Introduction:
Corning provides a series of microplate products, including different hole designs and sizes, different polymer materials and colors, and different surface treatments.
Corning's microplate size meets industry standards, ensuring compatibility and automated operation with all microplate supporting instruments. The microplate has an A-1 corner notch design. The A-1 corner notch design makes it possible to quickly determine the direction of the plate when setting automatic operations, thereby reducing the occurrence of automatic operation errors and avoiding lowering efficiency.
Corning's polystyrene microplates have a variety of surface treatment methods. These surfaces can support the binding and covalent fixation of cells, proteins, nucleic acids and other biological macromolecules.
Corning can help design and produce barcode labels according to customers' special requirements.
Detailed introduction:
384-porous transparent polystyrene microporous plate
1. standard hole volume 112μL; recommended working volume 20 to 80μL
2. cell culture plates are gamma-ray sterilized and heat-free certified
3.384 Hole General Optical Properties NBS™ Plate Made of Advanced Polymer with High Definition, Improved Chemical Tolerance
4. can fit the lid as needed
Ordering information of 384-hole transparent polystyrene microporous plate
Catalogue number |
Plate type |
Hole bottom |
Surface treatment |
Sterile |
PCS/package |
PCS/box |
3640 |
Standard board |
Flat |
NBS™ |
No |
25 |
100 |
3662 |
Transparent plate with cover |
Flat |
Polymeric D- lysine |
Yes * |
20 |
100 |
3680 |
Standard plate with cover |
Flat |
Not processed |
Yes |
20 |
100 |
3700 |
Standard board |
Flat |
Height combination |
No |
25 |
100 |
3701 |
Transparent plate with cover |
Flat |
TC- processing |
Yes |
20 |
100 |
3702 |
Standard board |
Flat |
Not processed |
No |
25 |
100 |
3703 |
Universal Optical Plate (Standard) |
Flat |
NBS™ |
No |
25 |
100 |
:: Sterile production
:: NT= untreated, PDLNT= poly- D- lysine
Selection guidelines for 384-hole inspection microplate
Corning provides a series of 384 microporous plates for high throughput detection and storage. Classification by use may be as follows:
a.384 hole detection microporous plate
- Routine detection - non-processing, NBS™, highly bonded and UV microporous plates
- Cytological examination - tissue culture treatment, Corning®CellBIND® surface, poly - D- lysine coated polystyrene microporous plates
b.384 porous polypropylene storage microporous plate
this selection guide does not include a 384 pore microporous plate suitable for PCR and genomics, please refer to the Corning genomics product selection guide.
Corning provide a variety of detection microporous plates, divided into the following four:
1.384 Porous polystyrene microporous plates
2.384 Porous whole black or white polystyrene microporous plates
3.384 Microporous Styrene with black or white background
4.384 pore UV microporous plate
For low capacity detection, Corning 384 hole low capacity polystyrene board has full round bottom and black bottom penetration specification.
Type of 384-well plate |
Bottom hole shape |
Total volume per hole |
Recommended volume of work (μL) |
Standard 384 holes |
Flat |
112 |
20-80 |
Light ,384, panchromatic |
Round bottom |
35 |
5-20 |
shallow hole bottom penetration 384 holes |
Flat |
50 |
5-40 |
Corning 384 microporous plates include tissue culture treatments, Corning®CellBIND® surfaces and poly- D- lysine coated microporous plates. The surface treatment of the microporous plate treated by tissue culture, like Corning other cell culture utensils, can improve the adsorption efficiency of the cells which are not easy to adsorb. A new Corning®CellBIND® surface treatment can improve homogeneity and make cell adsorption more uniform.
Shape and size of 384-hole microporous plate
The size (length × width × height) of Corning 384 porous polystyrene microporous plate is 127.76×85.48 and 14.22 mm, which meets the industrial standard recommendation
Unique hole design provides better performance
The raised hole bottom has higher sensitivity
The raised edges reduce capillary action and contamination
Better Z factors at the bottom reduce air retention
Cone hole with shallow cone to improve efficiency
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