Self-assembly of biotin and thio-functionalized carboxymethyl celluloses on gold and molecular recognition of streptavidin detected by surface plasmon resonance

Springer Science and Business Media LLC - Tập 14 Số 2 - Trang 89-98 - 2007
Gerhard Wenz1, Petra Liepold2
1Organische Makromolekulare Chemie, Saarland University, Postfach 151150, D-66041, Saarbrücken, Germany
2FRIZ Biochem Gesellschaft für Bioanalytik mbH, D-81447, München, Germany

Tóm tắt

Từ khóa


Tài liệu tham khảo

Bain C.D., Troughton E.B., Tao Y.T., Evall J., Whitesides G.M., Nuzzo R.G. (1989). Formation of monolayer films by the spontaneous assembly of organic thiols from solution onto gold. J. Am. Chem. Soc. 111: 321–335

Berlin P., Klemm D., Jung A., Liebegott H., Rieseler R., Tiller J. (2003). Film-forming aminocellulose derivatives as enzyme-compatible support matrices for biosensor developments. Cellulose 10: 343–367

Choi S., Lauer H., Wenz G., Bruns M., Petri D.F.S. (2000). Formation of dense cellulose monolayers on silver surfaces. J. Braz. Chem. Soc. 11: 11–15

De Feijter J.A., Benjamins J., Veer F.A. (1978). Ellipsometry as a tool to study the adsorption behavior of synthetic and biopolymers at the air–water interface. Biopolymers 17: 1759–1772

Ding S.-J., Chang B.-W., Wu C.-C., Lai M.-F., Chang H.-C. (2005). Electrochemical evaluation of avidin-biotin interaction on self-assembled gold electrodes. Electrochim. Acta 50: 3660–3666

Erdelen C., Häussling L., Naumann R., Ringsdorf H., Wolf H., Yang J., Liley M., Spinke J., Knoll W. (1994). Self-assembled disulfide-functionalized amphiphilic copolymers on gold. Langmuir 10: 1246–1250

Gradwell S.E., Renneckar S., Esker A.R., Heinze T., Gatenholm P., Vaca-Garcia C. and Glasser W. (2004). Surface modification of cellulose fibers: towards wood composites by biomimetics. C. R. Biol. 327: 945–953

Hausch M., Beyer D., Knoll W., Zentel R. (1998). Ultrathin polymer films on gold supports: LB-transfer versus self assembly. Langmuir 14: 7213–7216

Haussling L., Ringsdorf H., Schmitt F.J., Knoll W. (1991). Biotin-functionalized self-assembled monolayers on gold – surface-plasmon optical studies of specific recognition reactions. Langmuir 7: 1837–1840

Hendrickson W.A., Paehler A., Smith J.L., Satow Y., Merritt E.A., Phizackerley R.P. (1989). Crystal structure of core streptavidin determined from multiwavelength anomalous diffraction of synchrotron radiation. Proc. Natl. Acad. Sci. USA 86: 2190–2194

Johnsson B., Löfas S., Lindquist G. (1991). Immobilization of proteins to a carboxymethyldextran- modified gold surface for biospecific interaction analysis in surface plasmon resonance sensors. Anal. Biochem. 198: 268–277

Jung L.S., Nelson K.E., Campbell C.T., Stayton P.S., Yee S.S., Perez-Luna V., Lopez G.P. (1999). Surface plasmon resonance measurement of binding and dissociation of wild-type and mutant streptavidin on mixed biotin-containing alkylthiolate monolayers. Sens. Actuators, B B54: 137–144

Klemm D., Heinze T., Philipp B., Wagenknecht W. (1997). New approaches to advanced polymers by selective cellulose functionalization. Acta Polymer. 48: 277–297

Klemm D., Heublein B., Fink H.-P., Bohn A. (2005). Cellulose: fascinating biopolymer and sustainable raw material. Angew. Chem., Int. Ed. 44: 3358–3393

Liu Z., Amiridis M.D. (2005). FT-IRRAS quantitative analysis of specific avidin adsorption on biotinylated au surfaces. Surf. Sci. 596: 117–125

Löfas S. and Johnsson B. 1990. A novel hydrogel matrix on gold surfaces in surface plasmon resonance sensors for fast and efficient covalent immobilization of ligands. J. Chem. Soc., Chem. Commun. 1526–1528

Lynch D.W. and Hunter W.R. 1985. Optical constants of metals. In: Palik, E. D. (ed) Handbook of Optical Constants of Solids. Academic Press, San Diego, pp. 286–295

