티스토리 뷰

BIOFLOAT™ 6-well plate

Cat.# F202302 / Size: 1 plate/pack

 
 

Ready-to-use for Suspension & 3D cell culture

The BIOFLOAT™ 6-well plate provides a highly defined, fully inert, and cell-repelling surface.

Product Characteristcs

Plate color: clear

Well bottom: Flat

Well volume: 5.75 mL

Sterile: yes

Made in Germany

* RESEARCH USE ONLY. NOT INTENDED FOR DIAGNOSTIC OR THERAPEUTIC USE.

Key Features

 
 

The BIOFLOAT™ 6-well plate outperforms existing products by its anti-adhesive properties:

1. Stability in long term cultivation of 3D cell models: Highly viable and functional 3D cell models can be cultivated for several months in BIOFLOAT plates.

2. Scratch resistant: BIOFLOAT surfaces are highly resistant to physical and chemical stress. No risk of damaging the coating if scratching the surface with a pipette tip.

3. Repellent to protein and hydrophobic compounds: Proteins and sticky compounds are not interacting with BIOFLOAT surfaces, allowing a better control of the concentration of these molecules in your assay.

4. Cell repellent: Even the stickiest cells, like macrophages, cannot adhere to BIOFLOAT surfaces enabling their cultivation in suspension.

5. Optimized for organoids: Small and big organoids can be successfully generated and cultivated on BIOFLOAT surfaces.

Characteristics

 
Plate color
Clear
Well bottom
Flat
Well bottom color
Clear
Well volume
5.75 ml
Recommended working volume
4 ml
Dimensions
85.20 mm (width) x 22.4 mm (height) x 127.80 mm (length)
Array
3x2
Material
Polystyrene (PS)
Temperature range
– 20 °C to + 50 °C
Sterile
Yes
Quantity
1 per pack
 

관련 상품 

BIOFLOAT™ FLEX coating solution [F202005]

BIOFLOAT™ 96-well plates (4 plates per pack) [F202003]

BIOFLOAT™ 384-well plates (4 plates per pack) [F224384]

코아사이언스 coresciences facellitate germany 독일 Korea 한국 대리점 세포배양 polymer solutions polymer coatings 3D cell culture drug discovery toxicology stem cell research 줄기세포 연구 Biofloat cell culture matrix anchor shield biotag rapid spheroid formation organoid culture spheroid culture mimic extracellular environments for stem cells screen compounds in 3D cell culture systems