Biomedical Engineering Reference
In-Depth Information
319. Nishi, H. et al., A new method for histamine release from purifi ed peripheral blood basophils using
monoclonal antibody-coated magnetic beads, J. Immunol. Meth. , 240, 39, 2000.
320. Chemla, Y.R. et al., Ultrasensitive magnetic biosensor for homogeneous immunoassay PNAS, Proc.
Natl Acad. Sci. , 97, 14268, 2000.
321. Katz, E., Willner, I., and Wang, J., Electroanalytical and bioelectroanalytical systems based on metal
and semiconductor nanoparticles, Electroanalysis , 16, 19, 2004.
322. Hernández-Santos, D., González-García, M.B., and García, A.C., Metal-nanoparticles based electro-
analysis, Electroanalysis , 14, 1225, 2002.
323. Wang, J., Nanomaterial-based electrochemical biosensors, Analyst , 130, 421, 2005.
324. MerkoÇi, A. et al., New materials for electrochemical sensing V. Nanoparticles for DNA labeling,
Tren ds Anal . Chem . , 24, 341, 2005.
325. Stewart, M.P. and Buriak, J.M., Chemical and biological applications of porous silicon, Technol . Adv.
Mater. , 12, 859, 2000.
326. Sotiropoulou, S. et al., Novel carbon materials in biosensor systems, Biosens. Bioelectron. , 18, 211, 2003.
327. Ballarin, B. et al., Chemical sensors based on ultrathin-fi lm composite membranes—a new concept in
sensor design, Anal. Chem ., 64, 2647, 1992.
328. Cullis, A.G., Canham, L.T., and Calcott, P.D.J., The structural and luminescence properties of porous
silicon, J. Appl. Phys. , 82, 909, 1997.
329. Drott, J. et al., Pore morphology infl uence on catalytic turn-over for enzyme activated porous silicon
matrices, Thin Solid Films , 161, 330, 1998.
330. Gavalas, V.G., Chaniotakis, N.A., and Gibson, T., Improved operational stability of biosensors based
on enzyme-polyelectrolyte complex adsorbed into a porous carbon electrode, Biosens. Bioelectron. ,
13, 1205, 1998.
331. Gavalas, V.G. and Chaniotakis, N.A., Polyelectrolyte stabilized oxidase based biosensors: effect of
diethylaminoethyl-dextran on the stabilization of glucose and lactate oxidases into porous conductive
carbon, Anal. Chim. Acta , 404, 67, 2000a.
332. Gavalas, V.G. and Chaniotakis, N.A., Lactate biosensor based on the adsorption of polyelectrolyte sta-
bilized lactate oxidase into porous conductive carbon, Microchim. Acta , 136, 211, 2001.
333. Myler, S. et al., Ultra-thin-polysiloxane-fi lm-composite membranes for the optimisation of amperomet-
ric oxidase enzyme electrodes, Biosens. Bioelectron ., 17, 35, 2002.
334. Heilmann, A. et al., Nanoporous aluminum oxide as a novel support material for enzyme biosensors,
J. Nanosci. Nanotechnol. , 3, 375, 2003.
335. Darder, M. et al., Encapsulation of enzymes in alumina membranes of controlled pore size, Thin Solid
Films , 495, 321, 2006.
336. Rosilio, V. et al., Penetration of glucose oxidase into organized phospholipid monolayers spread at the
solution/air interface, Langmuir , 13, 4669, 1997.
337. Oh, B.K. et al., Fabrication of protein G LB fi lm for immunoglobulin G immobilization, Mater. Sci.
Eng. C , 24, 65, 2004.
338. Girard-Egrod, A.P., Morelis, R.M., and Coulet, P.R., Choline oxidase associated with behenic acid LB
fi lms. Reorganization of enzyme-lipid association under the conditions of activity detection, Langmuir ,
13, 6540, 1997.
339. Wan, K., Chovelon, J.M., and Jaffrezic-Renault, N., Enzyme-octadecylamine Langmuir-Blodgett
membranes for ENFET biosensors, Talanta , 52, 663, 2000.
340. Arisana, S. and Yamamoto, R., Quantitative characterization of enzymes adsorbed on to Langmuir-
Blodgett fi lms and the application to a urea sensor, Thin Solid Films , 210/211, 443, 1992.
341. Girard-Egrot, A.P., Godoy, S., and Blum, L.J., Enzyme association with lipidic Langmuir-Blodgett
fi lms: interests and applications in nanobioscience, Adv. Colloid Interface Sci. , 116, 205, 2005.
342. Yin, F., Shin, H.K., and Kwon, Y.S., A hydrogen peroxide biosensor based on Langmuir-Blodgett tech-
nique: direct electron transfer of hemoglobin in octadecylamine layer, Talanta , 67, 221, 2005.
343. Pal, P., Nandi, D., and Misra, T.N., Immobilization of alcohol dehydrogenase enzyme in a Langmuir-
Blodgett fi lm of stearic acid: its application as an ethanol sensor, Thin Solid Films , 239, 138, 1994.
344. Boozer, C., Yu, Q., Chen, S., Lee, C., Homola, J., Yee, S.S., and Jiang, S., Surface functionalization
for self-referencing surface plasmon resonance (SPR) biosensors by multi-step self-assembly, Sensor.
Actuator. B Chem. , 90, 22, 2003.
345. Jia, J.B. et al., A method to construct a third-generation horseradish peroxidase biosensor: self-assem-
bling gold nanoparticles to three-dimensional sol-gel network, Anal. Chem ., 74, 2217, 2002.
Search WWH ::




Custom Search