Диссертация (1103804), страница 14
Текст из файла (страница 14)
2010. V.27. № 8. P. 1750–1754.[56] Кислов В.В., Колесов В.В., Таранов И.В. Электронный транспортчерез молекулярный нанокластер // Радиотехника и электроника, 2002,Т.47, № 11. С.1385.[57] Artemyev M., Kisiel D., Abmiotko S. et al. Self-organized, higlyluminescent CdSe nanorod-DNA complexes // J. Amer.
Chemical Soc. 2004. V.126. № 34. P. 10594 – 10597.[58] A. Wagner, K. Vorauer-Uhl, Liposome Technology for Industrial Purposes// Journal of Drug Delivery, 2011, Article ID 591325, P. 9.[59] Glaser, R. W., S. L. Leikin, L. V. Chernomordik, V. F. Pastushenko, andA. I. Sokirko, Reversible electrical breakdown of lipid bilayers - formation andevolution of pores // Biochimica Et Biophysica Acta, 1988, 940:275-287.[60] Weaver, J. C., Chizmadzhev Y. A. Theory of electroporation: A review. //Bioelectroch Bioener, 1996., 41, P.135-160.[61] Widder K.J., Senyei A.E., Scarpelli D.G.
Magnetic microspheres:a modelsystem for site specific drug delivery in vivo // Proc. Soc. Exp. Biol. Med.,1978., Vol.58. 141—146.[62] Amstad E., Textor M., Reimhult E., Stabilization and functionalization ofiron oxide nanoparticles for biomedical applications // Nanoscale, 2011,Vol.3(7), P. 2819-43.[63] Kumar A., Gupta M. Synthesis and surface engineering of iron oxidenanoparticles for biomedical applications // Biomaterials, 2005, V.
26, P. 3995–4021.105[64] Berry C., Curtis A. Functionalisation of magnetic nanoparticles forapplications in biomedicine // J. Phys. D: Appl. Phys., 2003, 36, R198–R206.[65] Lu A.-H., Salabas E.L., Schuth F. Magnetic nanoparticles: synthesis,protection, functionalization, and application // Angew. Chem. Int. Ed. 2007,p.1222-1244.[66] Kim J., Kim H.S. Multifunctional Uniform Nanoparticles Composed of aMagnetite Nanocrystal Core and a Mesoporous Silica Shell for MagneticResonance and Fluorescence Imaging and for Drug Delivery // AngewandteChemie International Edition. 2008, Vol.47(44), 8438–8441.[67] Gupta A.
Surface-modified superparamagnetic nanoparticles for drugdelivery: preparation, characterization, and cytotoxicity studies // IEEE TransNanobioscience, 2004,3(1), 66-73.[68] Akbarzadeh A., Samiei M., Davaran S. Magnetic nanoparticlespreparation, physical properties, and applications in biomedicine // NanoscaleResearch Letters, 2012, p.
P.144.[69] Strijkers G.J., Kluza E., Van Tilborg G.A. etc. Paramagnetic andfluorescent liposomes for target-specific imaging and therapy of tumorangiogenesis // Angiogenesis, 2010, 13(2), 161–173.[70] Suk J.S., Xu Q., Kim N. etc. PEGylation as a strategy for improvingnanoparticles-based drug and gene-delivery // Advanced drug delivery reviews.V 99. April 2016, P.
28-51.[71] G.B. Sukhorukov, E. Donath, S.A. Davis, Lichtenfeld, F. Caruso, V.I.Popov, H. Möhwald Stepwise polyelectrolyte assembly on particle surface: Anovel approach to colloid design // Polym. Adv. Technol. 1998. V.9. P.759–767.[72] Radtchenko I.L., Sukhorukov G.B., Leporatti S., Khomutov G.B., DonathE., Mohwald H.
Assembly of alternated multivalent ion/polyelectrolyte layerson colloidal particles. Stability of the multilayers and encapsulation of106macromolecules into polyelectrolyte capsules // J. Colloid. Interface Sci., 2000,V.230(2), p.272-280.[73] G.B. Sukhorukov, A. Antipov, A. Voigt, E. Donath, H. Möhwald pHControlled Macromolecule Encapsulation in and Release from PolyelectrolyteMultilayer Nanocapsules // Macromol. Rapid Commun. 2001, Vol.22, 44-46.[74] Gorin D.A., Shchukin D.G., KoksharovYu.A., Portnov S.A., Köhler K.,Taranov I.V., Kislov V.V., Khomutov G.B., Möhwald H., Sukhorukov G.B.,Effect of microwave irradiation on composite iron oxide nanoparticle/polymermicrocapsules // Proceedings of SPIE, 2007, Vol.6536, №653604.[75] Bosman A.W., Janssen H.M., Meijer E.W.
About dendrimers: structure,physical properties and applications // Chem. Rev. 1999; 99: 1665-1688.[76] Gillies E.R., Frechet J.M. Dendrimers and dendritic polymers in drugdelivery // Drug discov. Today 2005; 10: 35-43.[77] Hoare T.R., Kohane D.S. Hydrogels in drug delivery: progress andchallenges // Polymer. V. 49, issue 8, 15 april 2008, P 1993-2007.[78] Schild H.G. Poly(n-isopropylacrylamide): experiment, theory andapplication // Prog. Polym. Sci. 1992; 17: 163-249.[79]HeskinsM.,GuilletJ.E.Solutionpropertiesofpoly(n-isopropylacrylamide) // J. Macromol. Sci..
