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Captivate Bio's Leibovitz's L-15 Medium supports the growth of HEp-2 monkey kidney and primary explants of embryonic and adult human tissue, and a variety of other cells. This formulation is without L-glutamine.
RESiVATE™ HEP Medium from Captivate Bio is a basal hepatocyte culture medium designed to support the growth, maintenance, and metabolic activity of primary hepatocytes and hepatic cell models. Super flexible, customization available. Does not contain animal or human components.
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 DMEM, High Glucose is a widely used basal medium for supporting the growth of many different mammalian cells. This formulation contains 4500 mg/L glucose and no L-glutamine.
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Captivate Bio's DMEM, High Glucose is a widely used basal medium for supporting the growth of many different mammalian cells. This formulation contains 4500 mg/L glucose, no L-glutamine, and no Phenol Red.
Captivate Bio's DMEM/F12 basal medium is typically used as a classical basal formulation in low-serum and serum-free media formulations, when culturing hPSCs and 3D organoids. This formulation is with L-glutamine and Phenol Red.
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.
DMEM, High Glucose is a widely used basal medium for supporting the growth of many different mammalian cells. This formulations is modified with glucose and sodium bicarbonate and without L-glutamine and sodium pyruvate. This product is manufactured by Sartorius and available in case packs only.
Captivate Bio's MCDB 131 medium is commonly used in definitive endoderm differentiation of human pluripotent stem cells (hPSCs) as well as a basal medium for MSC differentiation.