Диссертация (1150814), страница 16
Текст из файла (страница 16)
Chem. 1992, 30 (5), 779-786.140.Monnery, B. D.; Shaunak, S.; Thanou, M.; Steinke, J. H. G. Improved Synthesis of LinearPoly(ethylenimine) via Low-Temperature Polymerization of 2-Isopropyl-2-oxazoline inChlorobenzene. Macromolecules 2015, 48 (10), 3197-3206.141.Namvar, A.; Bolhassani, A.; Khairkhah, N.; Motevalli, F. Physicochemical Properties ofPolymers: An Important System to Overcome the Cell Barriers in Gene Transfection. Biopolymers2015, 103 (7), 363-375.142.Rivera-Tirado, E.; Wesdemiotis, C.
Characterization of polyethylenimine by electrosprayionization and matrix-assisted laser desorption/ionization. J. Mass Spectrom. 2011, 46 (9), 876-883.143.Wagner, M.; Pietsch, C.; Tauhardt, L.; Schallon, A.; Schubert, U. S. Characterization of cationicpolymers by asymmetric flow field-flow fractionation and multi-angle light scattering—A comparisonwith traditional techniques. J. Chromatogr. 2014, 1325, 195-203.144.Jiang, X.; van der Horst, A.; van Steenbergen, M. J.; Akeroyd, N.; van Nostrum, C. F.;Schoenmakers, P. J.; Hennink, W.
E. Molar-Mass Characterization of Cationic Polymers for GeneDelivery by Aqueous Size-Exclusion Chromatography. Pharm. Res. 2006, 23 (3), 595-603.145.Kosheleva, I. M.; Gembitskii, P. A.; Chmarin, A. I.; Kolesova, L. M.; Zhuk, D. S.; Kargin, V. A.- 93 Some properties and the structure of high-molecular polyethylenimine. Russ. Chem. Bull. 1971, 20(8), 1536-1541.146.Gembitskii, P. A.; Kleshcheva, N. A.; Chmarin, A. I.; Zhuk, D. S. Properties of linear polyethyleneimine and its oligomers Polym. Sci., U.S.S.R.
1979, 20, 2932.147.Weyts, K. F.; Goethals, E. J.; Bunge, W. M.; Bloys van Treslong, C. J. A new mark-Houwinkequation for linear poly(ethylene imine). Eur. Polym. J. 1990, 26 (4), 445-447.148.Kobayashi, S.; Shirasaka, H.; Suh, K.-D.; Uyama, H. Viscosity Behaviors and Gel Properties ofLinear and Branched Polyethylenimines: Effects of Micro-Structures. Polym. J. 1990, 22 (5), 442-446.149.Smits, R. G.; Kuil, M. E.; Mandel, M. Molar mass and ionic strength dependence of theapparent diffusion coefficient of a flexible polyelectrolyte at dilute and semidilute concentrations:linear poly(ethylenimine). Macromolecules 1993, 26 (25), 6808-6816.150.Tauhardt, L.; Kempe, K.; Knop, K.; Altuntaş, E.; Jaeger, M.; Schubert, S.; Fischer, D.; Schubert,U.
S. Linear Polyethyleneimine: Optimized Synthesis and Characterization – On the Way to“Pharmagrade” Batches. Macromol. Chem. Phys. 2011, 212 (17), 1918-1924.151.Levy, A.; Litt, M. Polymerization of cyclic iminoethers. IV. Oxazoline polymerization in solventscontaining different functional groups. Journal of Polymer Science Part A-1: Polymer Chemistry 1968,6 (1), 63-72.152.Litt, M.; Levy, A.; Herz, J. Polymerization of cyclic imino ethers. X.
Kinetics, chain transfer, andrepolymerization. Journal of Macromolecular Science, Part A: Pure and Applied Chemistry 1975, 9 (5),703-727.153.Wiesbrock, F.; Hoogenboom, R.; Leenen, M. A. M.; Meier, M. A. R.; Schubert, U. S.Investigation of the Living Cationic Ring-Opening Polymerization of 2-Methyl-, 2-Ethyl-, 2-Nonyl-, and2-Phenyl-2-oxazoline in a Single-Mode Microwave Reactor.
Macromolecules 2005, 38 (12), 50255034.154.Warakomski, J. M.; Thill, B. P. Evidence for long chain branching in polyethyloxazoline. J.Polym. Sci., Part A: Polym. Chem. 1990, 28 (13), 3551-3563.155.Pavlov, G. M. Hydrodynamics of Macromolecules: Conformation Zoning for GeneralMacromolecules. In Encyclopedia of Biophysics, Roberts, G. K., Ed.; Springer Berlin Heidelberg, 2013,pp 1014-1024.156.Tang, Z.
H.; He, C. L.; Tian, H. Y.; Ding, J. X.; Hsiao, B. S.; Chu, B.; Chen, X. S. Polymericnanostructured materials for biomedical applications. Prog. Polym. Sci. 2016, 60, 86-128.157.Guerrero-Cázares, H.; Tzeng, S. Y.; Young, N. P.; Abutaleb, A. O.; Quiñones-Hinojosa, A.; Green,J. J. Biodegradable Polymeric Nanoparticles Show High Efficacy and Specificity at DNA Delivery to- 94 Human Glioblastoma in Vitro and in Vivo. ACS Nano 2014, 8 (5), 5141-5153.158.Putnam, D.
Polymers for gene delivery across length scales. Nature Materials 2006, 5, 439.159.Pack, D. W.; Hoffman, A. S.; Pun, S.; Stayton, P. S. Design and development of polymers forgene delivery. Nature Reviews Drug Discovery 2005, 4, 581.160.Ullah, I.; Muhammad, K.; Akpanyung, M.; Nejjari, A.; Neve, A. L.; Guo, J.; Feng, Y.; Shi, C.Bioreducible, hydrolytically degradable and targeting polymers for gene delivery. J. Mater. Chem. B2017, 5 (18), 3253-3276.161.Tabujew, I.; Peneva, K.
Functionalization of Cationic Polymers for Drug Delivery Applications.In Cationic Polymers in Regenerative Medicine; The Royal Society of Chemistry: Cambridge 2015, pp1-29.162.Hosseinkhani, H.; Abedini, F.; Ou, K.-L.; Domb, A. J. Polymers in gene therapy technology.Polym. Adv. Technol. 2015, 26 (2), 198-211.163.Goyal, R.; Tripathi, S. K.; Tyagi, S.; Sharma, A.; Ram, K.
R.; Chowdhuri, D. K.; Shukla, Y.; Kumar,P.; Gupta, K. C. Linear PEI nanoparticles: efficient pDNA/siRNA carriers in vitro and in vivo. Nanomed.Nanotechnol. Biol. Med. 2012, 8 (2), 167-175.164.Grayson, S. M.; Godbey, W. T. The role of macromolecular architecture in passively targetedpolymeric carriers for drug and gene delivery.
J. Drug Targeting 2008, 16 (5), 329-356.165.Clamme, J. P.; Azoulay, J.; Mely, Y. Monitoring of the formation and dissociation ofpolyethylenimine/DNA complexes by two photon fluorescence correlation spectroscopy. Biophys. J.2003, 84 (3), 1960-1968.166.Bloomfield, V. A. Condensation of DNA by multivalent cations: Considerations on mechanism.Biopolymers 1991, 31 (13), 1471-1481..