Munro J.C., Frank C.W. (2003). Adsorption of disulfide-modified polyacrylamides to gold and silver surfaces as cushions for polymer-supported lipid bilayers. Polymer 44: 6335–6344

Nuzzo R.G., Allara D.L. (1983). Adsorption of bifunctional organic disulfides on gold surfaces. J. Am. Chem. Soc. 105: 4481–4483

O’Sullivan A.C. (1997). Cellulose: the structure slowly unravels. Cellulose 4: 173–207

Perez-Luna V.H., Yang S., Rabinovich E.M., Buranda T., Sklar L.A., Hampton P.D. and Lopez G.P. (2002). Fluorescence biosensing strategy based on energy transfer between fluorescently labeled receptors and a metallic surface. Biosens. Bioelectron. 17: 71–78

Schaub M., Wenz G., Wegner G., Stein A., and Klemm D. (1993). Ultrathin films of cellulose on silicon wafers. Adv. Mater. 12: 919–921

Schaub M., Fakirov C., Schmidt A., Lieser G., Wenz G., Wegner G., Albouy P.A., Wu H., Foster M.D., Majrkzak C., Satija S. (1995). Ultrathin layers and supramolecular architecture of isopentylcellulose. Macromolecules 28: 1221–1228

Schreiber F. (2004). Self-assembled monolayers. From ‘simple’ model systems to biofunctionalized interfaces. J. Phys.: Condens. Matter 16: R881–R900

Shinohara Y., Sota H., Kim F., Shimizu M., Gotoh M., Tosu M., Hasegawa Y. (1995). Use of a biosensor based on surface plasmon resonance and biotinyl glycans for analysis of sugar binding specificities of lectins. J. Biochem. (Tokyo, Jpn.) 117: 1076–1082

Spinke J., Liley M., Guder H.-J., Angermaier L., Knoll W. (1993). Molecular recognition at self-assembled monolayers: the construction of multicomponent multilayer. Langmuir 9: 1821–1825

Trester-Zedlitz M., Kamada K., Burley S.K., Fenyoe D., Chait B.T. Muir T.W. (2003). A modular cross-linking approach for exploring protein interactions. J. Am. Chem. Soc. 125: 2416–2425

Voros J., Ramsden J.J., Csucs G., Szendro I., De Paul S.M., Textor M., Spencer N.D. (2002). Optical grating coupler biosensors. Biomaterials 23: 3699–3710

Weber P.C., Ohlendorf D.H., Wendoloski J.J., Salemme F.R. (1989). Structural origins of high-affinity biotin binding to streptavidin. Science 243: 85–88

Wenz G. (2003). The german ‘Schwerpunktprogramm’ on cellulose has come to an end. Cellulose 10: 1–2

Wenz G., Choi S., Bruns M., Schimmel T., Beyer H., Siqueira Petri D.F. (1999). Synthesis of a cellulose thiosulfate and its immobilization on gold surfaces. Polymer 40: 1593–1601

Wenz G., Petri D.F. and Choi S.W. 2001. Polymer thiosulfates for coating of metals. Patent US 6,245,579 B1, Universität Karlsruhe, Chem. Abstr. 130, 183895

Wenz G., Liepold P., Bordeanu N. (2004). Monolayers of reactive cellulose derivatives. Macromol. Symp. 210: 203–208

Wenz G., Liepold P., Bordeanu N. (2005). Synthesis and sam formation of water soluble functional carboxymethylcelluloses: thiosulfates and thioethers. Cellulose 12: 85–96

Xia Y.N., Rogers J.A., Paul K.E., Whitesides G.M. (1999). Unconventional methods for fabricating and patterning nanostructures. Chem. Rev. 99: 1823–1848

Xia N., Shumaker-Parry J.S., Zareie M.H., Campbell C.T., Castner D.G. (2004). A streptavidin linker layer that functions after drying. Langmuir 20: 3710–3716

Zhou C., Khlestkin V.K., Braeken D., De Keersmaecker K., Laureyn W., Engelborghs Y., Borghs G. (2005). Solvent-controlled organization of self-assembled polymeric monolayers on gold: an easy approach for the construction of protein resistant surfaces. Langmuir 21: 5988–5996

Zynio S.A., Samoylov A.V., Surovtseva E.R., Mirsky V.M., Shirshov Y.M. (2002). Bimetallic layers increase sensitivity of affinity sensors based on surface plasmon resonance. Sensors 2: 62–70