Synthesis of polyvinyl alcohol/CuO nanocomposite hydrogel and its application as drug delivery agent
Tóm tắt
Từ khóa
Tài liệu tham khảo
Hamidi M, Azadi A, Rafiei P (2008) Hydrogel nanoparticles in drug delivery. Adv Drug Deliv Rev 60(15):1638–1649
Yadollahi M, Gholamali I, Namazi H, Aghazadeh M (2015) Synthesis and characterization of antibacterial carboxymethylcellulose/CuO bio-nanocomposite hydrogels. Int J Biol Macromol 73:109–114
Yadollahi M, Namazi H, Aghazadeh M (2015) Antibacterial carboxymethyl cellulose/Ag nanocomposite hydrogels cross-linked with layered double hydroxides. Int J Biol Macromol 79:269–277. https://doi.org/10.1016/j.ijbiomac.2015.05.002
Namazi H, Rakhshaei R, Hamishehkar H, Kafil HS (2016) Antibiotic loaded carboxymethylcellulose/MCM-41 nanocomposite hydrogel films as potential wound dressing. Int J Biol Macromol 85:327–334
Gulrez SK, Al-Assaf S, Phillips GO (2011) Hydrogels: methods of preparation, characterisation and applications. In: Carpi A (ed) Progress in molecular and environmental bioengineering-from analysis and modeling to technology applications. InTech, London, pp 117–151. https://doi.org/10.5772/771
Amin S, Rajabnezhad S, Kohli K (2009) Hydrogels as potential drug delivery systems. Sci Res Essays 4(11):1175–1183
Rudzinski W, Dave A, Vaishnav U, Kumbar S, Kulkarni A, Aminabhavi T (2002) Hydrogels as controlled release devices in agriculture. Des Monomers Polym 5(1):39–65
Gao D, Heimann R, Lerchner J, Seidel J, Wolf G (2001) Development of a novel moisture sensor based on superabsorbent poly(acrylamide)-montmorillonite composite hydrogels. J Mater Sci 36(18):4567–4571
Namazi H, Jafarirad S (2011) Application of hybrid organic/inorganic dendritic ABA type triblock copolymers as new nanocarriers in drug delivery systems. Int J Polym Mater 60(9):603–619
Yadollahi M, Namazi H (2013) Synthesis and characterization of carboxymethyl cellulose/layered double hydroxide nanocomposites. J Nanopart Res 15(4):1563
Muppalaneni S, Omidian H (2013) Polyvinyl alcohol in medicine and pharmacy: a perspective. J Dev Drugs 2(3):112–117. https://doi.org/10.4172/2329-6631.1000112
Patachia S, Rinja M, Isac L (2004) Some methods for doping poly(vinyl alcohol) hydrogels [PVA-HG]. Phys Chem 51:253–262
Jiang S, Liu S, Feng W (2011) PVA hydrogel properties for biomedical application. J Mech Behav Biomed Mater 4(7):1228–1233
Sirousazar M, Yari M (2010) Dehydration kinetics of polyvinyl alcohol hydrogel wound dressings during wound healing process. Chin J Polym Sci 28(4):573–580
Kobayashi M, Hyu HS (2010) Development and evaluation of polyvinyl alcohol-hydrogels as an artificial atrticular cartilage for orthopedic implants. Materials 3(4):2753–2771
Hassan CM, Peppas NA (2000) Structure and applications of poly(vinyl alcohol) hydrogels produced by conventional crosslinking or by freezing/thawing methods. In: Biopolymers· PVA hydrogels, anionic polymerisation nanocomposites. Springer, pp 37–65
Lanje AS, Sharma SJ, Pode RB, Ningthoujam RS (2010) Synthesis and optical characterization of copper oxide nanoparticles. Adv Appl Sci Res 1(2):36–40
Swarnkar R, Singh S, Gopal R (2009) Synthesis of copper/copper-oxide nanoparticles: optical and structural characterizations. In: AIP Conference Proceedings, p 1147
Chang Y-N, Zhang M, Xia L, Zhang J, Xing G (2012) The toxic effects and mechanisms of CuO and ZnO nanoparticles. Materials 5(12):2850–2871
Wongpisutpaisan N, Charoonsuk P, Vittayakorn N, Pecharapa W (2011) Sonochemical synthesis and characterization of copper oxide nanoparticles. Energy Procedia 9:404–409
Ahmad Z, Vargas-Reus M, Bakhshi R, Ryan F, Ren G, Oktar F, Allaker R (2012) Antimicrobial properties of electrically formed elastomeric polyurethane–copper oxide nanocomposites for medical and dental applications. Methods Enzymol 509:87–99
Gouda M, Hebeish A (2009) Preparation and evaluation of CuO/chitosan nanocomposite for antibacterial finishing cotton fabric. J Ind Text 39:203–214. https://doi.org/10.1177/1528083709103142
Yadollahi M, Farhoudian S, Namazi H (2015) One-pot synthesis of antibacterial chitosan/silver bio-nanocomposite hydrogel beads as drug delivery systems. Int J Biol Macromol 79:37–43
Barkhordari S, Yadollahi M, Namazi H (2014) pH sensitive nanocomposite hydrogel beads based on carboxymethyl cellulose/layered double hydroxide as drug delivery systems. J Polym Res 21(6):1–9
