纺织学报 ›› 2019, Vol. 40 ›› Issue (12): 140-145.doi: 10.13475/j.fzxb.20181206406
LÜ Tingting, AN Ying, LI Haoyi(), LIU Yujian, JIAO Zhiwei
摘要:
为拓展静电纺纳米纤维的应用领域,拓宽静电纺丝工艺的材料来源,对国内外近期静电纺动物蛋白纳米纤维的研究进展进行了综述。针对目前静电纺丝工艺中有机溶剂使蛋白质变性的问题,介绍了几种取代有机溶剂的方法,并对这些方法的优缺点进行对比,分析认为水溶性聚合物代替有机溶剂的方法更有利于蛋白纳米纤维在生物医药领域应用;讨论了交联改性及共混改性对静电纺动物蛋白纳米纤维力学性能的影响,对静电纺胶原蛋白纳米纤维在生物医药领域的应用进行了总结;最后针对利用静电纺丝技术制备动物蛋白纳米纤维亟待解决的问题以及未来的发展方向进行了展望。
中图分类号:
[1] | 金阳, 李薇雅. 羽绒等几种天然蛋白质纤维结构和性能的研究[J]. 毛纺科技, 2000,28(1):23-26. |
JIN Yang, LI Weiya. Study on the structure and properties of several natural protein fibers such as down[J]. Wool Textile Journal, 2000,28(1):23-26. | |
[2] | 李克兢, 何建新, 崔世忠. 牛奶蛋白纤维的结构与性能[J]. 纺织学报, 2006,27(8):57-60. |
LI Kejing, HE Jianxin, CUI Shizhong. Structure and properties of milk protein fiber[J]. Journal of Textile Research, 2006,27(8):57-60. | |
[3] |
FULLANA M J, WNEK G E. Electrospun collagen and its applications in regenerative medicine[J]. Drug Delivery & Translational Research, 2012,2(5):313-322.
doi: 10.1007/s13346-012-0087-x pmid: 25787173 |
[4] | 王堃, 郑学晶, 孟卓君, 等. 影响胶原结构与性能的因素研究进展[J]. 化工进展, 2010,29(1):88-93. |
WANG Kun, ZHENG Xuejing, MENG Zhuojun, et al. Factors that influence the structure and properties of collagen materials[J]. Chemical Industry and Engineering Progress, 2010,29(1):88-93. | |
[5] | 王安平. 再生蛋白质纤维的研究现状及其发展趋势[J]. 人造纤维, 2006,36(2):18-23. |
WANG Anping. Research status and development trend of regenerated protein fibers[J]. Artificial Fibre, 2006,36(2):18-23. | |
[6] | 李小虎, 李好义, 张有忱, 等. 静电纺丝制备纳米纤维的最新进展[J]. 化工新型材料, 2014(10):10-13. |
LI Xiaohu, LI Haoyi, ZHANG Youchen, et al. Latest progress in preparation of panometer fiber by electrospinning[J]. New Chemical Materials, 2014(10):10-13. | |
[7] | 陈晓青, 谭晶, 李好义, 等. 静电纺丝法制备的纳米纤维在环境污染治理中的应用研究进展[J]. 环境污染与防治, 2017,39(7):798-801. |
CHEN Xiaoqing, TAN Jing, LI Haoyi, et al. Research progress of nanofibers made by eletrospinning method for environmental pollution control applications[J]. Environmental Pollution & Control, 2017,39(7):798-801. | |
[8] | 贾惜文, 王浩, 张帅, 等. 以多糖和蛋白质为基质利用静电纺丝技术构建生物活性物质递送体系研究进展[J]. 食品工业科技, 2019,40(7):319-327. |
JIA Xiwen, WANG Hao, ZHANG Shuai, et al. Research progress of bioactive compounds delivery system based on polysaccharide and protein by electrospinning[J]. Science and Technology of Food Industry, 2019,40(7):319-327. | |
[9] | 贾琳, 张海霞, 王西贤. 静电纺取向纳米纤维制备技术的研究进展[J]. 纺织学报, 2016,37(1):159-166. |
JIA Lin, ZHANG Haixia, WANG Xixian. Research and development of aligned nanofibers prepared by electrospinning[J]. Journal of Textile Research, 2016,37(1):159-166. | |
[10] | 杨卫民, 李好义, 阎华, 等. 纳米纤维静电纺丝[M]. 北京: 化学工业出版社, 2018: 26-27. |
YANG Weimin, LI Haoyi, YAN Hua, et al. Electrospinning of Nanofibers [M]. Beijing: Chemical Industry Press, 2018: 26-27. | |
[11] | 何静. 胶原蛋白在生物医药工程中的应用研究进展[J]. 河南科技, 2015(10):104-105. |
HE Jing. Research progress of collagen protein application in biomedical pharmaceutical enginee-ring[J]. Henan Science & Technology, 2015(10):104-105. | |
[12] |
TAN W, KRISHNARAJ R, DESAI T A. Evaluation of nanostructured composite collagen-chitosan matrices for tissue engineering[J]. Tissue Engineering, 2001,7(2):203.
