- 纳米生物材料
- 王树 刘礼兵 吕凤婷等
- 1187字
- 2020-08-28 14:12:02
参 考 文 献
[1] Sheppard L M. Aluminum nitride-a versatile but challenging material. Am Cera Bull, 1990, 69: 1801-1812.
[2] Gogotsi Y. Nanomaterials Handbook.New York: CRC Press, Taylor & Francis Group, 2006.
[3] 魏红, 李永国. 纳米技术在生物医学工程领域的应用——研究现状和发展趋势. 国外医学生物医学工程分册, 1999, 22(6): 340-344.
[4] Gleiter H. Proceedings of the second rise international symposium on metallurgy and materials science. Roskilde, 1981, 15-29.
[5] Hayashi C. Ultrafine particles. J Vac Sci Technol, 1987, 4, 1375-1384.
[6] 周承倜.纳米技术的进展和医用纳米生物材料. 大连大学学报, 2001, 22(6): 1-6.
[7] 朱世东, 周根树, 蔡锐, 等. 纳米材料国内外研究进展Ⅰ——纳米材料的结构、特异效应与性能. 热处理技术与装备, 2010, 31(3): 1-6.
[8] Dong K Y, Papaefthymiou G C. Nanobiomaterials: development and applications. New York: CRC Press, 2013.
[9] 冯异, 赵军武, 齐晓霞, 等. 纳米材料及其应用研究进展. 工具技术, 2006, 40(10): 10-15.
[10] 李玉宝, 魏杰. 纳米生物医用材料及其应用. 中国医学科学院学报, 2002, 24(2): 203-206.
[11] 熊玲, 奚廷斐, 蒋学华, 等. 纳米特性引发的生物效应及其纳米生物材料安全性评价. 中国临床康复, 2006, 10(45): 132-135.
[12] 郑玉峰, 李莉. 生物医用材料学. 哈尔滨:哈尔滨工业大学出版社, 2005.
[13] Seeram Ramakrishna, Murugan Ramalingam, Sampath Kumar T S, Winston O Soboyejo. Biomaterials: A Nano Approach. New York: CRC Press, 2010.
[14] 巴拉特·布尚.施普林格纳米技术手册.北京:科学出版社, 2009.
[15] 王英泽, 黄奔, 吕娟, 等. 纳米技术在生物学领域的研究现状. 生物物理学报, 2009, 25(3): 168-174.
[16] Wang M, Porter D ,Bonfield W. Processing, characterization, and evaluation of hydroxyapatite reinforced polyethylene composites. Brit Ceram T, 1994, 93: 91-95.
[17] Li T T, Lee J H, Kobayashi T, et al. Hydroxyapatite coating by dipping method, and bone bonding strength. J Mater Sci Mater, 1996, 7: 355-357.
[18] Berry C C. Possible exploitation of magnetic nanoparticles-cell interaction for biomedical applications. J Mater Chem, 2005, 15: 543-547.
[19] Kim D K, Zhang Y, Voit W, et al. Synthesis and characterization of surfactant-coated superparamagnetic monodispersed iron oxide nanoparticles. J Magn Magn Mater, 2001, 225, 30-36.
[20] 郭子政, 时东陆.纳米材料和器件导论.北京:清华大学出版社, 2010.
[21] Gott V L, Whiffen J D, Dutton R C. Heparin bonding on colloidal graphite surfaces. Science, 1963,142: 1297-1298.
[22] Kroto H W, Heath J R, O’Brien S C, Curl R F,Smalley R E. C60: Buckminsterfullerene. Nature, 1985, 318: 162-163.
[23] Kratschmer W, Fostiropoulos K, Huffman D R. The infrared and ultraviolet-absorption spectra of laboratory-produced carbon dust-evidence for the presence of the C60 molecule. Chem Phys Lett, 1990, 170: 167-170.
[24] 李珺, 李晓桐, 赵明.无机纳米材料及其在生物医学方面的应用研究. 医疗卫生装备, 2015, 36(7): 97-105.
[25] Iijima S. Helical microtubules of graphitic carbon. Nature, 1991, 354: 56-58.
[26] 刘云圻, 等.有机纳米与分子器件.第2版.北京:科学出版社, 2014.
[27] Kasai H, Nalwa H S, Oikawa H, Okada S, Matsuda H, Minami N, Kakuta A, Ono K, Mukoh A, Nakanishi H. A novel preparation method of organic microcrystals. Jpn J Appl Phys, 1992, 31: L1132-L1134.
[28] 龚洁, 沈清明, 范曲立, 黄维. 荧光有机小分子纳米材料的合成及其应用. 化学进展, 2013, 25(11): 1928-1941.
[29] Pershagen E, Nordholm J, Borbas K E. Luminescent lanthanide complexes with analyte-triggered antenna formation. J Am Chem Soc, 2012, 134: 9832-9835.
[30] Hench L L. Bioceramics-from concept to clinic. J Am Ceram Soc, 1991, 74: 1487-1510.
[31] Yamanaka S A, Dunn B, Valentine J S, et al. Nicotinamide adenine-dinucleotide phosphate fluorescence and absorption monitoring of enzymatic-activity in silicate sol-gels for chemical sensing applications. J Am Chem Soc, 1995, 117: 9095-9096.
[32] Pope E J A. Gel encapsulated microorganisms: saccharomyces cerevisiae-silica gel biocomposites. J Sol-Gel Sci Techn, 1995, 4: 225-229.
[33] Rusu V M, Ng C H, Wilke M, Tiersch B, Fratzl, P, Peter M G. Size-controlled hydroxyapatite nanoparticles as self-organized organic in organic composite materials. Biomaterials, 2005, 26: 5414-5426.
[34] 刘静, 张东生. 肿瘤热疗用纳米磁性材料的生物相容性评价方法研究进展. 东南大学学报(医学版), 2010, 29(5): 587-592.
[35] Lewinski N, Colvin V ,Drezek R. Cytotoxicity of nanoparticles. Small, 2008, 4: 26-49.
[36] Service R F: Nanomaterials show signs of toxicity. Science, 2003, 300: 243.
[37] 陈海群, 汪冰, 王凯全. 纳米材料对生物体的毒性研究. 中国安全科学学报, 2010, 20(1): 106-111.
[38] Brumfiel G A. Nanotechnology: a little knowledge. Nature, 2003, 424: 246-248.
[39] Service R F. Nanotoxicology: nanotechnology grows up. Science, 2004, 304: 1732-1734.
[40] 韦东远, 鲍志敏, 董晓玲. 关于世界纳米材料生物效应与安全性研究的思考. 中国科技论坛, 2007, 7: 112-117.
[41] 赵宇亮, 柴之芳.纳米毒理学:纳米材料安全应用的基础.第2版.北京:科学出版社, 2016.
[42] Nelson Durán, Silvia S Guterres, Oswaldo L Alves. Nanotoxicology: Materials, Methodologies, and Assessments. New York: Springer, 2014.