Alpesh P, Kibret M (2011) Hydrogel biomaterials. In: Fazel PR (ed) Biomedical engineering—frontiers and challenges. In TeCH, London, pp 275–296. https://doi.org/10.5772/24856
Allen TM, Cullis PR (2004) Drug delivery systems: entering the mainstream. Science 303(5665):1818–1822
Yousef T, Hassan N (2017) Supramolecular encapsulation of doxorubicin with β-cyclodextrin dendrimer: in vitro evaluation of controlled release and cytotoxicity. J Incl Phenom Macrocycl Chem 87(1–2):105–115
Toomari Y, Namazi H (2016) Synthesis of supramolecular biodendrimeric β-CD-(spacer-β-CD) 21 via click reaction and evaluation of its application as anticancer drug delivery agent. Int J Polym Mater Polym Biomater 65(10):487–496
Bakravi A, Ahamadian Y, Hashemi H, Namazi H (2018) Synthesis of gelatin‐based biodegradable hydrogel nanocomposite and their application as drug delivery agent. Adv Polym Technol. https://doi.org/10.1002/adv.21938
Carlotti SJ, Giani-Beaune O, Schué F (2001) Water-soluble poly(vinyl alcohol) grafted with propylene oxide and epichlorohydrin: characterization, mechanical properties, and model reactions. J Appl Polym Sci 81(12):2868–2874
Bai X, Ye Z, Li Y, Ma Y (2010) Macroporous poly(vinyl alcohol) foam crosslinked with epichlorohydrin for microorganism immobilization. J Appl Polym Sci 117(5):2732–2739
Carbone K, Casarci M, Varrone M (1999) Crosslinked poly(vinyl alcohol) supports for the immobilization of a lipolytic enzyme. J Appl Polym Sci 74(8):1881–1889
Feng Q, Tang B, Wei Q, Hou D, Bi S, Wei A (2012) Preparation of a Cu(II)-PVA/PA6 composite nanofibrous membrane for enzyme immobilization. Int J Mol Sci 13(10):12734–12746
Mallakpour S, Dinari M, Azadi E (2015) Poly(vinyl alcohol) chains grafted onto the surface of copper oxide nanoparticles: application in synthesis and characterization of novel optically active and thermally stable nanocomposites based on poly(amide-imide) containing N-trimellitylimido-l-valine linkage. Int J Polym Anal Charact 20(1):82–97
Boroumand F, Moser JE, Van Den Bergh H (1992) Quantitative diffuse reflectance and transmittance infrared spectroscopy of nondiluted powders. Appl Spectrosc 46(12):1874–1886
Hemalatha K, Rukmani K, Suriyamurthy N, Nagabhushana B (2014) Synthesis, characterization and optical properties of hybrid PVA–ZnO nanocomposite: a composition dependent study. Mater Res Bull 51:438–446
Vicentini DS, Smania A, Laranjeira MC (2010) Chitosan/poly(vinyl alcohol) films containing ZnO nanoparticles and plasticizers. Mater Sci Eng C 30(4):503–508
Li W, Xue F, Cheng R (2007) Synthesis, characterization and swelling properties of a chemically cross-linked poly(vinyl alcohol) hydrogel. Front Chem China 2(2):188–192
Mansur HS, Oréfice RL, Mansur AA (2004) Characterization of poly(vinyl alcohol)/poly(ethylene glycol) hydrogels and PVA-derived hybrids by small-angle X-ray scattering and FTIR spectroscopy. Polymer 45(21):7193–7202
Yang C-C, Lin S-J, Hsu S-T (2003) Synthesis and characterization of alkaline polyvinyl alcohol and poly(epichlorohydrin) blend polymer electrolytes and performance in electrochemical cells. J Power Sources 122(2):210–218
Bhuiyan M, Saidur R, Amalina M, Mostafizur R, Islam A (2015) Effect of nanoparticles concentration and their sizes on surface tension of nanofluids. Procedia Eng 105:431–437
Ruiz J, Mantecon A, Cadiz V (2001) Synthesis and properties of hydrogels from poly(vinyl alcohol) and ethylenediaminetetraacetic dianhydride. Polymer 42(15):6347–6354
Cava R (1990) Structural chemistry and the local charge picture of copper oxide superconductors. Science 247(4943):656–662
Chang C, Duan B, Cai J, Zhang L (2010) Superabsorbent hydrogels based on cellulose for smart swelling and controllable delivery. Eur Polym J 46(1):92–100
Masuda Y, Okazaki Y, Nakanishi T (2002) Ion-specific swelling behavior of poly(vinyl alcohol) gel in aqueous solutions containing some divalent ions. Colloid Polym Sci 280(9):873–875
Hosseinzadeh H (2013) Synthesis and swelling properties of a poly(vinyl alcohol)-based superabsorbing hydrogel. Curr Chem Lett 2(3):153–158
Varshosaz J, Koopaie N (2002) Cross-linked poly(vinyl alcohol) hydrogel: study of swelling and drug release behaviour. Iran Polym J 11:123–131