Chem. 1968; A2: 1441-1455.[80] Georgakilas V. etc. Purification of HiPCO carbon nanotubes via organicfunctionalization // J. Am. Chem. Soc. 2002; 124: 14318-14319.[81] Niyogi S. etc. Chromatographic purification of soluble single-walledcarbon nanotubes // J. Am. Chem. Soc. 2001; 123: 733-734.[82] Bakry R., Vallant R.M., Najam-ul-Haq M. etc. Medicinal applications offullerenes // International journal of nanomedicine.
V.2, Issue 4, 2007, P. 639649.107[83] Partha R., Conyers J.L. Biomedical applications of functionalizedfullerene-based nanomaterials // International journal of nanomedicine. V 4,2009, p. 261-275.[84] Liu Z., Chen K., Davis C. etc. Drug delivery with carbon nanotubes for invivo cancer treatment // Cancer research. V. 68, issue 16, 15 august 2008, P6652-6660.[85] Bianco A., Kostarelos K., Prato M. Applications of carbon nanotubes indrug delivery // Current opinion in chemical biology. V.9, issue 6, December2005, P.
674-679.[86] Pankhurst Q.A., Connolly J., Jones S.K. etc. Applications of magneticnanoparticles in biomedicine // Journal of physics D: Applied physics. V.36,Issue 13, July 2003, P. R167-R181.[87] Rusetski A.N., Ruuge E.K. Magnetic fluid as a possible drug deliverycarrier for thrombosis treatment // Journal of magnetism and magneticmaterials.
85 (1990) 299-302.[88] Ruuge, E.K., Rusetski A.N. Magnetic fluids as drug carriers: Targetedtransport of drugs by magnetic field // Journal of magnetism and magneticmaterials. 122(1993) 335-339.[89] Mashhadizadeh M.H., Amoli-Diva M. Drug-carrying amino silane coatedmagnetic nanoparticles as potential vehicles for delivery of antibiotics //Journal of nanomedicine and nanotechnology. V.3, Issue 4, june 2012.[90] Yang X., Liu X., Liu Z. etc. Near-infrared light-triggered, targeted drugdelivery to cancer cells by aptamer gated nanovehicles // Adv.
Mater. 2012. 24.2890-2895.[91] Wang C., Xu H., Liang C. etc. Iron oxide polypyrrole nanoparticles as amultifunctional drug carrier for remotely controlled cancer therapy withsynergistic antitumor effect // ACS Nano, 2013, 7(8), pp. 6782-6795.108[92] He D., He X., Wang K. etc. Remote-controlled drug release from grapheneoxide-capped mesoporous silica to cancer cells by photoinduced pH-Jumpactivation // Langmuir 2014, 30, P. 7182-7189.[93] Yan H., The C., Sreejith S. etc. Functional mesoporous silica nanoparticlesfor photothermal-controlled drug delivery in vivo // Angewandte ChemieInternational edition.
2012, 51. P. 8373-8377.[94] Turner D.C., Moshkelani D., Shemesh C.S. etc. Near-infrared imageguided delivery and controlled release using optimized thermosensitiveliposomes // Pharm. Res. 2012 Aug, 29(8): 2092-103.[95] Antipov A.A., Sukhorukov G.B. Polyelectrolyte multilayer capsules asvehicles with tunable permeability // Advances in colloid and interface science.2004. V.
111, P. 49-61.[96] Ferrara K., Pollard R., Borden M. Ultrasound microbubble contrast agents:fundamentals and application to gene and drug delivery // Annu. Rev. Biomed.Eng. 2007.9: 415-447.[97] Anandhakumar S., Mahalakshmi V., Raichur A.M. Silver nanoparticlesmodified nanocapsules for ultrasonically activated drug delivery // Materialsscience and engineering C 32 (2012) P.2349-2355.[98] Антонов В.Ф.
Липидные поры: стабильность и проницаемостьмембран // Соросовский образовательный журнал. 1998г №10 . С. 10-17.[99] Чизмаджев Ю.А. Перенос нуклеиновых кислот в ткани и клетки (напути к генной терапии) // Соросовский образовательный журнал. 2004г.Т.8. №2.
С.24-29.[100] Абидор И.Г., Аракелян В.Б., Пастушенко В.Ф., Тарасевич М.Р.,Черномордик Л.В. Электрический пробой липидной бислойной мембраны// Доклады академии наук СССР. 1978г. 240:733–736.109[101] Cyrus T., etc. Three-dimensional molecular imaging of intramuralbiomarkers with targeted nanoparticles // Journal cardiovasc. Magn.
Reson.2006; 8(3): P.535-541.[102] Shapiro B., Kulkarni S., Nacev A. etc. Shaping magnetic fields to directtherapy to ears and eyes // Annu. Rev. Biomed. Eng. 2014. 16:455-81.[103] Dobson J. Magnetic nanoparticles for drug delivery // Drug developmentresearch 67:55-60 (2006).[104] Anthony H.B. de V., Johannes S.K., Bea E.K. etc. Patternedelectroplating of micrometer scale magnetic structures on glass substrates //Journal of microelectromechanical systems. V. 13. 2004 june. №3. P. 391-395.[105] Klostergaard J., Seeney C.E.












