IEEE Transactions on Applied Superconductivity · 2005 · 30 citations · 12 references
Immunocytochemical TechniqueEngineeringImmunologyMagnetic ResonanceBiomedical EngineeringMagnetic SensorMagnetismBioanalysisImmunochemistryAnalytical ChemistryBiophysicsAllergyHigh SensitivityMagnetic MarkersImmunoengineeringT_rm CMagnetic MeasurementBioinstrumentationMagnetic ImmunoassaysBioelectronicsElectrophysiologyMedicine
Magnetic immunoassays utilizing magnetic markers and a high-T/sub c/ SQUID have been performed. We first showed a design of the SQUID for the sensitive detection of the magnetic signal from the marker, where the spatial distribution of the signal field was taken into account. Using the design, we can obtain the relationship between the magnetization of the maker and the signal flux detected with the SQUID. This relationship is important for quantitative evaluation of the immunoassay. Next, we detected biological materials called IgE with a remanence measurement method, where a marker made of Fe/sub 3/O/sub 4/ particles with diameter of 25 nm was used. We showed that 2 atto-mol of IgE can be detected, which shows high sensitivity of the present method.
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Ultrasensitive magnetic biosensor for homogeneous immunoassay
Yann R. Chemla, H. L. Grossman, Y. S. Poon et al. · Proceedings of the National Academy of Sciences · 2000 · 419 citations · Full text
SQUID based remanence measurements for immunoassays
R. Kötitz, H. Matz, Lutz Trahms et al. · IEEE Transactions on Applied Superconductivity · 1997 · 145 citations
Seung‐Kyun Lee, Whittier Myers, H. L. Grossman et al. · Applied Physics Letters · 2002 · 93 citations · Full text
Engineering, Magnetic Gradiometer, Squid-based Biosensor +20