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TRANSFORMING GROWTH FACTOR-BETA1 HUMAN&
Кат. №: H8541
Производитель: Sigma-Aldrich
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TRANSFORMING GROWTH FACTOR-BETA1 HUMAN&
Main image
Кат. №: H8541
Производитель: Sigma-Aldrich
Кол-во:
Цена по запросу
Товар оформляется под заказ
Main image
Печать
TRANSFORMING GROWTH FACTOR-BETA1 HUMAN&
Кат. №: H8541
Производитель: Sigma-Aldrich
Кол-во:
Цена по запросу
Товар оформляется под заказ
Description_x000D_ General description_x000D_ The TGFB1 gene is mapped to human chromosome 19q13.2 and codes for a 25 kDa peptide. TGF-ß1 polypeptide is produced as a precursor with hydrophobic signal sequence, pro-region and mature peptide. Cleavage of the precursor at tetrabasic cleavage site results in monomers of carboxy-terminal 112 amino acids. The biologically active form of Tgfb1 exists as a disulphide-linked homodimer._x000D_ Application_x000D_ Transforming Growth Factor-β1 (TGF-β) human has been used :_x000D_ • to study the expression of PDGFRB (Platelet derived growth factor receptor β) in association with transforming growth factor-β signaling._x000D_ • to stimulate lung fibrosis in human fetal lung fibroblast cell line in order to further measure the in-plane elasticity of live cell layers using a pressure sensor embedded microfluidic device._x000D_ • to study the effect of TGF-β on HTRA1 (high-temperature requirement A1)-affected Wnt target genes._x000D_ Packaging_x000D_ 5 μg in poly bottle_x000D_ Biochem/physiol Actions_x000D_ TGF-β1 is a multifunctional peptide capable of influencing cell proliferation, differentiation, and other functions in a wide range of cell types. Transformed as well as non-neoplastic tissues release transforming growth factors and essentially all cells possess a specific TGF-β1 receptor. In general, cells of mesenchymal origin appear to be stimulated by TGF-β1; whereas, hepatocytes, T and B lymphocytes, keratinocytes, and many epithelial cells are inhibited by the peptide. TGF-β1 interacts with Epidermal Growth Factor (EGF), Platelet Derived Growth Factor (PDGF), Fibroblast Growth Factor (FGF), and T Cell Growth Factor (T-CGF) either by enhancing or antagonizing their characteristic actions. TGF-β1 plays a fundamental role in tissue growth and differentiation by involvement in adipogenesis, myogenesis, chondrogenesis, osteogenesis, epithelial cell differentiation, and immune cell function. TGF-β1 is associated with the developmental and metastasis of colorectal cancer._x000D_ Transforming growth factor-β1 (TGF-β1) is produced by many cell types, but is reported to be most concentrated in mammalian platelets, where it is present at approximately four times the level of TGF-β2._x000D_ Preparation Note_x000D_ HumanKine TGF-β1 is expressed in human HEK 293 cells as a mature, disulfide linked, non- glycosylated, homodimer with a predicted molecular mass of 25 kDa._x000D_ Analysis Note_x000D_ The specific activity was determined by the dose dependent inhibition of IL-4 induced proliferation of mouse HT-2 cells (BALB/c spleen activated by sheep erythrocytes in the presence of IL-2)._x000D_ Legal Information_x000D_ HumanKine is a registered trademark of HumanZyme Inc.
Related Categories
Cell Culture, Growth Factors and Cytokines, HumanKine Growth Factors and Cytokines, Reagents and Supplements, Recombinant TGF proteins, Transforming Growth FactorsMore... Quality Level
Дорогой клиент, на сайте внедрена нейросеть для сбора информации о товаре. Это может привести к незначительным расхождениям в характеристиках продукции.
Description_x000D_ General description_x000D_ The TGFB1 gene is mapped to human chromosome 19q13.2 and codes for a 25 kDa peptide. TGF-ß1 polypeptide is produced as a precursor with hydrophobic signal sequence, pro-region and mature peptide. Cleavage of the precursor at tetrabasic cleavage site results in monomers of carboxy-terminal 112 amino acids. The biologically active form of Tgfb1 exists as a disulphide-linked homodimer._x000D_ Application_x000D_ Transforming Growth Factor-β1 (TGF-β) human has been used :_x000D_ • to study the expression of PDGFRB (Platelet derived growth factor receptor β) in association with transforming growth factor-β signaling._x000D_ • to stimulate lung fibrosis in human fetal lung fibroblast cell line in order to further measure the in-plane elasticity of live cell layers using a pressure sensor embedded microfluidic device._x000D_ • to study the effect of TGF-β on HTRA1 (high-temperature requirement A1)-affected Wnt target genes._x000D_ Packaging_x000D_ 5 μg in poly bottle_x000D_ Biochem/physiol Actions_x000D_ TGF-β1 is a multifunctional peptide capable of influencing cell proliferation, differentiation, and other functions in a wide range of cell types. Transformed as well as non-neoplastic tissues release transforming growth factors and essentially all cells possess a specific TGF-β1 receptor. In general, cells of mesenchymal origin appear to be stimulated by TGF-β1; whereas, hepatocytes, T and B lymphocytes, keratinocytes, and many epithelial cells are inhibited by the peptide. TGF-β1 interacts with Epidermal Growth Factor (EGF), Platelet Derived Growth Factor (PDGF), Fibroblast Growth Factor (FGF), and T Cell Growth Factor (T-CGF) either by enhancing or antagonizing their characteristic actions. TGF-β1 plays a fundamental role in tissue growth and differentiation by involvement in adipogenesis, myogenesis, chondrogenesis, osteogenesis, epithelial cell differentiation, and immune cell function. TGF-β1 is associated with the developmental and metastasis of colorectal cancer._x000D_ Transforming growth factor-β1 (TGF-β1) is produced by many cell types, but is reported to be most concentrated in mammalian platelets, where it is present at approximately four times the level of TGF-β2._x000D_ Preparation Note_x000D_ HumanKine TGF-β1 is expressed in human HEK 293 cells as a mature, disulfide linked, non- glycosylated, homodimer with a predicted molecular mass of 25 kDa._x000D_ Analysis Note_x000D_ The specific activity was determined by the dose dependent inhibition of IL-4 induced proliferation of mouse HT-2 cells (BALB/c spleen activated by sheep erythrocytes in the presence of IL-2)._x000D_ Legal Information_x000D_ HumanKine is a registered trademark of HumanZyme Inc.
Related Categories
Cell Culture, Growth Factors and Cytokines, HumanKine Growth Factors and Cytokines, Reagents and Supplements, Recombinant TGF proteins, Transforming Growth FactorsMore... Quality Level
Дорогой клиент, на сайте внедрена нейросеть для сбора информации о товаре. Это может привести к незначительным расхождениям в характеристиках продукции.