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ORIGINAL ARTICLE

Preparation and characterization of silanized poly(HEMA) nanoparticles for recognition of sugars

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Pages 835-841 | Received 22 Sep 2014, Accepted 02 Nov 2014, Published online: 03 Dec 2014

References

  • Akgöl S, Öztürk N, Denizli A. 2010. New generation polymeric nanospheres for lysozyme adsorption. J Appl Polym Sci. 115:1608–1615.
  • Amaya-Delgado L, Hidalgo-Lara ME, Montes-Horcasitas MC. 2006. Hydrolysis of sucrose by invertase immobilized on nylon-6 microbeads. Food Chem. 99:299–304.
  • Aoki T, Nagao Y, Sanui K, Ogata N, Kikuchi A, Sakurai Y, et al. 1996. Glucose-sensitive lower critical solution temperature changes of copolymers composed of N-isopropylacrylamide and phenylboronic acid moieties. Polym J. 28:371–374.
  • Aoki T, Nagao Y, Terada E, Sanui K, Ogata N, Yamada N, et al. 1995. Endothelial cell differentiation into capillary structures by copolymer surfaces with phenylboronic acid groups. J Biomater Sci Polym Ed. 7:539–550.
  • Appleton B, Gibson TD. 2000. Detection of total sugar concentration using photoinduced electron transfer materials: development of operationally stable, reusable optical sensors. Sens. Actuators B 65:302–304.
  • Bouriotis V, Galpin IJ, Dean PDG. 1981. Applications of immobilised phenylboronic acids as supports for group-specific ligands in the affinity chromatography of enzymes. J Chromatogr. 210:267–278.
  • Cabell LA, Monahan MK, Anslyn EV. 1999.A competition assay for determining glucose-6-phosphate concentration with a tris-boronic acid receptor Tetrahedron Lett. 40:7753–7756.
  • Cambre JN, Sumerlin BS. 2011. Biomedical applications of boronic acid polymers. Polymer 52:4631–4643.
  • Camli ST, Tuncel M, Senel S, Tuncel A. 2002. Nucleotide adsorption–desorption behaviour of boronic acid functionalized uniform- porous particles. J. Chromatogr B. 769:283–295.
  • Duncan RE, Gilham PT. 1975. Isolation of transfer RNA isoacceptors by chromatography on dihydroxyboryl-substituted cellulose, polyacrylamide, and glass. Anal Biochem. 66:532–539.
  • Edelstein AS, Cammarata RC. 1996. Nanomaterials: Synthesis, Properties and Applications. Institute of Physics Publishing: Bristol, UK.
  • Elmas B, Onur MA, Senel S, Tuncel A. 2004. Thermosensitive N- isopropylacrylamide-vinylphenyl boronic acid copolymer latex particles for nucleotide isolation. Colloids Surf A. 232:253–259.
  • Elmas B, Senel S, Tuncel A. 2007. A new thermosensitive fluorescent probe for diol sensing: Poly(N-isopropylacrylamide-co-vinylphenylboronic acid)- alizarin red S complex. React Funct Polym. 67:87–96.
  • Gao S, Wang W, Wang B. 2001. Building fluorescent sensors for carbohydrates using template-directed polymerizations. Bioorg Chem. 29:308–320.
  • Gascon A, Wood T, Chitemerere L. 1981. The separation of isomeric pentose phosphates from each other and the preparation of D-xylulose 5-phosphate and D-ribulose 5-phosphate by column chromatography. Anal Biochem. 118:4–9.
  • Hegedüs I, Nagy E. 2009. Improvement of chymotrypsin enzyme stability as single enzyme nanoparticles. Chem Eng Sci. 64:1053–1060.
  • Hisamitsu I, Kataoka K, Okano T, Sakurai Y. 1997. Glucose-responsive gel from phenylborate polymer and poly (Vinyl Alcohol): prompt response at physiological pH through the interaction of borate with amino group in the gel. Pharm Res. 14:289–293.
  • Ho NWY, Duncan RE, Gilham PT. 1981. Esterification of terminal phosphate groups in nucleic acids with sorbitol and its application to the isolation of terminal polynucleotide fragments. Biochemistry 20:64–67.
  • Kataoka K, Miyazaki H, Okano T, Sakurai Y. 1994. Sensitive glucose-induced change of the lower critical solution temperature of poly[N,N-(dimethylacrylamide)-co-3-(acrylamido)-phenylboronic acid] in physiological saline. Macromolecules 27:1061–1062.
