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(C) 2002, SNU Biointelligence Lab, http://bi.snu.ac.kr/1 Immunocomputing for Bioarrays Alexander O. Tarakanov, et al. Proceedings of ICARIS 2002, 32-40 MEC Seminar Su Dong Kim 2003. 4. 17.
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(C) 2002, SNU Biointelligence Lab, http://bi.snu.ac.kr/2 Introduction Biosensor : antibodies, enzymes, etc. Biochips vs. Computer microchips Miniaturization Integration Parallel processing Proteomics technologies 2-D polyacrylamide gel electrophoresis with mass spectrometry Surface-enhanced laser desorption and ionization Immune diagnostic arrays : IgG with pG Immunocomputing approach : Pattern Recognition
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(C) 2002, SNU Biointelligence Lab, http://bi.snu.ac.kr/3 Bioarrays General Approach pG-IgG pG binds to Fc-fragment of IgG pG-HRP HRP: horseradish peroxidase pG-CP CP : carbon particles Materials and Methods Nitrocellulose membranes Human IgG (Fractions II, III) Recombinant pG Preparation of Bioarrays Spot : 5 μl solution of IgG Solid-phase immunoassay Experimental results (see left)
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(C) 2002, SNU Biointelligence Lab, http://bi.snu.ac.kr/4 Software (1) : Immunochip Emulator Immunochip Emulator MS Windows 2000 MS Visual C++ 6.0 OpenGL graphic tools
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(C) 2002, SNU Biointelligence Lab, http://bi.snu.ac.kr/5 Software (2) : Mathematical Bases
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(C) 2002, SNU Biointelligence Lab, http://bi.snu.ac.kr/6 Software (3) : Recognition Algorithms Processing of “Paratope”
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(C) 2002, SNU Biointelligence Lab, http://bi.snu.ac.kr/7 Software (4) : Recognition Results Example of Training the Emulator Detection of All Spots by Training Example of Undetected Spots
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(C) 2002, SNU Biointelligence Lab, http://bi.snu.ac.kr/8 Discussion Artificial Immune System Direct immunoassay method Immunocomputing method Biochip BCS (Biochip Controlling System) Precision motorized two coordinate stage Auto-manual or automated dispense module Precision optical electronic detection module Biocomputer An immunochip-based controller Controlling of biomolecules in the micro- wells of the biochip
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(C) 2002, SNU Biointelligence Lab, http://bi.snu.ac.kr/9 Conclusion Immunocomputing approach to immunoassay-based diagnostic arrays It recognizes more than 96% spots as “non-self” codes It works almost 10 times faster than traditional “MASK” method Another immunological application had been also shown advantageous
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