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Expi293F human cells are derived from the 293 cell line and are a core component of the Expi293 Expression System.
Cell Line | Expi293F |
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Media Recommendation | Expi293™ Expression Medium |
Form | Cryopreserved |
No. of Cells | 1 x 107 |
Culture Type | Suspension Cell Culture |
Species | Human |
Product Line | Expi293™ |
Cell Type | Kidney (Embryonic) |
Irradiated Gibco CF1 Mouse Embryonic Fibroblasts (MEFs) are feeder cells that are ideal for supporting healthy undifferentiated human and mouse embryonic stem cells (ESCs) and induced pluripotent stem cells (iPSCs) in culture. Manufactured by MTI-GlobalSt
Shipping Condition | Shipped on dry ice |
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Content And Storage | Cryopreserved mouse embryonic fibroblasts Store in liquid nitrogen. |
Donor Source | Pooled |
Form | Cryopreserved |
Species | Mouse |
Age | Embryonic |
Cell Type | Feeder Cells (Mouse Embryonic Fibroblast) |
Human Suspension Hepatocytes, Metabolism Qualified, Male, (4-8 x 106 cells)
Used to isolate and propagate recombinant baculoviral stocks and to produce recombinant proteins
Tissue | Cortex |
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Content And Storage | Store in liquid nitrogen, vapor-phase. |
Remarks | Mouse strain is C57BL/6 |
Product Type | Mouse Cortical Neuron |
Form | Cryopreserved |
Tested For | Sterility, Viability, Mycoplasma |
No. of Cells | 1 Million |
Culture Type | Mammalian Cell Culture |
Species | Mouse |
Age | Fetal |
Cell Type | Neural Cells |
Human Suspension Hepatocytes, Metabolism Qualified, Female, (4-8 x 106 cells)
ExpiCHO-S Cells are derived from a non-engineered sub-clone that was screened and isolated from CHO-S Chinese hamster ovary (CHO) cells. They are a core component of the ExpiCHO Expression System Kit.
Ideal for generating high-titer lentivirus using the ViraPower Lentiviral Expression System
ExpiCHO-S Cells are derived from a non-engineered subclone that has been screened and isolated from CHO-S Chinese hamster ovary (CHO) cells.
Cell Line | CHO-S, SFM Adapted |
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Form | Cryopreserved |
Species | Hamster |
Product Line | ExpiCHO™ |
Cells contain single stably integrated FRT site at transcriptionally active genomic locus
Cells contain a single stably integrated FRT site at a transcriptionally active genomic locus
For cortical stem cell expansion and differentiation into neurons, astrocytes and oligodendrocytes