Bioinspired Water-soluble Polymers with Grafted Polyamine Chains: Synthesis and Complexation with Oligonucleotides
English
Bioinspired Water-soluble Polymers with Grafted Polyamine Chains: Synthesis and Complexation with Oligonucleotides
-
Key words:
- Polyamine
- / Polymeric amine
- / Gene delivery
- / Acryloyl chloride
-
-
-
[1]
Kadajji, V. G.; Betageri, G. V. Water soluble polymers for pharmaceutical applications. Polymers 2011, 3, 1972−2009 doi: 10.3390/polym3041972
-
[2]
McCormick, C., in "Water-Soluble Polymers. Chapter 1", eds by Shalaby, S.; McCormick, C.; Butler, G., American Chemical Society, Washington, 1991, p. 2-24.
-
[3]
Srivastava, A.; Yadav, T.; Sharma, S.; Nayak, A.; Kumari, A.; Mishra, N. J. Polymers in drug delivery. J. Biosci. Med. 2016, 4, 69−84
-
[4]
Kroger, N.; Deutzmann, R.; Sumper, M. Polycationic peptides from diatom biosilica that direct silica nanosphere formation. Science 1999, 286(5442), 1129−1132 doi: 10.1126/science.286.5442.1129
-
[5]
Kroger, N.; Deutzmann, R.; Bergsdorf, C.; Sumper, M. Species-specific polyamines from diatoms control silica morphology. Proc. Natl. Acad. Sci. U.S.A. 2000, 97, 14133−14138 doi: 10.1073/pnas.260496497
-
[6]
Dubruel, P.; Schacht, E. Vinyl polymers as non-viral gene delivery carriers: current status and prospects. Macromol. Biosci. 2006, 6(10), 789−810 doi: 10.1002/(ISSN)1616-5195
-
[7]
Amreddy, N.; Babu, A.; Muralidharan, R.; Munshi, A.; Ramesh, R. Polymeric nanoparticle-mediated gene delivery for lung cancer treatment. Top. Curr. Chem. 2017, 375(35), 1−23 doi: 10.1007/s41061-017-0128-5
-
[8]
Zhang, P.; Wagner, E. History of polymeric gene delivery systems. Top. Curr. Chem. (Cham.) 2017, 375(26), 1−39 doi: 10.1007/s41061-017-0112-0
-
[9]
Innus, M. Antisense cancer therapy: do antisense oligonucleotides hold promise as a cure for cancer? Chem. Sci. J. 2017, 8(2), e117 doi: 10.4172/2150-3494.1000e117
-
[10]
Zaimy, M.; Saffarzadeh, N.; Mohammadi, A.; Pourghadamyari, H.; Izadi, P.; Sarli, A.; Moghaddam, L.; Paschepari, S.; Azizi, H.; Torkamandi, S.; Tavakkoly-Bazzaz, J. New methods in the diagnosis of cancer and gene therapy of cancer based on nanoparticles. Cancer Gene Ther. 2017, 24, 233−243 doi: 10.1038/cgt.2017.16
-
[11]
Gurav, B.; Srinivasan, G. Antisense oligonucleotides as therapeutics and their delivery. Curr. Sci. 2017, 1(12), 490−498 doi: 10.18520/cs/v112/i03/490-498
-
[12]
Hu, X.; Liu, S. Recent advances towards fabrication and biomedical applications of responsive polymeric assemblies and nanoparticle hybrid superstructures. Dalton Trans. 2015, 44, 3904−3922 doi: 10.1039/C4DT03609C
-
[13]
Deng, Z.; Qian, Y.; Yu, Y.; Liu, G.; Hu, J.; Zhang, G.; Liu, S. J. Am. Chem. Soc. 2016, 138, 10452−10466 doi: 10.1021/jacs.6b04115
-
[14]
Annenkov, V. V.; Danilovtseva, E. N.; Pal'shin, V. A.; Aseyev, V. O.; Petrov, A. K.; Kozlov, A. S.; Patwardhan, S. V.; Perry, C. C. Poly (vinyl amine)-silica composite nanoparticles: models of the silicic acid cytoplasmic pool and as a silica precursor for composite materials formation. Biomacromolecules 2011, 12, 1772−1780 doi: 10.1021/bm2001457
-
[15]
Annenkov, V. V.; Zelinskiy, S. N.; Danilovtseva, E. N.; Perry, C. C. Synthesis of biomimetic polyamines. ARKIVOC 2009, xiii, 116-130.
