Quality Level
material
polystyrene housing, translucent PET membrane
sterility
γ-irradiated, sterile
feature
22x106 pores/cm2
packaging
pack of 48 ea (individually blister packaged)
manufacturer/tradename
Millicell®
parameter
max. temp. at 37 °C
technique(s)
cell attachment: suitable, cell differentiation: suitable, permeability assay: suitable
H
15.5 mm
diam.
24 mm
insert maximum volume
4 mL
insert working volume
2 mL
membrane thickness
9-16 μm
size
6 wells
surface area
4.5 cm2
color
translucent membrane
pore size
1.0 μm
binding type
Tissue Culture (TC)-treated surface
General description
Millicell® Cell Culture inserts with Polyethylene Terephthalate (PET) membrane are ideal for the growth and differentiation of various cell types. This individually sterile-packaged insert has an high pore density 1.0 μm membrane pore size and fits in most 6-well tissue culture plates.
Application
Barrier Assays
Cell Proliferation
Cell Surface Receptors
Co-Culture Epithelial Cell Growth
Feeder Layers
Fluorescent Detection /Immunohistochemistry
In Vitro Fertilization
In Vitro Toxicology Microbial Attachment
Polarized Protein Secretions
Polarized Uptake
Transport/Permeability
Cell Proliferation
Cell Surface Receptors
Co-Culture Epithelial Cell Growth
Feeder Layers
Fluorescent Detection /Immunohistochemistry
In Vitro Fertilization
In Vitro Toxicology Microbial Attachment
Polarized Protein Secretions
Polarized Uptake
Transport/Permeability
Features and Benefits
Optically translucent TC-treated PET membrane
High pore density (22 million pores/cm2)
Compatible with most 6-well plates
Apical assist rim to prevent membrane puncture or disruption of cells
Easily access the basolateral side between the flanges
High pore density (22 million pores/cm2)
Compatible with most 6-well plates
Apical assist rim to prevent membrane puncture or disruption of cells
Easily access the basolateral side between the flanges
Legal Information
Millicell is a registered trademark of Merck KGaA, Darmstadt, Germany
商品
How to set up barrier formation and permeability assays using cell culture inserts and TEER measurements.