研究生: |
蔡晟豪 CHENG-HAO TSAI |
---|---|
論文名稱: |
靜電紡絲PVDF混摻F127複合膜作為生醫基材之探討 Study of electrospun PVDF blend Pluronic F127 composite films for biomedical applications |
指導教授: |
楊銘乾
Ming-chienYan |
口試委員: |
王大銘
Da-ming Wang 邱顯堂 Hsien-Tang Chiu |
學位類別: |
碩士 Master |
系所名稱: |
工程學院 - 材料科學與工程系 Department of Materials Science and Engineering |
論文出版年: | 2009 |
畢業學年度: | 97 |
語文別: | 中文 |
論文頁數: | 67 |
中文關鍵詞: | 靜電紡絲 、PVDF 、F127 |
外文關鍵詞: | electrospun, PVDF, Pluronic F127 |
相關次數: | 點閱:578 下載:9 |
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本研究以靜電紡絲製作PVDF薄膜,並探討其溶劑比例、溶液濃度、電場電壓和收集距離等參數,以製作最佳化ES PVDF膜。而後混入不同濃度之Pluronic F127,在最佳參數條件下製成ES PVDF-F127薄膜。使用SEM觀察薄膜表面型態,進一步以TGA和DSC分析膜的熱性質,凝血時間、蛋白質和血小板吸附作為血液相容的評估,最後以纖維母細胞L929進行細胞增生實驗測試。
由結果知ES PVDF-F127膜纖維直徑為205nm,孔徑大小為0.1μm,凝血時間並無異常,蛋白質和血小板吸附量大幅減少。在細胞增生方面纖維母細胞L929比之ES PVDF膜有明顯增加情形。
In this investigation, the PVDF electrospinning film was prepared using parameters including solvent composition, concentration, electric flied, and collect distance. We successfully blend PVDF and Pluronic F127 by electrospinning skill through optimizative parameters same as electrospinning PVDF film. Scanning electron microscope (SEM) was used to examine the surface morphology of the film. The films were further analyzed by thermal differential scanning calorimeter (DSC) and thermogravimetric analysis (TGA), activated partial thromboplastin time (APTT), prothrombin time (PT), protein and blood platelet adhesion. In addition, L929 fibroblasts cells were cultured on the surface and the cell number was determined by the MTT testing.
The results showed that the fiber diameter of electrospinning PVDF-F127 film was 205nm with average pore size 0.1μm. The adsorption of protein and platelet on electrospinning PVDF-F127 decreased significantly. In the cell culture of L929 fibroblasts, the amount on electrospinning PVDF-F127 film was higher than pure electrospinning PVDF film.
【1】 馬光輝, 蘇志國, 新型高分子材料, 曉園出版社, 2006
【2】 吳大誠, 杜仲良, 高緒珊, 奈米纖維, 五南圖書, 2004
【3】 Fridrikh S.V., Yu J.H., Brenner M.P., Rutledge G.G., Controlling the fiber diameter during electrospinning, Physical Review Letters, 90(14), PP., 144502/1-144502/4, 2003
【4】 Zhizhen Zhao, Jingqing Li, Xiaoyan Yung, Xiang Li,Yuanyuan Zhang, Jing Sheng, Preparation and Properties of Electrospun Poly(Vinylidene Fluoride) Membranes, Jourmal of Applied Polymer Science, Vol.97,466-474, 2005
【5】 Pankaj Gupta, Garth L. Wilkes, Some investigations on the fiber formation by utilizing a side-by-side bicomponent electrospinning approach, Polymer 44, 6353-6359, 2003
【6】 Formhals A. US Patent. 1975, 504, 1934
【7】 Reneker D H, Chun I. Nanotechnology, 7, 216-223, 1966
【8】 Reznilk S.N., Yarin A.L., Theron A., Zussman E., Transient and steady shapes of droplets attached to a surface in a strong electricfield, J.of Fluid Mech, 516, pp.349-377, 2004
【9】 Huang Z.M., Zhang Y.Z., Kotaki M.,Ramakrishna S., A review on polymer nanofibers by electrospinning and their applications in nanocomposites, Composites Sci.and Tech., 63(15), pp.2223-2253, 2003
