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Medium 199 is widely used in virology and vaccine production. This formulation is modified with Earle's salts and without L-glutamine or HEPES.
Disposable Serological Pipets are made of highly transparent polystyrene and packaged individually in clear plastic wraps. These pipets are available in 1 mL through 50 mL sizes with negative graduations.
IWP 2 is a potent inhibitor of Wnt processing and secretion (IC50 = 27nM). IWP-2 has also been used in protocols to reprogram somatic cells to chemically-induced PSCs.
Captivate Bio's DMEM, High Glucose is a widely used basal medium for supporting the growth of many different mammalian cells. This formulation contains 4 mM L-glutamine and 4500 mg/L glucose.
SU5402 is a potent and selective inhibitor of VEGFR-2, FGFR-1, and PDGFRB.
Clinical grade PLTGold® Human Platelet Lysate is a xeno-free, heparin-free supplement for use in cGMP clinical applications. GMP products are further certified to be endotoxin free and is great for generating cells in large scale bioreactors. Master File available with the FDA available.
Modified MCDB 153 medium is specific for human epidermal keratinocyte culture, clonal growth of chicken embryo fibroblasts or Chinese Hamster Ovary (CHO) cells using low levels of Fetal Bovine Serum. This product is made-to-order by Sartorius and available in case packs only.
Captivate Bio's DMEM/F12 without L-glutamine is a widely used basal medium for supporting the growth of many different mammalian cells. Cells successfully cultured include glial cells, fibroblasts, and human endothelial cells. This formulation contains no L-glutamine.
Captivate Bio's newly optimized CET Cocktail Kits are designed to enhance cell survival and promote growth of genetically stable hPSCs. Kits are configured to address specific workflows. Three versions include: CET Spark™ for 1L, CET Ignite™ for 5L, and CET Titan™ for 20L or more.
Dorsomorphin is a small molecule widely used in cell culture as a selective inhibitor of BMP signaling. Dorsomorphin is particularly useful in early-stage stem cell differentiation studies to direct cells toward specific lineages, such as cardiac or neural.