X.2008.05.025 [2] 车小琼, 孙庆申, 赵凯, CHE Xiao-Qiong, SUN Qing-Shen, ZHAO Kai. 甲壳素和壳聚糖作为天然生物高分子材料的研究进展 [J]. 高分子通报 2008. [3] 靳美霞, 胡巧红. 壳聚糖的性质及其在生物黏附药物传输系统中的应用 [J]. 中南药学 2008. [4] 马晓莉, 姚子华, 徐伟伟, 史大刚, 刘月岭, MA Xiao-li, YAO Zi-hua, XU Wei-wei, SHI Da-gang, LIU Yue-ling. 医用多孔壳聚糖膜的制备及性能研究 [J]. 功能高分子学报 2005.doi:10.3969/j.issn.1008-9357.2005.03.015 [5] 马晓莉, 姚子华, MA Xiao-li, YAO Zi-hua. 多孔壳聚糖膜固定化脲酶活性的X射线微区分析 [J]. 河北大学学报(自然科学版) 2005.doi:10.3969/j.issn.1000-1565.2005.03.012 [6] 马晓莉, 姚子华, 史大刚, 徐伟伟, MA Xiao-Li, YAO Zi-Hua, SHI Da-Gang, XU Wei-Wei. 多孔壳聚糖膜的制备及对水中游离余氯的吸附性能 [J]. 应用化学 2005.doi:10.3969/j.issn.1000-0518.2005.11.011 [7] 王海燕, 卢翠云, 高尔方, 高丹, 宋素娣, 王育棉, 徐凯锋, WANG Hai-yan, LU Cui-yun, GAO Er-fang, GAO Dan, SONG Su-di, WANG Yu-mian, XU Kai-feng. 壳聚糖基Semi-IPN多孔膜的制备及其吸附性能的研究 [J]. 河北化工 2010.doi:10.3969/j.issn.1003-5059.2010.01.017 [8] 王学宝, 林丹, 王贤亲, 张园, 叶发青, WANG Xue-bao, LIN Dan, WANG Xian-qin, ZHANG Yuan, YE Fa-qing. 多孔壳聚糖膜的制备表征及其吸附性能研究 [J]. 广州化工 2010.doi:10.3969/j.issn.1001-9677.2010.06.047 [9] 任东文, 衣洪福, 包德才, 谢威扬, 马小军, REN Dong-wen, YI Hong-fu, BAO De-cai, XIE Wei-yang, MA Xiao-jun. 制备多孔壳聚糖膜的新方法:选择性酶解原位成孔 [J]. 功能材料 2006.doi:10.3321/j.issn:1001-9731.2006.03.038 [10] Su CH., Juan SW., Hu CH., Ke WT., Sheu MT., Sun CS.. FUNGAL MYCELIA AS THE SOURCE OF CHITIN AND POLYSACCHARIDES AND THEIR APPLICATIONS AS SKIN SUBSTITUTES [J]. Biomaterials 1997, 17(17). [11] Su CH, Sun CS, Juan SW, Ho HO, Hu CH, Sheu MT. Development of fungal mycelia as skin substitutes: effects on wound healing and fibroblast. [J]. Biomaterials 1999, 1(1). [12] Yang JM, Lin HT. Properties of chitosan containing PP-g-AA-g-NIPAAm bigraft nonwoven fabric for wound dressing [J]. Journal of Membrane Science 2004, 1/2(1/2). [13] Cho YW, Cho YN, Chung SH, Yoo G, Ko SW. Water-soluble chitin as a wound healing accelerator. [J]. Biomaterials 1999, 22(22). [14] Makarand Risbud, Michaela Endres, Jochen Ringe. Biocompatible hydrogel supports the growth of respiratory epithelial cells: Possibilities in tracheal tissue engineering [J]. Journal of biomedical materials research, Part B. Applied biomaterials 2001, 1(1). [15] RISBUD M V, BHONDE M R, BHONDE R R. Effect of chitosan-polyvinyl pyrrolidone hydrogel on proliferation and cytokine expression of endothelial cells:implications in islet immunoisolation [J]. Journal of Biomedical Materials Research 2001, 57(02). [16] CHUNG T W, YANG J, AKAIKE T. Preparation of alginate/galaetosylated chitosan scaffold for hepatocyte attachment [J]. Biomaterials 2002, 23(14). [17] Lin YH, Liang HF, Chung CK, Chen MC, Sung HW. Physically crosslinked alginate/N, O-carboxymethyl chitosan hydrogels with calcium for oral delivery of protein drugs. [J]. Biomaterials 2005, 14(14). [18] Van Der Merwe SM, Verhoef JC, Verheijden JH, Kotze AF, Junginger HE. Trimethylated chitosan as polymeric absorption enhancer for improved peroral delivery of peptide drugs. [J]. European journal of pharmaceutics and biopharmaceutics: official journal of Arbeitsgemeinschaft fuer Pharmazeutische Verfahrenstechnik e.V 2004, 2(2). [19] Chen SC, Wu YC, Mi FL, Lin YH, Yu LC, Sung HW. A novel pH-sensitive hydrogel composed of N, O-carboxymethyl chitosan and alginate cross-linked by genipin for protein drug delivery [J]. Journal of Controlled Release: Official Journal of the Controlled Release Society 2004, 2(2). [20] 蒋挺大. 甲壳素 [M]. 北京:化学工业出版社 2003. [21] 汪锰, 王湛, 李政雄. 膜材料及其制备 [M]. 