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静电雾化技术作为一种新的制备单分散微纳颗粒的方法,在原有基础上发展出多种衍生技术,目前被广泛应用到生物医药材料中.综述了静电雾化技术在生物医药材料领域中的应用进展,包括药物输送系统、生物材料表面修饰和细胞与生物大分子图案化等,分析了该技术应用中所存在的局限性,并展望了其未来发展方向.

参考文献

[1] Zhang S;Kawakami K .One-step preparation of chitosan solid nanoparticles by electrospray deposition.[J].International Journal of Pharmaceutics,2010(1/2):211-217.
[2] Zhang S;Kawakami K;Yamamoto M;Masaoka Y;Kataoka M;Yamashita S;Sakuma S .Coaxial electrospray formulations for improving oral absorption of a poorly water-soluble drug.[J].Molecular pharmaceutics,2011(3):807-813.
[3] Kim, W.;Kim, S.S. .Synthesis of biodegradable triple-layered capsules using a triaxial electrospray method[J].Polymer: The International Journal for the Science and Technology of Polymers,2011(15):3325-3336.
[4] Almería, B.;Fahmy, T.M.;Gomez, A. .A multiplexed electrospray process for single-step synthesis of stabilized polymer particles for drug delivery[J].Journal of Controlled Release: Official Journal of the Controlled Release Society,2011(2):203-210.
[5] S. N. Jayasinghe;M. J. Edirisinghe;T. De Wilde .A novel ceramic printing technique based on electrostatic atomization of a suspension[J].Materials research innovations,2002(3):92-95.
[6] Poellmann, M.J.;Barton, K.L.;Mishra, S.;Johnson, A.J.W. .Patterned Hydrogel Substrates for Cell Culture with Electrohydrodynamic Jet Printing[J].Macromolecular bioscience,2011(9):1164-1168.
[7] Li X;Huang J;Edirisinghe M J .Novel patterning of nanobioceramics:Template-assisted electrohydrodynamic atomization spraying[J].J R SOc Interf,2008,5(19):253.
[8] Zhu, Y.;Chen, Y.;Xu, G.;Ye, X.;He, D.;Zhong, J. .Micropattern of nano-hydroxyapatite/silk fibroin composite onto Ti alloy surface via template-assisted electrostatic spray deposition[J].Materials science & engineering, C. Biomimetic and supramolecular systems,2012(2):390-394.
[9] Jaworek A .Micro- and nanoparticle production by electrospraying[J].Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems,2007(1):18-35.
[10] Edirisinghe M J;Jayasinghe S N .Electrohydrodynamic atomization of a concentrated nano-suspension[J].Int J Appl Ceram Techn,2004,1(02):140.
[11] Nie H;Fu Y;Wang CH .Paclitaxel and suramin-loaded core/shell microspheres in the treatment of brain tumors.[J].Biomaterials,2010(33):8732-8740.
[12] Borden MA.;Longo ML. .Dissolution behavior of lipid monolayer-coated, air-filled microbubbles: Effect of lipid hydrophobic chain length[J].Langmuir: The ACS Journal of Surfaces and Colloids,2002(24):9225-9233.
[13] Raisinghani A;DeMaria AN .Physical principles of microbubble ultrasound contrast agents.[J].The American Journal of Cardiology,2002(Suppl 10A):3J-7J.
[14] E. Stride;N. Saffari .Microbubble ultrasound contrast agents: a review[J].Proceedings of the Institution of Mechanical Engineers, Part H. Journal of Engineering in Medicine,2003(h6):429-447.
[15] U.Farook;E.Stride;M.J.Edirisinghe .Preparation of suspensions of phospholipid-coated microbubbles by coaxial electrohydrodynamic atomization[J].Journal of the Royal Society Interface,2009(32):271-277.
[16] Dcng-Guang Yu;Gareth R. Williams;Jun-He Yang .Solid lipid nanoparticles self-assembled from electrosprayed polymer-based microparticles[J].Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology,2011(40):15957-15961.
[17] Vauthier C;Bouchemal K .Methods for the preparation and manufacture of polymeric nanoparticles.[J].Pharmaceutical research,2009(5):1025-1058.
[18] Xie JW;Lim LK;Phua YY;Hua JS;Wang CH .Electrohydrodynamic atomization for biodegradable polymeric particle production[J].Journal of Colloid and Interface Science,2006(1):103-112.
[19] Bohr A;Kristensen J;Stride E;Dyas M;Edirisinghe M .Preparation of microspheres containing low solubility drug compound by electrohydrodynamic spraying.[J].International Journal of Pharmaceutics,2011(1/2):59-67.
[20] Enayati M;Farook U;Edirisinghe M;Stride E .Electrohydrodynamic preparation of polymeric drug-carrier particles: mapping of the process.[J].International Journal of Pharmaceutics,2011(1/2):110-115.
