Clear Bottom Microplates Products & Reviews

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Corning 1536-well Spheroid Microplates

Corning Life Sciences

With their novel and proprietary design, these microplates are ideal for generating and analyzing 3D multicellular spheroids in the same microplate. The Ultra-Low Attachment (ULA) surface enables uniform and reproducible 3D multicellular spheroid formation. The black opaque microplate body shields each optically clear, round bottom well from well-to-well cross-talk.

5.0/5.0
|1 Review

1536 SQ Well LoBase

1536 SQ well LoBase plates are available in Black, White and Clear with solid-bottoms, and 100 micron or 188-micron thick film bottoms. 1536 SQ LB plates are available Tissue-Culture Treated for assays using cells with a 2.16 mm2 bottom surface area.  1536 SQ LB- solid bottom plates have a very consistent bottom thickness making them ideal for compound storage and retrieval using pin-tools or Acoustics.  The film-bottom config…

5.0/5.0
|1 Review

Corning® 96-well Black Special Optics w/Clear Flat Bottom Polystyrene Not Treated Microplate, 25 per Bag, No Lid, Nonsterile

Corning Life Sciences

Corning® Special Optics 96-well Microplates have black walls with ultra thin, clear bottoms for sharp, clear images and minimal background in fluorescent assays Designed to reduce well-to-well crosstalk during fluorescent assays Can be used for both top and bottom reading instrument Not treated (or medium binding) polystyrene surface is hydrophobic in nature and binds biomolecules through passive interactions Is suitable…

3.7/5.0
|1 Review

Corning® 96-well Black/Clear Round Bottom Ultra-Low Attachment Surface Spheroid Microplate, Bulk Packed, with Lid, Sterile, 10/Bag

Corning Life Sciences

Ultra-low attachment surface with covalently bonded hydrogel that minimizes cell attachment, protein absorption, enzyme activation and cellular activation The surface is noncytotoxic, biologically inert and nondegradable Round bottoms with 300 µL total volume Recommended working volumes of 0.075 to 0.30 mL Sterilized by gamma radiation Novel well geometry aids formation of spheroids in center of well Optically clear ro…

3.7/5.0
|1 Review