doi: 10.1089/107632701300062831 pmid: 11304455 |
[13] |
LI M, MONDRINOS M J, GANDHI M R, et al. Electrospun protein fibers as matrices for tissue engineering[J]. Biomaterials, 2005,26(30):5999-6008.
doi: 10.1016/j.biomaterials.2005.03.030 pmid: 15894371 |
[14] | 陈先进. 六氟异丙醇的制备研究[D]. 杭州:浙江大学, 2012: 1-2. |
CHEN Xianjin. Study on the synthesis of hexafluoroisopropanol[D]. Hangzhou:Zhejiang University, 2012: 1-2. | |
[15] |
BÜRCK J, HEISSLER S, GECKLE U, et al. Resemblance of electrospun collagen nanofibers to their native structure[J]. Langmuir, 2013,29(5):1562-1572.
pmid: 23256459 |
[16] | CHAKRAPANI V Y, GNANAMANI A, GIRIDEV V R, et al. Electrospinning of type I collagen and PCL nanofibers using acetic acid[J]. Journal of Applied Polymer Science, 2012,125(4):3221-3227. |
[17] | LIU T, TENG W K, CHAN B P, et al. Photochemical crosslinked electrospun collagen nanofibers: synjournal, characterization and neural stem cell interactions[J]. Journal of Biomedical Materials Research: Part A, 2010,95(1):276-282. |
[18] | SÓNIA P M V, LUISA D F S, JORGE A S, et al. Ionic liquids microemulsions: the key to Candida antarctica lipase B superactivity[J]. Green Chemistry, 2012,14(6). DOI: 10.1039/C2GC35197H. |
[19] | HU Y, LIU L, DAN W, et al. Evaluation of 1-ethyl-3-methylimidazolium acetate based ionic liquid systems as a suitable solvent for collagen[J]. Journal of Applied Polymer Science, 2013,130(4):2245-2256. |
[20] | 孙良奎, 程海峰, 楚增勇, 等. 同轴静电纺丝再经两步后处理制备PAN基中空碳纤维[J]. 高分子学报, 2009(1):61-65. |
SUN Liangkui, CHENG Haifeng, CHU Zengyong, et al. Fabrication of PAN-based hollow carbon fibers by coaxial electrospinning and two post-treatments[J]. Acta Polymerica Sinica, 2009(1):61-65. | |
[21] | ZHANG Y, HUANG Z M, XU X, et al. Preparation of core-shell structured PCL-r-gelatin bi-component nanofibers by coaxial electrospinning[J]. Journal of Bioscience & Bioengineering, 2004,16(18):3406-3409. |
[22] |
TIWARI S K, VENKATRAMAN S. Electrospinning pure protein solutions in core-shell fibers[J]. Polymer International, 2012. DOI: 10.1002/Pi.4246.
pmid: 19960104 |
[23] | XI X, QIANG L I, FENG Y I, et al. Application of eggshell membrane protein in biocompatible mate-rials[J]. Polymer Bulletin, 2011,18(4):25-33. |
[24] | FENG Y, GUO Z X, PING H, et al. Mimetics of eggshell membrane protein fibers by electrospinning[J]. Macromolecular Rapid Communications, 2010,25(10):1038-1043. |
[25] | LE J S, KIM B K. Modification of aqueous polyurethanes via latex AB crosslinked polymers[J]. Journal of Applied Polymer Science, 2010,82(6):1315-1322. |
[26] | CHOI J, PANTHI G, LIU Y, et al. Keratin/poly (vinyl alcohol) blended nanofibers with high optical transmittance[J]. Polymer, 2015,58:146-152. |
[27] | 甄洪鹏, 聂俊, 孙俊峰, 等. 壳聚糖/聚乙烯醇共混超细纤维的制备及紫外光交联研究[J]. 高分子学报, 2007(3):230-234. |
ZHEN Hongpeng, NIE Jun, SUN Junfeng, et al. Preparation of chitosan/polyvinyl alcohol blended ultrafine fibers and study on ultraviolet crosslinking[J]. Acta Polymerica Sinica, 2007(3):230-234. | |
[28] |
LIN H Y, KUO Y J, CHANG S H, et al. Characterization of electrospun nanofiber matrices made of collagen blends as potential skin substitutes[J]. Biomedical Materials, 2013,8(2):025009.
