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Titlebook: Electrochemical Sensors in Immunological Analysis; T. T. Ngo Book 1987 Springer Science+Business Media New York 1987 Antigen.enzymes.labor

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Andrzej M. J. Skulimowski,Przemyslaw Pukocza radioactive label in radioimmunoassay. Most of the ELISA methods have relied on spectroscopic techniques for detection of reaction products occurring when an enzyme labelled antibody reacts with an antigen, as reviewed by several authors (Wisdom, 1976; Schuurs ., 1977). The development of electroc
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Wenchao Xu,Haibo Zhou,Xuemin (Sherman) Shenity in enzyme immunoassays (EIA). In the latter case, no universal Potentiometric sensor is available for EIA use but rather a distinct electrode type is matched with the class of enzyme label it is best suited to detect. The ammonia gas-sens ing electrode is one example and has the capability of de
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Risk, Technology, Health and Everyday Life,ied efforts to design increasingly sensitive and specific immunoelectrodes (Eggers et al., 1982; Guilbault, 1983; Boitieux et al., 1984; Keating and Rechnitz, 1984). The carbon dioxide gas-sensing probe, however, has played only a limited role in this research. Despite all the schemes designed for i
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https://doi.org/10.1007/978-3-030-43784-8h costs, health and environmental hazards limited variety of usable isotopes, short half-life of the radio-labeled antigens and difficult introduction of the radio-isotopes onto the substances to be determined, have stimulated the research for non-isotopic methods in immunological assays. 0f the man
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978-1-4899-1976-2Springer Science+Business Media New York 1987
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https://doi.org/10.1007/978-3-322-89675-9ther specific nor sensitive in detecting myocardial distress. Among the chemical tests, the measurement of CK-MB, the cardiac specific isoenzyme, appears to be the most specific and reliable procedure to obtain confirmative information for early diagnosis of acute myocardial infarction.
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