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By optimizing the Z-axis according to the liquid height to be
measured in the wells, the detection limit can be considerably improved in SmallVolume™ microplates using classical microplate readers, and a detection limit comparable to that of the 1536 well microplate can be achieved
The flat polystyrene film bottom with a diameter of 75 µm +/- 10 µm is characterized by a low level of autofluorescence and is ideally suited for cell-based test systems
Total volume: 28 µl
Working volume: 4 µl - 25 µl
The polystyrene surface is more hydrophobic than the surface of a high binding microplate, and therefore tends to be more suitable for
non-polar proteins and peptides
By optimizing the Z-axis according to the liquid height to be
measured in the wells, the detection limit can be considerably improved in SmallVolume™ microplates using classical microplate readers, and a detection limit comparable to that of the 1536 well microplate can be achieved
The flat polystyrene film bottom with a diameter of 75 µm +/- 10 µm is characterized by a low level of autofluorescence and is ideally suited for cell-based test systems
Total volume: 28 µl
Working volume: 4 µl - 25 µl
The polystyrene surface is more hydrophobic than the surface of a high binding microplate, and therefore tends to be more suitable for
non-polar proteins and peptides