Offers a more streamlined and efficient approach to assays in life science research and diagnostics, eliminating the need for multiple washing steps required for separation of target molecules (and associated risk of losing target molecules during the washing), thus reducing the time, cost, and complexity of these processes. In addition, due to the doughnut shape of the magnetic inserts, sensitive and specific optical detection of target molecules through a variety of methods such as luminescence or chemiluminescence can be carried out in-situ.
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This project involves providing support to a group of academic researchers and entrepreneurs who are seeking to develop and commercialise a novel microplate product.
Currently the plates can be manufactured cost effectively and provide the following benefits:
Reduced assay time:
MagnaPlate can significantly reduce assay time as the magnetic particles allow for faster and more efficient separation and washing steps.
Low background signal:
MagnaPlate offers a low background signal due to the reduced non-specific binding of the target analyte, resulting in a higher signal-to-noise ratio.
Flexibility:
MagnaPlate works with a variety of detection methods, including luminescence, fluorescence, and colorimetry, which allows for greater flexibility in assay development.
Compatibility:
MagnaPlate uses a standard size microtiter plate and is compatible with all imaging solutions that accept this format.
MagnaPlateTM technology has been demonstrated in a number of use cases including:
1.Antibody-free typing of blood antigens
2.Detection and measurement of leukotrienes in biological samples
3.Detection and measurement of insulin in biological samples