北京:化学工业出版社 2003. [22] Madihally SV, Matthew HW. Porous chitosan scaffolds for tissue engineering. [J]. Biomaterials 1999, 12(12). [23] Ma J, Wang H, He B, Chen J. A preliminary in vitro study on the fabrication and tissue engineering applications of a novel chitosan bilayer material as a scaffold of human neofetal dermal fibroblasts. [J]. Biomaterials 2001, 4(4). [24] Chung TW, Yang J, Akaike T, Cho KY, Nah JW, Kim SI, Cho CS. Preparation of alginate/galactosylated chitosan scaffold for hepatocyte attachment. [J]. Biomaterials 2002, 14(14). [25] Leffler CC, Muller BW. [J]. International Journal of Pharmaceutics 2000. [26] Mi FL, Shyu SS, Wu YB, Lee ST, Shyong JY, Huang RN. Fabrication and characterization of a sponge-like asymmetric chitosan membrane as a wound dressing. [J]. Biomaterials 2001, 2(2). [27] Fwu-Long Mi, Yu-Bey Wu, Shin-Shing Shyu, An-Chong Chao, Juin-Yih Lai, Chia-Ching Su. Asymmetric chitosan membranes prepared by dry/wet phase separation: a new type of wound dressing for controlled antibacterial release [J]. Journal of Membrane Science 2003, 1/2(1/2). [28] Jun Ping Zheng, Chuan Zeng Wang, Xiu Xing Wang, Hong Yan Wang, Hong Zhuang, Kang De Yao. Preparation of biomimetic three-dimensional gelatin/montmorillonite-chitosan scaffold for tissue engineering [J]. Reactive & functional polymers 2007, 9(9). [29] LIN Hongru, CHEN KeShao, CHEN Suchen. Attachment of stem cells on porous ehitosan scaffold crosslinked by NasP3O10 [J]. Materials Science and Engineering C:Biomimetic and Supramolecular Systems 2007, 27(02). [30] Zhi-Hai Huang, Yin-Sheng Dong, Cheng-Lin Chu, Ping-Hua Lin. [J]. Materials Letters 2008. [31] CHOW K S, KHOR E. Novel fabrication of open-pore chitin matrixes [J]. Biomacromolecules 2000, 1(01). [32] Han W, Liu C, Bai R. A novel method to prepare high chitosan content blend hollow fiber membranes using a non-acidic dope solvent for highly enhanced adsorptive performance [J]. Journal of Membrane Science 2007, 1/2(1/2). [33] Liu CX, Bai RB. Preparing highly porous chitosan/cellulose acetate blend hollow fibers as adsorptive membranes: Effect of polymer concentrations and coagulant compositions [J]. Journal of Membrane Science 2006, 1/2(1/2). [34] Chunxiu Liu, Renbi Bai. Preparation of chitosan/cellulose acetate blend hollow fibers for adsorptive performance [J]. Journal of Membrane Science 2005, 1/2(1/2). [35] Liu CX, Bai RB. Adsorptive removal of copper ions with highly porous chitosan/cellulose acetate blend hollow fiber membranes [J]. Journal of Membrane Science 2006, 1/2(1/2). [36] Chun, HJ, Kim, GW, Kim, CH. Fabrication of porous chitosan scaffold in order to improve biocompatibility [J]. The journal of physics and chemistry of solids 2008, 5/6(5/6). [37] Zeng XF., Ruckenstein E.. Cross-linked macroporous chitosan anion-exchange membranes for protein separations [J]. Journal of Membrane Science 1998, 2(2). [38] Zeng Xianfang, Ruckenstein Eli. [J]. Journal of Membrane Science 1999. [39] Ruckenstein E., Zeng XF.. [J]. Journal of Membrane Science 1998. [40] Menemse Guemuesderelioglu, Pelin Agi. [J]. Reactive & functional polymers 2004. [41] RUCKENSTEIN E, ZENG Xianfeng. Macroporous chitin affinity membranes for Lysozyme separation [J]. Biotechnology and Bioengineering 1997, 56(06). [42] Xianfang Zeng, Eli Ruckenstein. Trypsin Purification by p-Aminobenzamidine Immobilized on Macroporous Chitosan Membranes [J]. Industrial & Engineering Chemistry Research 1998, 1(1). [43] Steenkamp GC., Keizer K., Neomagus HWJP., Krieg HM.. [J]. Journal of Membrane Science 2002. [44] de FREITAS S S, MACHADO R L, de ARRUDA E J. Endotoxin removal from solutions of F(ab')2 fragments of equine antibodies against snake venom using macroporous chitosan membrane [J]. Journal of Membrane Science 2004, 234(1-2). [45] SANTOS D E S, NETO C G T, FONSECA J L C. Chitosan maeroporous asymmetric membranes-Preparation, characterization and transport of drugs [J]. Journal of Membrane Science 2008, 325(01). [46] Minfeng Zeng, Zhengping Fang, Chengwei Xu. Effect of compatibility on the structure of the microporous membrane prepared by selective dissolution of chitosan/synthetic polymer blend membrane [J]. Journal of Membrane Science 2004, 1/2(1/2). |