【10】 Thandavamoorthy Subbiah, G.S. Bhat, R.W. Tock, S. Parameswaran, S.S. Ramkumar, Electrospinning of Nanofibers, Journal of Applied Polymer Science, Vol. 96, 2005
【11】 Kyung Hwa Hong, Kyung Wha Oh, Tae Jin Kang, Preparation of Conducting Nylon-6 Electrospun Fiber Webs by the In Situ Polymerization of Polyaniline, Jourmal of Applied Polymer Science, Vol. 96, 983-991, 2005
【12】 Zheng Jianfen, He Aihua, Li Junxing, C. Han Charles, Polymorphism Control of Poly(vinylidene fluoride) through Electrospinning, Macromolecular Rapid Communications, 28, 2159-2162, 2007
【13】 Luu Y.K., Kim k., Hsiao B.S., Chu B., Hadjiargyrou M., Development of nanostructured DNA delivery scaffold via electrospinning of PLGA and PLA-PEG block copolymers, Journal of Controlled Release, 89, 341-353, 2003
【14】 Ulrich Boudriot, Bernhard Goetz, Roland Dersch, Andreas Greiner, Joachim-H. Wendorff, Role of Electrospun Nanofibers in Stem Cell Technologies and Tissue Engineering, Macromol. Symp., 225, 9-16, 2005
【15】 Fujihara K., Kotaki M., Ramakrishna S., Guided bone regeneration membrane made of polycaprolactone/calcium carbonate composite nano-fibers, Biomaterials, 26, 4139-4147, 2005
【16】 Li Lunxing, He Aihua, Han Charles C., Dufei, Fang, Hsiao Benjamin S., Chu Benjamin, Electrospinning of Hyaluronic Acid (HA) and HA/Gelatin Blends, Macromolecular Rapid Communications, 27, 114-120, 2006
【17】 Zhang Yanzhong, Ouyang Hongwei, Lim Chwee Teck, Electrospinning of Gelatin Fibers and Gelatin/PCL Composite Fibrous Scaffolds, J Biomed Mater Res Part B: Appl Biomater 72B: 156-165, 2005
【18】 Jamil A. Matthews and Eugene D. Boland, Gary E. Wnek, David Gary L. Bowlin, Electrospinning of Collagen TypeⅡ:A Feasibility Study, Journal of Bioactive and compatible polymers, Vol. 18, 125-134, 2003
【19】 Won Ho Park, Lim Jeong, Dong I1 Yoo, Sam Hudson, Effect of chitosan on morphology and comformation of electrospun silk fibroin nanofibers, Polymer, 45, 7151-7157, 2004
【20】 Li Xianfeng, Hao Xiufeng, Na Hui, Preparation of nanosilver particles into sulfonated poly(ether ether ketone) (S-PEEK) nanostructures by electrospinning, Materials Letter, 61, 421-426, 2007
【21】 Nie Huarong, He Aihua, Zhang Jianfen, Xu Shanshan, Li Junxing, and Han Charies C., Effects of Chain Conformation and Entanglement on the Electrospinning of Pure Alginate, Biomacormolecules, 9, 1362-1365, 2008
【22】 Mathew G. Mckee, et al, Phospholipid Nonwoven Electrospun Membranes, Science 311, 353, 2006
【23】 Zhang G., Kataphinan W., Teye-Mensah R., Katta P., Khatri L., Evans E.A., Chase G.G., Ramsier R.D., Reneker D.H., Electrospun nanofibers for potential space-based applications, Materials Science and Engineering B, 116, 353-358, 2005
【24】 Formo Eric, Lee Eric, Campbell Dean, and Xia Younan, Functionalization of Electrospun TiO2 Nanofibers with Pt Nanoparticles and Nanowires for Catalytic Applications, Nano Letters, Vol. 8, No. 2, 668-672, 2008
【25】 後藤新哉, 現代醫療, 30, 1659, 1988
【26】 吳培熙, 張留城, 聚合物共混改性, 中國輕工業出版社, 1996