[21] Paul W;Sharma C P .Ceramic drug delivery:A perspective[J].Journal of Biomaterials Applications,2003,17(04):253.
[22] Mohamed Eltohamy;Ueon Sang Shin;Jong-Eun Won;Jung-Ju Kim;Hae-Won Kim .Electrosprayed tricalcium phosphate spherical microcups and antibiotic drug delivery[J].Materials Letters,2011(13):2043-2046.
[23] Wu, Y.;Liao, I.-C.;Kennedy, S.J.;Du, J.;Wang, J.;Leong, K.W.;Clark, R.L. .Electrosprayed core-shell microspheres for protein delivery[J].Chemical communications,2010(26):4743-4745.
[24] Woojin Kim;Sang Soo Kim .Multishell Encapsulation Using a Triple Coaxial Electrospray System[J].Analytical chemistry,2010(11):4644-4647.
[25] Eng San Thian;Xiang Li;Jie Huang;Mohan J. Edirisinghe;William Bonfield;Serena M. Best .Electrospray deposition of nanohydroxyapatite coatings; A strategy to mimic bone apatite mineral[J].Thin Solid Films: An International Journal on the Science and Technology of Thin and Thick Films,2011(7):2328-2331.
[26] de Jonge LT;van den Beucken JJ;Leeuwenburgh SC .In vitro responses to electrosprayed alkaline phosphatase/calcium phosphate composite coatings.[J].Acta biomaterialia,2009(7):2773-2782.
[27] de Jonge LT;Leeuwenburgh SC;van den Beucken J .The osteogenic effect of electrosprayed nanoscale collagen/calcium phosphate coatings on titanium.[J].Biomaterials,2010(9):2461-2469.
[28] Curtis A;Wilkinson C .Topographical control of cells[J].Biomaterials,1997,18(24):1573.
[29] G. Munir;G. Koller;L. Di Silvio .The pathway to intelligent implants: osteoblast response to nano silicon-doped hydroxy apatite patterning[J].Journal of the Royal Society Interface,2011(58):678-688.
[30] Li X;Koller G;Huang J et al.A novel jet-based nanohydroxyapatite patterning technique for osteoblast guidance[J].J R Soc Interf,2010,7(42):189.
[31] Li, X.;Huang, J.;Edirisinghe, M.;Bonfield, W. .An electrically driven jetting technique for diverse high-resolution surface structures of nanometre hydroxyapatite crystals[J].Colloids and Surfaces, B. Biointerfaces,2011(2):562-570.
[32] Bakhshi R;Edirisinghe MJ;Darbyshire A;Ahmad Z;Seifalian AM .Electrohydrodynamic jetting behaviour of polyhedral oligomeric silsesquioxane nanocomposite.[J].Journal of biomaterials applications,2009(4):293-309.
[33] Bakhshi, R.;Darbyshire, A.;Evans, J.E.;You, Z.;Lu, J.;Seifalian, A.M. .Polymeric coating of surface modified nitinol stent with POSS-nanocomposite polymer[J].Colloids and Surfaces, B. Biointerfaces,2011(1):93-105.
[34] Suwan N. Jayasinghe;Amer N. Qureshi;Peter A. M. Eagles .Electrohydrodynamic Jet Processing: An Advanced Electric-Field-Driven Jetting Phenomenon for Processing Living Cells[J].Small,2006(2):216-219.
[35] Stankus JJ;Guan JJ;Fujimoto K;Wagner WR .Microintegrating smooth muscle cells into a biodegradable, elastomeric fiber matrix[J].Biomaterials,2006(5):735-744.
[36] Ju-Han Kim;Dae-Young Lee;Jungho Hwang;Hyo-Il Jung .Direct pattern formation of bacterial cells using micro-droplets generated by electrohydrodynamic forces[J].Microfluidics and nanofluidics,2009(6):829-839.
[37] Kyoungtae Kim;Byung Uk Lee;Gi Byung Hwang;Jun Hyun Lee;Sangsoo Kim .Drop-on-Demand Patterning of Bacterial Cells Using Pulsed Jet Electrospraying[J].Analytical chemistry,2010(5):2109-2112.
[38] Park JU;Lee JH;Paik U;Lu Y;Rogers JA .Nanoscale Patterns of Oligonucleotides Formed by Electrohydrodynamic Jet Printing with Applications in Biosensing and Nanomaterials Assembly[J].Nano letters,2008(12):4210-4216.
[39] Wong JY;Leach JB;Brown XQ .Balance of chemistry, topography, and mechanics at the cell-biomaterial interface: Issues and challenges for assessing the role of substrate mechanics on cell response[J].Surface Science: A Journal Devoted to the Physics and Chemistry of Interfaces,2004(1/2):119-133.
[40] Xie J;Rezvanpour A;Wang C H et al.Electric field controlled electrospray deposition for precise particle pattern and cell pattern formation[J].AICHE Journal,2010,56(10):2607.
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