pmid: 23428740 |
[29] | 李帅. 羊毛角蛋白/聚乙烯醇纳米纤维膜的制备与表征[D]. 苏州:苏州大学, 2014: 45-46. |
LI Shuai. Fabrication and characterization of electrospun wool keratin/poly(vinyl alcohol) blend nanofibers membrane[D]. Suzhou: Soochow University, 2014: 45-46. | |
[30] | HULMES D J S. Building collagen molecules, fibrils and suprafibrillar structures[J]. Journal of Structural Biology, 2002,137(1/2):2-10. |
[31] |
SHOULDERS M D, RAINES R T. Collagen structure and stability[J]. Annual Review of Biochemistry, 2010,78:929-958.
pmid: 19344236 |
[32] |
MAEDA M, TANI S, SANO A, et al. Microstructure and release characteristics of the minipellet, a collagen-based drug delivery system for controlled release of protein drugs[J]. Journal of Controlled Release, 1999,62(3):313-324.
pmid: 10528069 |
[33] |
BABITHA S, RACHITA L, KARTHIKEYAN K, et al. Electrospun protein nanofibers in healthcare: a review[J]. International Journal of Pharmaceutics, 2017,523(1):52-94.
doi: 10.1016/j.ijpharm.2017.03.013 pmid: 28286080 |
[34] |
RHO K S, JEONG L, LEE G, et al. Electrospinning of collagen nanofibers: effects on the behavior of normal human keratinocytes and early-stage wound healing[J]. Biomaterials, 2006,27(8):1452-1461.
doi: 10.1016/j.biomaterials.2005.08.004 pmid: 16143390 |
[35] |
VENUGOPAL J R, ZHANG Y, RAMAKRISHNA S. In vitro culture of human dermal fibroblasts on electrospun polycaprolactone collagen nanofibrous membrane[J]. Artificial Organs, 2010,30(6):440-446.
doi: 10.1111/j.1525-1594.2006.00239.x pmid: 16734595 |
[36] | 蔡旺. 基于蓝鲨Ⅱ型胶原蛋白/壳聚糖防海水及促伤口愈合纳米纤维复合膜的制备[D]. 上海:东华大学, 2018: 17-24. |
CAI Wang. Prepartion of prionace glauca type Ⅱcollagen/chitosan based seawater proof nanomembranes for wound healing[D]. Shanghai: Donghua University, 2018: 17-24. | |
[37] | WU Z, KONG B, LIU R, et al. Engineering of corneal tissue through an aligned PVA/collagen composite nanofibrous electrospun scaffold[J]. Nanomaterials, 2018,8(2):124. |
[38] | MUKHERJEE S, VENUGOPAL J R, RAVICHANDRAN R, et al. Evaluation of the biocompatibility of PLACL/collagen nanostructured matrices with cardiomyocytes as a model for the regeneration of infarcted myocardium[J]. Advanced Functional Materials, 2011,21(12):2291-2300. |
[39] | YU W, ZHAO W, ZHU C, et al. Sciatic nerve regeneration in rats by a promising electrospun collagen/poly(ε-caprolactone) nerve conduit with tailored degradation rate[J]. Bmc Neuroscience, 2011,12(1):68. |
[40] | 胡晓婷. 纳米纤维人工细胞外基质的制备及其应用研究[D]. 天津: 天津工业大学, 2017: 10-21. |
HU Xiaoting. Study on preparation and application of nanofibers artificial extracellular matrix[D]. Tianjin: Tianjin Polytechnic University, 2017: 10-21. | |
[41] |
RUSZCZAK Z. Effect of collagen matrices on dermal wound healing[J]. Adv Drug Deliv Rev, 2003,55(12):1595-1611.
doi: 10.1016/j.addr.2003.08.003 pmid: 14623403 |
[42] |
LEXANDER A J, CHONG L C, ULUDAG H, et al. Multiphasic collagen scaffolds for engineered tissue interfaces[J]. Advance Functional Materials, 2018. DOI: 10.1002/adfm.201804730.
doi: 10.3390/ma3073948 pmid: 24175018 |
[43] |
BUTTAFOCO L, KOLKMAN N G, ENGBERSBUIJTENHUIJS P, et al. Electrospinning of collagen and elastin for tissue engineering applica-tions[J]. Biomaterials, 2006,27(5):724-734.
pmid: 16111744 |
[44] | 高宁萧, 吴晶, 刘勇. 静电纺丝法制备溶解型胶原蛋白肽/丝素蛋白复合纤维面膜[J]. 北京化工大学学报(自然科学版), 2018,45(6):21-28. |
GAO Ningxiao, WU Jing, LIU Yong. Preparation of soluble collagen peptide/silk fibroin composite fiber mask by electrospinning[J]. Journal of Beijing University of Chemical Technology (Natural Science Edition), 2018,45(6):21-28. | |
[45] | RAJABI M, FIROUZI M, HASSANNEJAD Z, et al. Fabrication and characterization of electrospun laminin-functionalized silk fibroin/poly(ethylene oxide) nanofibrous scaffolds for peripheral nerve regenera-tion[J]. Journal of Biomedical Materials Research Part B: Applied Biomaterials, 2017,106(3):1595-1604. |
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