【27】 八幡義人, 圖解血液, 書泉出版社, 2008
【28】 Tamada Y, Kulik EA, Ikada Y, Simple method for platelet counting, Biomaterial, 16, 259-261, 1995
【29】 Li Wei, Li Hong, Zhang Young-Ming, Preparation and investigation of PVDF/PMMA/TiO2 composite film, Journal of Materials Science, Vol. 44, No. 11, 2977-2984, 2009
【30】 Li Yanbao, Li Dongxu, Xu Zhongzi, Synthesis of hydroxyapatite
nanorods assisted by Pluronics, Journal of Materials Science, Vol. 44, No. 5, 1258-1263, 2009
【31】 Lin Dar-Jong, Chang Chi-Lin, Lee Chih-Kang, Cheng Liao-Ping,
Preparation and characterization of microporous PVDF/PMMA compsotite membranes by phase inversion in water/DMSO solutions, European Polymer Jourmal, 42, 2407-2418, 2006
【32】 Xiong X.Y., Tam K.C., Gan L.H., Release Kinetics of hydrophobic model drugs from pluronic F127/poly(lactic acid) nanoparticles, Jourmal of Controlled Release, 103, 73-82, 2005
【33】 Sung Hw, Chen CN, Huang RN, Hsu JC, Chang WH, In vitro surface characterization of biological patch fixed with a naturally occurring crosslinking agent, Biomaterials, 21, 1353-1362, 2000
【34】 江幸恬, 陳啟清, Prothrombin Time 標準化的探討, 壢新醫院病理檢驗科, 醫檢論壇
【35】 Suang HW, Chen CN, Huang RN, Hsu JC, Cheng WH, In vitro surface characterization of a biological patch fixed with a naturally occurring crosslinking agent, Biomaterials, 21, 1353-1362, 2000
【36】 Lee Jin Ho, Jeong Bong Jin, Lee Hai Bang, Plasma protein adsorption and platelet adhesion onto comb-like PEO gradient surfaces, Journal of Biomaterial Meterials Research, Vol. 34, 105-114, 1997
【37】 Nagaoka S., Mori Y., Takiuchi H., Yokota K., Tanzawa H., and Nishumi S., Interaction between blood components and hydrogels with poly(oxyethylene)chains, Polymers as Biomaterials, 361-374, 1984
【38】 Breen J., van Duijin D., de Bleijser J., and Leyte J. C., Polyethylene oxide-Dynamics in aqueous solutions studied by nuclear magnetic relaxation, Ber. Bunsenges. Physik. Chem., 90, 1112-1122, 1986
【39】 Hammes G. G. and Roberts P. B., Cooperativity of solvent-macro
molecule interactions in aqueous solutions of polyethylene glycol and polyethylene glycol-urea, J. Am. Chem. Soc., 90, 7119-7122, 1968
【40】 Mansoor Amiji and Kinam Park, Prevention of protein adsorption and platelet adhesion on surfaces by PEO/PPO/PEO triblock copolymers, Biomaterials, Vol. 13, No. 10, 1992
【41】 王曉麗, 沈家聰, 醫用聚酯的磷脂表面改性及其血液相容性研究, 全國高分子學術論文報告會, 2005
【42】 Liu Ting-Yu, Lin Wen-Ching, Huang Li-Ying, Chen San-Yuan and Yang Ming-Chien, Surface characteristics and hemocompatibi-
lity of PAN/PVDF blend membranes, Polym. Adv. Technol., 16, 413-419, 2005
【43】 Lin S. Q. and Kodama M., Porous polyurethane vascular prostheses with variable compliances, J. Biomed Mater, Res., 26, 1489, 1992
【44】 張旭賢, 多孔型PVDF薄膜固定離胺酸與己二胺用於細胞培養, 淡江大學化學工程與材料系碩士論文, 2005
【45】 Chen Min-Huey, Hsu Yuan-Hua, Lin Chun-Pin, Chen Yi-Jane, Young Tai-Horng, Interactions of acinar cells on biomaterials with various surface properties, Journal of Biomaterial Materials Research-Part A, Vol. 74, No.2, 254-262, 2005