Biomedical Engineering Reference
In-Depth Information
118. R.E. Ionescu, C. Gondran, L.A. Gheber, S. Cosnier, and R.S. Marks, Construction of amperometric
immunosensors based on the electrogeneration of a permeable biotinylated polypyrrole fi lm. Anal.
Chem. 76 , 6808-6813 (2004).
119. C.X. Lei, Y. Yang, H. Wang, G.L. Shen, and R.Q. Yu, Amperometric immunosensor for probing com-
plement III (C 3 ) based on immobilizing C 3 antibody to a nano-Au monolayer supported by sol-gel-
derived carbon ceramic electrode. Anal. Chim. Acta 513 , 379-384 (2004).
120. J. Chen, F. Yan, Z. Dai, and H.X. Ju, Reagentless amperometric immunosensor for human chorionic
gonadotrophin based on direct electrochemistry of horseradish peroxidase. Biosens. Bioelectron. 21 ,
330-336 (2005).
121. J. Li, L.T. Xiao, G.M. Zeng, G.H. Huang, G.L. Shen, and R.Q. Yu, Immunosensor for rapid detection
of gibberellin acid in the rice grain. J. Agric. Food Chem. 53 , 1348-1353 (2005).
122. X. Chu, Z.F. Xiang, X. Fu, S.P. Wang, G.L. Shen, and R.Q. Yu, Silver-enhanced colloidal gold met-
alloimmunoassay for Schistosoma japonicum antibody detection. J. Immunol. Methods 301 , 77-88
(2005).
123. E. Katz, L. Alfonta, and I. Willner, Chronopotentiometry and Faradaic impedance spectroscopy as
methods for signal transduction in immunosensors. Sens. Actuators B 76 , 134-141 (2001).
124. L. Alfonta, A.K. Singh, and I. Willner, Liposomes labeled with biotin and horseradish peroxidase:
a probe for the enhanced amplifi cation of antigen-antibody or oligonucleotide-DNA sensing processes
by the precipitation of an insoluble product on electrodes. Anal. Chem. 73 , 91-102 (2001).
125. O.S. Wolfbies, Fiber-optic chemical sensors and biosensors. Anal. Chem. 72 , 81-90 (2000).
126. O.S. Wolfbies, Fiber-optic chemical sensors and biosensors. Anal. Chem. 74 , 2663-2678 (2002).
127. J. Homola, S.S. Yee, and G. Gauglitz, Surface plasmon resonance sensors: a review. Sens. Actuators B
54 , 3-15 (1999).
128. W.M. Mullett, E.P.C. Lai, and J.M. Yeung, Surface plasmon resonance-based immunoassays. Methods
22 , 77-91 (2000).
129. D.J. Schofi eld and N.J. Dimmock, Determination of affi nities of a panel of IgGs and Fabs for whole
enveloped (infl uenza A) virions using surface plasmon resonance. J. Virol. Methods 62 , 33-42 (1996).
130. S.H. Choi, J.W. Lee, and S.J. Sim, Enhanced performance of a surface plasmon resonance immuno-
sensor for detecting Ab-GAD antibody based on the modifi ed self-assembled monolayers. Biosens.
Bioelectron. 21 , 378-383 (2005).
131. U. Kunz, A. Katerkamp, R. Renneberg, F. Spener, and K. Cammann, Sensing fatty acid binding protein
with planar and fi ber-optical surface plasmon resonance spectroscopy devices. Sens. Actuators B 32 ,
149-155 (1996).
132. B.K. Oh, Y.K. Kim, K.W. Park, W.H. Lee, and J.W. Choi, Surface plasmon resonance immunosensor
for the detection of Salmonella typhimurium. Biosens. Bioelectron. 19 , 1497-1054 (2004).
133. B.K. Oh, Y.K. Kim, W. Lee, Y.M. Bae, W.H. Lee, and J.W. Choi, Immunosensor for detection of
Legionella pneumophila using surface plasmon resonance. Biosens. Bioelectron. 18 , 605-611 (2003).
134. A.I. Hemmila, in Applications of Fluorescence in Immunoassay , pp. 146-148. John Wiley & Sons
Press (1991).
135. C.M. Maragos, M.E. Jolley, R.D. Plattner, and M.S. Nasir, Fluorescence polarization as a means for
determination of fumonisins in maize. J. Agric. Food Chem. 49 , 596-602 (2001).
136. S. Aoyagi, R. Imai, K. Sakai, and M. Kudo, Reagentless and regenerable immunosensor for monitoring
of immunoglobulin G based on non-separation immunoassay. Biosens. Bioelectron. 18 , 791-795 (2003).
137. C.A. Rowe, S.B. Scruggs, M.J. Feldstein, J.P. Golden, and F.S. Ligler, An array immunosensor for
simultaneous detection of clinical analytes. Anal. Chem. 71 , 433-439 (1999).
138. S. Aoyagi and M. Kudo, Development of fl uorescence change-based, reagent-less optic immunosensor.
Biosens. Bioelectron. 20 , 1680-1684 (2005).
139. S. Santra, P. Zhang, K.M. Wang, R. Tapec, and W.H. Tan, Conjugation of biomolecules with lumino-
phore-doped silica nanoparticles for photostable biomarkers. Anal. Chem. 73 , 4988-4993 (2001).
140. L.J. Kricka, Clinical applications of chemiluminescence. Anal. Chim. Acta 500 , 279-286 (2003).
141. J.H. Lin, F. Yan, X.Y. Hu, and H.X. Ju, Chemiluminescent immunosensor for CA19-9 based on antigen
immobilization on a cross-linked chitosan membrane. J. Immunol. Methods 291 , 165-174 (2004).
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