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Corning® NBS™ 384 Well Microplates, Flat Bottom, Non-Sterile, Lid: No, CLS3653, Corning, Inc. (CAT#: STEM-L-3851-Y)

Highlights

• White walled plates enhance luminescent signals and have low background luminescence and fluorescence
• Nonbinding (NBS) surface is a Corning proprietary treatment technology used on polystyrene microplates to create a nonionic hydrophilic surface (polyethylene oxide-like) that minimizes molecular interactions
• Ideal for reducing protein and nucleic acid binding at low concentrations, and increasing assay signal to noise

Cat Number: STEM-L-3851-Y

Application: The recommended working volume of up to 20 μL to 80 μL for 384 well plates.

Model: CLS3653

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Description

Non-Binding surface (NBS™) multiwell plates have a modified polymer surface (PS) which results in a non-ionic hydrophilic surface (polyethylene oxide-like), thereby minimizing bio-interaction and enhancing the signal-to-noise ratio. Results have demonstrated NBS's ability to significantly reduce protein and nucleic acid binding to polymers (<2 ng/cm2; over 90% reduction of protein binding compare to PS & PP surface), maintain enzyme activity, and inhibit adhesion of a number of cell lines.

Specification

Material: flat bottom
flat bottom wells clear wells
polystyrene
square clear wells
white polystyrene
Sterility: non-sterile
Feature: lid: no
surface treatment Non-binding Surface
Packaging: case of 100
pack of 25
Mfr.: Corning, 3653
Maximum volume: 112 μL
Size: 384 wells
Working volume: 80 μL
Color: clear
Matrix active group: NBS™ surface surface treatment

Features

• White walled plates enhance luminescent signals and have low background luminescence and fluorescence
• Nonbinding (NBS) surface is a Corning proprietary treatment technology used on polystyrene microplates to create a nonionic hydrophilic surface (polyethylene oxide-like) that minimizes molecular interactions
• Ideal for reducing protein and nucleic acid binding at low concentrations, and increasing assay signal to noise
• ideally suited for luminescent assays using either top or bottom detection plate readers
• Recommended working volume of up to 20 to 80 μL
• Conforms to standard microplate footprint and dimensions
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