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ViewPlate-384 PDL Coated, Black, Optically Clear Bottom, Tissue Culture Treated, Sterile, 384-Well with Lid, Case of 160

384-well tissue culture treated (TC-treated), poly-D-lysine (PDL) coated ViewPlate microplate with clear bottom and black well walls for high content analysis and other cell-based applications.

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Product Number Unit Size List Price Your Price Quantity
6007710 Case of 40 810.00 USD
6007718 Case of 160 3023.00 USD

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Overview

Our ViewPlate microplates are engineered for bottom reading systems and high content imaging. This high quality microplate can be utilized in your cell based assay for superior results.

Poly-lysine is a synthetic positively-charged polymer, existing as two enantiomers: Poly-D-lysine (PDL) and Poly-L-lysine (PLL). Adherence of certain cell types to poly-lysine-coated surfaces is based on the electrostatic interaction of the poly-D-lysine polycation with the negative charges of the cell membrane. Use of poly-lysine coatings on plate surfaces can help mediate the negative charges of the cell membrane and the negative charge of the surface. Both PDL and PLL are commonly used however PDL is not degraded by cellular proteases and is therefore often the preferred choice. As Poly-lysine is a synthetic protein, it does not influence the signaling pathways of the cells and is completely free of any animal contaminants. Almost all cell types will adhere to Poly-lysine coated plate bottoms.

Leveraging years of assay and instrument experience in plate detection, PerkinElmer designs better microplates for better performance that guarantees better results for all PerkinElmer applications.

Specifications

Assay Technology steadylite,britelite,neolite,ATPlite
Automation Compatible Yes
Coating Treatment PDL
Color Black/Clear Bottom
Detection Method Fluorescence, Luminescence
Material Polystyrene
Product Brand Name ViewPlate
Shipping Condition Ambient
Unit Size Case of 160
Wells Number 96 well plate

Resources, Events & More

Resource Type File Name File Format
Poster Running an Aequorin Cell-Based Luminescent Assay on the FLIPR TETRA PDF 270 KB