SF016
ESGRO-2i Medium, 100ml
to enhance viability of mouse embryonic stem and iPS cells
Synonym(s):
2i Naive ES/IPS Media
About This Item
Recommended Products
Quality Level
form
liquid
technique(s)
cell culture | stem cell: suitable
input
sample type: mouse embryonic stem cell(s)
sample type induced pluripotent stem cell(s)
General description
ESGRO-2i medium is a defined, LIF containing medium provided with a selective GSK3β and Mek 1/2 inhibitors to enhance viability of mouse embryonic stem (ES) and induced pluripotent stem (iPS) cells and increased maintenance of pluripotency in the absence of serum and feeder cells. This medium is intended for cell expansion and growth at clonal density in serum-free conditions and supports a naive/ground pluripotent state.
Application
Important passaging information
Use of one of the below listed cell dissociation solutions is imperative while passaging ES cells. Standard trypsin protocols used to passage ES cells grown in serum containing media typically result in over trypsinization causing the cells to lift off the plates and form abnormal ball-like structures.
Recommended products include:
ESGRO Complete™ Accutase (Cat # SF006)
ESGRO Complete Trypsin Solution (proprietary) (Cat # SF007)
ESGRO Complete Enzyme-Free Dissociation Solution (proprietary) (Cat # SF009)
Components
2. GSK3β Inhibitor Supplement: (Catalogue No. SF012-050) One (1) 50 μL vial containing selective GSK3β inhibitor supplement.
3. Mek1/2 Inhibitor Supplement: (Catalogue No. CS204465) One (1) 10 μL vial containing selective Mek 1/2 inhibitor supplement.
Storage and Stability
• After basal medium and inhibitor supplements are combined, store the complete ESGRO-2i medium in the dark at 4°C for up to 10 days. Do not refreeze.
Legal Information
Disclaimer
Storage Class Code
10 - Combustible liquids
Certificates of Analysis (COA)
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Articles
Naive pluripotent stem cells are located within the epiblast of mature blastocysts. These primitive “ground-state” cells may be cultured in vitro using specialized media and small molecule inhibitors.
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