Biomedical Engineering Reference
In-Depth Information
19. B.L. Haller, K.A. Fuller, W.S. Brown, J.W. Koenig, B.J. Eveland, and M.G. Scott, Two automated prol-
actin immunoassays evaluated with demonstration of a high-dose “hook effect” in one. Clin. Chem. 38 ,
437-438 (1992).
20. S.A. Fernando and G.S. Wilson, Studies of the “hook” effect in the one-step sandwich immunoassay. J.
Immunol. Methods 151 , 47-66 (1992).
21. C. Singh, G.S. Agarwal, G.P. Rai, L. Singh, and V.K. Rao, Specifi c detection of Salmonella typhi using
renewable amperometric immunosensor. Electroanalysis 17 , 2062-2067 (2005).
22. R.E. Ionescu, C. Gondran, S. Cosnier, L.A. Gheber, and R.S. Marks, Comparison between the perform-
ances of amperometric immunosensors for cholera antitoxin based on three enzyme markers. Talanta
66 , 15-20 (2005).
23. S. Viswanathan, L.-C. Wu, M.-R. Huang, and J.-A.A. Ho, Electrochemical immunosensor for cholera
toxin using liposomes and poly(3,4-ethylenedioxythiophene)-coated carbon nanotubes. Anal. Chem. 78 ,
1115-1121 (2006).
24. E. Zacco, M.I. Pividori, and S. Alegret, Electrochemical biosensing based on universal affi nity biocom-
posite platforms. Biosens. Bioelectron. 21 , 1291-1301 (2006).
25. G. Gitlin, E.A. Bayer, and M. Wilchek, Studies on the biotin-binding site of avidin. Lysine residues
involved in the active site. Biochem. J. 242 , 923-926 (1987).
26. M.L. Jones and G.P. Kurzban, Noncooperativity of biotin binding to tetrameric streptavidin.
Biochemistry 34 , 11 750-11 756 (1995).
27. M. Diaz-Gonzalez, M.B. Gonzalez-Garcia, and A. Costa-Garcia, Immunosensor for mycobacterium
tuberculosis on screen-printed carbon electrodes. Biosens. Bioelectron. 20 , 2035-2043 (2005).
28. J.J. Langone, Protein A of Staphylococcus aureus and related immunoglobulin receptors produced by
streptococci and pneumonococci. Adv. Immunol. 32 , 157-252 (1982).
29. L. Bjoerck and G. Kronvall, Purifi cation and some properties of streptococcal protein G, a novel IgG-
binding reagent. J. Immunol. 133 , 969-974 (1984).
30. B. Akerstrom, T. Brodin, K. Reis, and L. Bjorck, Protein G: a powerful tool for binding and detection of
monoclonal and polyclonal antibodies. J. Immunol. 135 , 2589-2592 (1985).
31. E. Zacco, M.I. Pividori, X. Llopis, M. del Valle, and S. Alegret, Renewable Protein A modifi ed graphite-
epoxy composite for electrochemical immunosensing. J. Immunol. Methods 286 , 35-46 (2004).
32. J. Quinn, P. Patel, B. Fitzpatrick, B. Manning, P. Dillon, S. Daly, R. Okennedy, M. Alcocer, H. Lee,
M. Morgan, and K. Lang, The use of regenerable, affi nity ligand-based surfaces for immunosensor
applications. Biosens. Bioelectron. 14 , 587-595 (1999).
33. J. Yakovleva, R. Davidsson, M. Bengtsson, T. Laurell, and J. Emneus, Microfl uidic enzyme immunosen-
sors with immobilised protein A and G using chemiluminescence detection. Biosens. Bioelectron. 19 ,
21-34 (2003).
34. A. Ramanaviciene and A. Ramanavicius, Application of polypyrrole for the creation of immunosensors.
Crit. Rev. Anal. Chem. 32 , 245-252 (2002).
35. F. Darain, D.S. Park, J.-S. Park, S.-C. Chang, and Y.-B. Shim, A separation-free amperometric immu-
nosensor for vitellogenin based on screen-printed carbon arrays modifi ed with a conductive polymer.
Biosens. Bioelectron. 20 , 1780-1787 (2005).
36. F. Darain, S.-U. Park, and Y.-B. Shim, Disposable amperometric immunosensor system for rabbit IgG
using a conducting polymer modifi ed screen-printed electrode. Biosens. Bioelectron. 18 , 773-780 (2003).
37. A. Ulman, Formation and structure of self-assembled monolayers. Chem. Rev. (Washington, D. C.) 96 ,
1533-1554 (1996).
38. J.J. Gooding, F. Mearns, W. Yang, and J. Liu, Self-assembled monolayers into the 21st century: Recent
advances and applications. Electroanalysis 15 , 81-96 (2003).
39. J.C. Love, L.A. Estroff, J.K. Kriebel, R.G. Nuzzo, and G.M. Whitesides, Self-assembled monolayers
of thiolates on metals as a form of nanotechnology. Chem. Rev. (Washington, DC, United States) 105 ,
1103-1169 (2005).
40. S. Herrwerth, T. Rosendahl, C. Feng, J. Fick, W. Eck, M. Himmelhaus, R. Dahint, and M. Grunze,
Covalent coupling of antibodies to self-assembled monolayers of carboxy-functionalized poly-
(ethylene glycol): protein resistance and specifi c binding of biomolecules. Langmuir 19 , 1880-1887
(2003).
Search WWH ::




Custom Search