-
[16]
Lin, L.; Guo, Z. P.; Chen, J.; Tian, H. Y.; Chen X. S. Synthesis and characterization of polyphenylalanine grafted low molecular weight PEI as efficient gene carriers. Acta Polymerica Sinica (in Chinese) 2017, (2), 321−328 doi: 10.11777/j.issn1000-3304.2017.16277
-
[17]
Pavlov, G. M.; Korneeva, E. V.; Ebel, C.; Gavrilova, I. I.; Nesterova, N. A.; Panarin, E. F. Hydrodynamic behavior, molecular mass and conformational parameters of poly(vinylformamide) molecules. Polym. Sci. A 2004, 46(10), 1063−1067
-
[18]
Buruiana, E. C.; Buruiana, T.; Hahui, L. Preparation and characterization of new optically active poly(N-acryloyl chloride) functionalized with (S)-phenylalanine and pendant pyrene. J. Photochem. Photobiol. A Chem. 2007, 189, 65−72 doi: 10.1016/j.jphotochem.2007.01.008
-
[19]
Newman, S.; Krigbaum, W. R.; Laugier, C.; Flory, P. J. Molecular dimensions in relation to intrinsic viscositie. J. Polym. Sci., Part A: Polym. Chem. 1954, 14(77), 451−462 doi: 10.1002/pol.1954.120147704
-
[20]
Nazhmiddinov, S. H.; Turayev, A. S.; Usmanov, K. H. U.; Bazarbayev, A. Copolymerization of acrylil and methacrylil chlorides with vinyl compounds. J. Polym. Sci. Symp. 1973, 42(3), 1591−1599
-
[21]
Liu, Q.; Zhu, M. Determination of molar ratio of primary secondary and tertiary amines in polymers by applying derivatization and NMR spectroscopy. Polym. Test. 2016, 56, 174−179 doi: 10.1016/j.polymertesting.2016.10.013
-
[22]
Nikolova, M.; Savova, I.; Marinov, M. An optimised method for investigation of the yeast viability by means of fluorescent microscopy. J. Cultur. Collect. 2002, 3(1), 66−71
-
[23]
Kwolek-Mirek, M.; Zadrag-Tecza, R. Comparison of methods used for assessing the viability and vitality of yeast cells. FEMS Yeast Res. 2014, 14(7), 1068−1079 doi: 10.1111/1567-1364.12202
-
[24]
Takei, Y.; Kadomatsu, K.; Yuzawa, Y.; Matsuo, S.; Muramatsu, T. A small interfering RNA targeting vascular endothelial growth factor as cancer therapeutics. Cancer Res. 2004, 64(10), 3365−3370 doi: 10.1158/0008-5472.CAN-03-2682
-
[25]
Cerny, L. C.; Helminiak, T. E.; Meier, J. F. Osmotic pressures of aqueous polyvinylpyrrolidone solutions. J. Polym. Sci. 1960, 44, 539−545 doi: 10.1002/pol.1960.1204414425
-
[26]
Gordon, A. and Ford, R., "The chemist's companion: a handbook of practical data, techniques, and references", Wiley, New York, 1972, p. 560
-
[27]
Smith, A., "Applied infrared spectroscopy: fundamentals, techniques, and analytical problem-solving", Wiley, New York, 1979, p. 336
-
[1]
-
扫一扫看文章
计量
- PDF下载量: 0
- 文章访问数: 1375
- HTML全文浏览量: 58

下载: