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Items 11-20 of 21
Retinoic Acid is a metabolite of vitamin A that acts as a ligand for nuclear retinoic acid receptors. Retinoic acid has been used for the differentiation of embryonic stem cells into motor neurons and has also played an important role in protocols involving the differentiation of human pluripotent stem cells (PSCs) into functional pancreatic β cells.
Captivate Bio's RPMI 1640 Medium is is suitable for a variety of mammalian cells. This classical formulation is modified with L-glutamine and Phenol Red.
SB203580 is a selective ATP-competitive p38 MAPK inhibitor. Enhances the growth of mouse ES cells and enhances differentiation of cardiomyocytes from human ES cells.
SB431542 is a potent small molecule inhibitor of TGF-β signaling. Used for hESC neural differentiation and enhanced differentiation of PSCs into cardiomyocytes. Replaces SOX2 in reprogramming of fibroblasts into iPSCs.
SU5402 is a potent and selective inhibitor of VEGFR-2, FGFR-1, and PDGFRB.
Recombinant human TGF-beta 1 (TGF-β 1) protein containing 112 amino acids expressed in HEK293 cells for improved protein activity and proper post-translational modifications.
Thiazovivin is a novel ROCK inhibitor with IC50 of 0.5 μM in a cell-free assay, promotes hESC survival after single-cell dissociation. Improves the efficiency of fibroblast reprogramming and induction of iPSCs.
Thiazovivin (GMP-grade) is a novel ROCK inhibitor that promotes hESC survival after single-cell dissociation. Improves the efficiency of fibroblast reprogramming and induction of iPSCs. This small molecule is produced under GMP guidelines making it ideal for cell therapy research.
An integrated stress response (ISR) inhibitor that promotes survival of pluripotent stem cells in culture when used in combination with Chroman 1 and Emricasan small molecules in the CEPT cocktail1.
Triiodothyronine Salt is an analog of thyroid hormone that selectively binds to and activates β1 thyroid hormone receptor (TRβ1). Regulates functions such as growth, metabolic activity, and hPSC differentiation. Stimulates respiratory activity at the mitochondrial level.