• ;Stripwell™ Low Volume Microplates are designed with one-half the well area of a “regular” 8-well strip, providing a much greater surface to volume ratio.
• Low volume wells have recommended working volume of 50 to 125µL
• Designed for in vitro diagnostic assays
• Flat bottom strips are designed to easily break apart and are pre-assembled in an "egg-crate" style strip holder that allows each individual well to be positioned back into the plate once broken
• Black wells have low background fluorescence, minimal light scatter and reduced crosstalk
•Not treated (or medium binding) polystyrene surface is hydrophobic in nature and binds biomolecules through passive interactions
• Is suitable primarily for the immobilization of large molecules, such as antibodies, that have large hydrophobic regions that can interact with the surface
• Untreated microplates have a binding capacity of approximately 100 to 200ng IgG/cm²
• 1x8 Strips fit only one way into the strip holder, eliminating the chance of misorientation
原厂资料:
• ;Stripwell™ Low Volume Microplates are designed with one-half the well area of a “regular” 8-well strip, providing a much greater surface to volume ratio.
• Low volume wells have recommended working volume of 50 to 125µL
• Designed for in vitro diagnostic assays
• Flat bottom strips are designed to easily break apart and are pre-assembled in an "egg-crate" style strip holder that allows each individual well to be positioned back into the plate once broken
• Black wells have low background fluorescence, minimal light scatter and reduced crosstalk
•Not treated (or medium binding) polystyrene surface is hydrophobic in nature and binds biomolecules through passive interactions
• Is suitable primarily for the immobilization of large molecules, such as antibodies, that have large hydrophobic regions that can interact with the surface
• Untreated microplates have a binding capacity of approximately 100 to 200ng IgG/cm²
• 1x8 Strips fit only one way into the strip holder, eliminating the chance of misorientation