Physical properties and biological activity of poly(butyl acrylate–styrene) nanoparticle emulsions prepared with conventional and polymerizable surfactants
Tài liệu tham khảo
Turos, 2007, Antibiotic-conjugated polyacrylate nanoparticles: new opportunities for development of anti-MRSA agents, Bioorg Med Chem Lett, 17, 53, 10.1016/j.bmcl.2006.09.098
Abeylath, 2007, Glycosylated polyacrylate nanoparticles by emulsion polymerization, Carb Polym, 70, 32, 10.1016/j.carbpol.2007.02.027
Turos, 2007, Penicillin-bound polyacrylate nanoparticles: restoring the activity of β-lactam antibiotics against MRSA, Bioorg Med Chem Lett, 17, 3468, 10.1016/j.bmcl.2007.03.077
Abeylath, 2008, Novel carbohydrated nanoparticle antibiotics for MRSA and Bacillus anthracis, Bioorg Med Chem, 16, 2412, 10.1016/j.bmc.2007.11.052
Greenhalgh, 2009, In vivo studies of polyacrylate nanoparticle emulsions for topical and systemic applications, Nanomedicine, 5, 46, 10.1016/j.nano.2008.07.004
Abeylath, 2008, Drug delivery approaches to overcome bacterial resistance of β-lactam antibiotics, Exp Opin Drug Deliv, 5, 931, 10.1517/17425247.5.9.931
Garay-Jimenez, 2008, Methods for purifying and detoxifying sodium dodecyl sulfate stabilized nanoparticles, Nanomedicine, 4, 98, 10.1016/j.nano.2008.03.004
Schoonbrood, 1997, Reactive surfactants in heterophase polymerization. Emulsion copolymerization mechanism involving three anionic polymerizable surfactants (surfmers) with styrene-butyl acrylate-acrylic acid, Macromolecules, 30, 6024, 10.1021/ma9701447
Unzue, 1997, Reactive surfactant in heterophase polymerization. VI. Synthesis and screening of polymerizable surfactants (surfmers) with varying reactivity in high solids styrene-butyl acrylic acid emulsion polymerization, J Appl Polym Sci, 66, 1803, 10.1002/(SICI)1097-4628(19971128)66:9<1803::AID-APP20>3.0.CO;2-U
Matahwa, 2006, Comparative study of classical surfactants and polymerizable surfactants (surfmers) in the reversible addition-fragmentation chain transfer mediated mini-emulsion polymerization of styrene and methyl methacrylate, J Polym Sci Part A: Polym Chem, 44, 427, 10.1002/pola.21071
Brunel, 1989, Synthesis of new zwitterionic surfactants with improved solubility in water, Tetrahedron, 45, 3363, 10.1016/S0040-4020(01)81015-2
Samakande, 2006, Synthesis and characterization of new cationic quaternary ammonium polymerizable surfactants, J Colloid Interface Sci, 296, 316, 10.1016/j.jcis.2005.09.005
Gilbert, 1995
Paleos, 1998, Polymerization of micelle-forming surfactants, JMS Rev Macromol Chem Phys, 403-18, C28
NCCLS (National Committee for Clinical Laboratory Standards) methods for dilution of antimicrobial susceptibility test for bacteria that grow aerobically. NCCLS Document M7-A4, Vol. 17, No. 2, 1997.
Verhulst, 1998, In vitro correlation between two colorimetric assays and the pyruvic acid consumption by fibroblasts cultured to determine the sodium lauryl sulfate cytotoxicity, J Pharmacol Toxicol Methods, 39, 143, 10.1016/S1056-8719(98)00016-1
Mueller, 1997, Cytotoxicity of solid lipid nanoparticles as a function of the lipid matrix and the surfactant, Pharm Res, 14, 458, 10.1023/A:1012043315093
Craig, 2000, Cytokine release and cytotoxicity in human keratinocytes and fibroblast induced by phenols and sodium dodecyl sulfate, J Invest Dermatol, 115, 292, 10.1046/j.1523-1747.2000.00056.x
Mori, 2002, Cytotoxicity of surfactants to the FHM-sp cell line, Fisheries Sci, 68, 1124, 10.1046/j.1444-2906.2002.00542.x
Arechabala, 1999, Comparison of cytotoxicity of various surfactants tested on normal human fibroblast cultures using the neutral red test, MTT assay and LDH release, J Appl Toxicol, 19, 163, 10.1002/(SICI)1099-1263(199905/06)19:3<163::AID-JAT561>3.0.CO;2-H
Newby, 2000, Cytokine release and cytotoxicity in human keratinocytes and fibroblasts induced by phenols and sodium dodecyl sulfate, J Invest Dermatol, 115, 292, 10.1046/j.1523-1747.2000.00056.x
Elmore, 2002, The human epithelial cell cytotoxicity assay for determining tissue specific toxicity: method modifications, Methods Cell Sci, 24, 145, 10.1023/A:1024453300493
Wei, 2006, Detergents with different chemical properties induce variable degree of cytotoxicity and mRNA expression of lipid-metabolizing enzymes and differentiation markers in cultured keratinocytes, Toxicol In Vitro, 20, 1387, 10.1016/j.tiv.2006.06.002
Varani, 1991, Induction of proliferation of growth-inhibited keratinocytes and fibroblasts in monolayer culture by sodium lauryl sulfate: comparison with all-trans retinoic acid, J Invest Dermatol, 97, 917, 10.1111/1523-1747.ep12491682
Törmä, 2006, Variations in the mRNA expression of inflammatory mediators, markers of differentiation and lipid-metabolizing enzymes caused by sodium lauryl sulphate in cultured human keratinocytes, Toxicol In Vitro, 20, 472, 10.1016/j.tiv.2005.09.011
Van Ruissen, 1998, Differential effects of detergents on keratinocyte gene expression, J Invest Dermatol, 110, 358, 10.1046/j.1523-1747.1998.00155.x
Babich, 1997, Sodium lauryl sulfate and triclosan: in vitro cytotoxicity studies in gingival cells, Toxicol Lett, 91, 189, 10.1016/S0378-4274(97)00022-2
Gould, 2000, Mitigation of surfactant erythrocyte toxicity by egg phosphatidylcholine, J Pharm Pharmacol, 52, 1203, 10.1211/0022357001777333
Brown, 1996, Antigen retrieval in cryostat tissue sections and cultured cells by treatment with sodium dodecyl sulfate (SDS), Histochem Cell Biol, 105, 261, 10.1007/BF01463929
Turos, 2005, N-Methylthio β-lactam antibacterials: effects of the C3/C4 ring substituents on anti-MRSA activity, Bioorg Med Chem, 13, 6289, 10.1016/j.bmc.2005.08.011