9 Results for: "ECM"
PureCoat™ ECM Mimetic Cultureware Plates, Corning
Supplier: Corning
Corning ECM mimetic surfaces and substrates contain biologically active, synthetic, animal-free peptides that have been rationally designed to mimic the cell attachment motifs of native ECM proteins. The peptides enable optimal cell binding and signaling in a broad range of serum-free, xeno-free, and animal-free media formulations, supporting the propagation and differentiation of a range of stem, progenitor and primary cell types.
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Corning® PureCoat™ ECM Mimetic Flasks, Collagen I Peptide, Corning
Supplier: Corning
Corning® PureCoat™ ECM Mimetic Cultureware is coated with biologically active synthetic animal-free peptides that are covalently linked to a proprietary surface to provide a highly consistent alternative to complex extracellular peptides.
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Corning® PureCoat™ ECM Mimetic Flasks, Fibronectin Peptide, Corning
Supplier: Corning
Corning® PureCoat™ ECM Mimetic Flasks, Fibronectin Peptide, Corning® PureCoat™ ECM Mimetic Cultureware is coated with biologically active synthetic animal-free peptides that are covalently linked to a proprietary surface to provide a highly consistent alternative to complex extracellular peptides.
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Corning® BioCoat® Fibronectin-coated Culture Slides, Corning
Supplier: Corning
Human Fibronectin (HFN) is a widely distributed glycoprotein that is used as a substrate to promote attachment of cells through its central-binding domain RGD sequence. HFN is a product of most mesenchymal and epithelial cells and is present in both the ECM and plasma. The principal function of HFN appears to be in cellular migration during wound healing and development, regulation of cell growth and differentiation, and haemostasis/thrombosis.
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Corning® BioCoat® Fibronectin-Coated Plates, Corning
Supplier: Corning
Human Fibronectin (HFN) is a widely distributed glycoprotein that is used as a substrate to promote attachment of cells through its central-binding domain RGD sequence. HFN is a product of most mesenchymal and epithelial cells and is present in both the ECM and plasma. The principal function of HFN appears to be in cellular migration during wound healing and development, regulation of cell growth and differentiation, and haemostasis/thrombosis.
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Corning® BioCoat® Fibronectin-coated Culture Dishes, Corning
Supplier: Corning
Human Fibronectin (HFN) is a widely distributed glycoprotein that is used as a substrate to promote attachment of cells through its central-binding domain RGD sequence. HFN is a product of most mesenchymal and epithelial cells and is present in both the ECM and plasma. The principal function of HFN appears to be in cellular migration during wound healing and development, regulation of cell growth and differentiation, and haemostasis/thrombosis.
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Corning® BioCoat® Fibronectin-coated Flasks, Corning
Supplier: Corning
Human Fibronectin (HFN) is a widely distributed glycoprotein that is used as a substrate to promote attachment of cells through its central-binding domain RGD sequence. HFN is a product of most mesenchymal and epithelial cells and is present in both the ECM and plasma. The principal function of HFN appears to be in cellular migration during wound healing and development, regulation of cell growth and differentiation, and haemostasis/thrombosis
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Corning® BioCoat® Poly-D-Lysine/Laminin Plates, Corning
Supplier: Corning
For some applications, the use of a combination of ECM proteins, such as Laminin (LM) and Fibronectin (HFN) or LM and attachment factors such as Poly-D-Lysine (PDL) or Poly-L-Orinthine (PLO) has been shown superior to the use of either alone. Corning BioCoat PDL/LM and PLO/LM Cultureware is suitable for culturing many different types of Peripheral Nervous System (PNS) and Central Nervous System (CNS) networks and is useful for promoting neural cell attachment and differentiation. Corning BioCoat LM/HFN Cultureware provides an in vitro environment that promotes cell attachment and extensive process formation.
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Corning® BioCoat™ 6-Well Plates, Corning® Matrigel® Matrix, Corning
Supplier: Corning
Initial culturing techniques for hES cells originated from methodology developed for murine ES (mES cells), including the use of mouse embryonic fibroblast (MEF) feeder layers