Overview
Wide variety of different sensing applications from small drug molecules to large proteins. Ligand/receptor binding study is fundamental for understanding molecular recognition in biology. The whole immune system is based upon it, as well as the blood coagulation cascade, signalling transduction between and within cells.
Applications notes
Related publications
- Grieshaber D, Reimhult E, Voros J, “Enzymatic Biosensors towards a Multiplexed Electronic Detection System for Early Cancer Diagnostics” Nano/Micro Engineered and Molecular Systems, IEEE-NEMS 1: 402 – 405, Jan. 2007
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- Hungarian-Korean seminar: Integrated circuits and devices, edited by E. Czoboly, Budapest, 301-310, 1997
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- Ramsden J J, “A dosimeter for oligopeptide hormones”, Sensors and Actuators B 30, 107 – 110, 1996
- Bier F F, Stöcklin W F M, E. Ehrentreich-Förster and F.W. Scheller, “Immunosensing of 2,4-dichlorophenoxy acetic acid using biochemical amplification. Influence of organic solvent on binding observed by evanescent field technology”, Proc. SPIE 2504, 153 – 158, 1995
- Ramsden J J, Schubert Wright C, “The interaction between wheat germ agglutinin and membrane incorporated glycophorin A. An optical binding study”, Glycoconjugate Journal 12, 113 – 121, 1995
- Bernard A, Bosshard H R, “Real-time monitoring of anti-gen-antibody recognition on a metal oxide surface by an optical grating coupler sensor”, Eur. J. Biochem. 230, 416 – 423, 1995
- Bier F F, Schmid R D, “Real time analysis of competitive binding using grating coupler immunosensors for pesticide detection”, Biosensors and Bioelectronics 9, 125 – 130, 1994
- Clerc D, Lukosz W, “Integrated optical output grating coupler as bio chemical sensor”, Sensors and Actuators B, 18 – 19, 581 – 586, 1994
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- Jockers R, Bier FF, Schmid R D, “Specific binding of photosynthetic reaction centres to herbicide-modified grating couplers”, Analytica Chimica Acta 280, 53 – 59, 1993
- Polzius R, Bier F F, Bilitewski U, Jäger V, Schmid R D, “On-line monitoring of monoclonal antibodies in animal cell culture using a grating coupler”, Biotechnology and Bioengineering 42, 1287 – 1292, 1993
- Panayotou G, Waterfield M D, End P, “Riding the evanescent wave”, Current Biology 3, 913 – 915, 1993
- Bier F F, Stöcklein W, Schmid RD, “Direct observation of antiatrazine antibody binding using grating couplers”, GBF-Monographs Vol. 17; Eds. R.D. Schmid and F. Scheller, VCH Weinheim, 205, 1992
- Nellen Ph M, Lukosz W, “Model experiments with integrated optical input grating couplers as direct immunosensors”, Biosensors & Bioelectronics 6, 517 – 525, 1991
- Lukosz W, Clerc D, Ph M Nellen, Stamm Ch, Weiss P, “Output grating couplers on planar optical waveguides as direct immunosensors”, Biosensors & Bioelectronics 6, 227 – 232, 1991
- Spohn P K, Prenosil J E., Tiefenthaler K, “A novel instrumental set-up for in-situ detection of protein ad-sorption with Grating Coupler Sensors (GCS)”, Analytical Letters 23, 411 – 424, 1990
- Nellen P M, Tiefenthaler K, Lukosz W, “Integrated Optical Input Grating Couplers as Biochemical Sensors”, Sensors and Actuators 15, 285, 1988
- Spohn P K, Seifert M, “Interaction of aqueous solutions with Grating Couplers used as Integrated Optical Sensors and their pH behaviour”, Sensors and Actuators 15, 309, 1988
- Seifert M, Tiefenthaler K, Heuberger K, Lukosz W, Mosbach K , “An Integrated Optical Biosensor (IOBS)”, Analytical Letters 19 (1+2), 205 – 216, 1986