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Z724300

3D Biotek 3D Insert PS scaffold

for 96 well plates, 24 inserts/96 well plate

Synonyme(s) :

3D, 3D Cell Culture, 3D scaffolds, Scaffolds, cell scaffolds

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About This Item

Code UNSPSC :
41122107
Nomenclature NACRES :
NB.22

Matériaux

clear polystyrene
clear wells
polystyrene

Description

polystyrene (PS)

Stérilité

sterile

Qualité

24 inserts/96 well plate

Conditionnement

pack of 24 ea (24 inserts supplied in 96 well plate)

Fabricant/nom de marque

3D Biotek PS152096-24

Taille

96 wells

Couleur

clear

Dimension de pores

~200 μm (Fiber spacing)

Type de liaison

non-treated surface

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Description générale

3D Biotek offers cutting edge 3D cell culture products and technology at affordable prices. Now it is the right time to take advantage of our promotional offer and try our products. You will be amazed by how easy and convenient to use our 3D Insert cell culture scaffolds. Our 3D Insert cell culture scaffolds are:

  • Terminally sterilized by gamma irradiation and ready for use
  • Compatible with most of your current 2D assays
  • Easy for imaging. Cell growth can be monitored by light microscope, no need to purchase any additional sophisticated equipment.
This is the ideal product for your daily 3D cell culture applications. 3D Insert PS is made from polystyrene, the same material as that of tissue culture plate. The combination of transparency of the material and the porous structure design of 3D Insert PS allows researchers to monitor the cell growth under an inverted light microscope without the need of using sophisticated equipment.

  • 96 well compatible
  • Fiber Diameter: 150u
  • Pore Size: 200u
  • 24 Inserts/Pack

Informations légales

3D Insert is a trademark of 3D Biotek, LLC

Certificats d'analyse (COA)

Recherchez un Certificats d'analyse (COA) en saisissant le numéro de lot du produit. Les numéros de lot figurent sur l'étiquette du produit après les mots "Lot" ou "Batch".

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Retrouvez la documentation relative aux produits que vous avez récemment achetés dans la Bibliothèque de documents.

Consulter la Bibliothèque de documents

Carlos E Caicedo-Carvajal et al.
Journal of tissue engineering, 2011, 362326-362326 (2011-11-11)
Isolation and amplification of primary lymphoma cells in vitro setting is technically and biologically challenging task. To optimize culture environment and mimic in vivo conditions, lymphoma cell lines were used as a test case and were grown in 3-dimension (3D)

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3D cell culture overview. Learn about 2D vs 3D cell culture, advantages of 3D cell culture, and techniques available to develop 3D cell models

3D cell culture overview. Learn about 2D vs 3D cell culture, advantages of 3D cell culture, and techniques available to develop 3D cell models

3D cell culture overview. Learn about 2D vs 3D cell culture, advantages of 3D cell culture, and techniques available to develop 3D cell models

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