  • Koyama T, Terauchi K. 1996. Synthesis and application of boronic acid-immobilized porous polymer particles: a novel packing for high-performance liquid affinity chromatography. J Chromatogr B. 679:31–40.
  • Liao M-H, Chen D-H. 2002. Fast and efficient adsorption/desorption of protein by a novel magnetic nano-adsorbent. Biotechnol Lett. 24:1913–1917.
  • Maestas RR, Prieto JR, Kuehn GD, Hageman JH. 1980. Polyacrylamide-boronate beads saturated with biomolecules: a new general support for affinity chromatography of enzymes. J Chromatogr. 189:225–231.
  • Middle FA, Bannister A, Bellingham AJ, Dean PDG. 1983. Separation of glycosylated haemoglobins using immobilized phenylboronic acid. Effect of ligand concentration, column operating conditions, and comparison with ion-exchange and isoelectric-focusing. Biochem J. 209:771–779.
  • Özdemir A, Tuncel A. 2000. Boronic acid-functionalized HEMA-based gels for nucleotide adsorption. J Appl Polym Sci. 78:268–277.
  • Öztürk N, Tabak A, Akgöl S, Denizli A. 2007. Newly synthesized bentonite–histidine (Bent–His) micro-composite affinity sorbents for IgG adsorption. Colloid Surf A. 301:490–497.
  • Pace B, Pace NR. 1980. The chromatography of RNA and oligoribonucleotides on boronate-substituted agarose and polyacrylamide. Anal Biochem. 107:128–135.
  • Sarı M, Akgöl S, Karataş M, Denzli A. 2006. Reversible immobilization of catalase by metal chelate affinity interaction on magnetic beads. Ind Eng Chem Res. 45:3036–3043.
  • Senel S. 2003. Boronic acid carrying (2-hydroxyethylmethacrylate)-based membranes for isolation of RNA. Colloids Surf A. 219:17–23.
  • Shiino D, Murata Y, Kubo A, Kim YJ, Kataoka K, Koyama Y, et al. 1995. Amine containing phenylboronic acid gel for glucose-responsive insulin release under physiological pH. J Control Release. 37:269–276.
  • Singhal RP. 1983. High-performance liquid chromatography of transfer RNAs: separation of transfer RNAs from mammalian sources. J Chromatogr. 266:359–383.
  • Springsteen G, Wang B. 2002. A detailed examination of boronic acid-diol complexation. Tetrahedron. 58:5291–5300.
  • Springsteen G, Wang BH. 2001. Alizarin Red S. As a general optical reporter for studying the binding of boronic acids with carbohydrates. Chem Commun. 17:1608–1609.
  • Steinberg-Tatman G, Huynh M, Barker D, Zhao C. 2006. Synthetic modification of silica beads that allows for sequential attachment of two different oligonucleotides. Bioconjug Chem. 17:841–848.
  • Sugumaran M, Lipke H. 1982. A procedure for isolation and concentration of catechols by chromatography on dihydroxyboryl cellulose. Anal Biochem. 121:251–256.
  • Tong AJ, Yamauchi A, Hayashita T, Zhang ZY, Smith BD, Teramae N. 2001. Boronic acid fluorophore/β-cyclodextrin complex sensors for selective sugar recognition in water. Anal Chem. 73:1530–1536.
  • Tuncel A, Ozdemir A. 2000. Thermally reversible VPBANIPAM copolymer gels for nucleotide adsorption. J Biomater Sci-Polym E. 11:817–831.
  • Uygun DA, Çorman ME, Öztürk N, Akgöl S, Denizli A. 2010. Poly (hydroxyethyl methacrylate-co-methacryloylamidotryptophane) nanospheres and their utilization as affinity adsorbents for porcine pancreas lipase. Mat Sci Eng C. 30:1285–1290.
  • Uygun DA, Karagözler AA, Akgöl S, Denizli A. 2009. Magnetic hydrophobic affinity nanobeads for lysozyme separation. Mat Sci Eng C. 29:2165–2173.
  • Van Duin M, Peters JA, Kieboom APG, Van Bekkum H. 1984. Studies on borate esters 1: The ph dependence of the stability of esters of boric acid and borate in aqueous medium as studied by 11B NMR. Tetrahedron. 40:2901–2911.
  • Williams GT, Johnstone AP, Dean PDG. 1982. Fractionation of membrane proteins on phenylboronic acid-agarose. Biochem J. 205:167–171.
  • Yamamoto M, Takeuchi M, Shinkai S. 1998. Molecular Design of a PET-based chemosensor for uronic acids and sialic acids utilizing a cooperative action of boronic acid and metal chelate. Tetrahedron 54:3125–3140.

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