80000iu Recombinant Human Fibroblast Growth Factor-basic (rh-bFGF) bfgf freeze dried powder
- FOB Price: USD: 1.00-1.00 /Gram Get Latest Price
- Min.Order: 1 Milligram
- Payment Terms: L/C,T/T,Other
- Available Specifications:
Cosmetic grade (1-10)Gram
- Product Details
Keywords
- Recombinant Human Fibroblast Growth Factor-basic
- Human oligopeptide-3
- bFGF
Quick Details
- ProName: 80000iu Recombinant Human Fibroblast G...
- Appearance: White powder
- Application: Skin care peptide as cosmetic ingredie...
- DeliveryTime: three to five days
- PackAge: Customized packing
- Port: Chengdu
- ProductionCapacity: 1 Kilogram/Month
- Purity: 98% min
- Storage: Store at -20 degrees
- Transportation: DHL, FeDex and EMS
- LimitNum: 1 Milligram
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Details
Recombinant Human Fibroblast Growth Factor-basic (rh-bFGF)
Product Name: Recombinant Human Fibroblast Growth Factor-basic (rh-bFGF)
Packing Details: 80000iu/mg
Mol. Wt.: 17.2 kDa
Resources: Escherichia coli (E. coli)
Grade: Cosmetic and pharmaceutical
Purity: ≥95% by SDS-PAGE analysis
Storage Condition: -20oC
Storage Duration: 3 years
Description:
Fibroblast Growth Factor-basic (bFGF), also known as FGF-2, is a heparin-binding member of the FGF superfamily of molecules. It plays important role in cell proliferation and differentiation associated with embryogenesis, tissue regeneration, wound healing, CNS development, angiogenesis, and tumor progression. Additionally, bFGF is a potent mitogenic agent for a wide variety of mesoderm-derived cells including BALB/c 3T3 fibroblasts, capillary and endocardial endothelial cells, myoblasts, vascular smooth muscle cells, mesothelial cells, glial and astroglial cells, and adrenal cortex cells.
Recombinant human bFGF in E. coli is a single, non-glycosylated, polypeptide chain containing 155 amino acids and having a molecular mass of 17.2 kDa.
Notes:
It is recommended that the product is reconstituted with sterile water into a final concentration of no more than 0.5 mg/ml. Store the reconstituted product in aliquots at -20°C. Avoid multiple freeze-thaw cycles and exposure to frequent temperature changes.
The use of strong acids and alkalis, strong oxidants, and high concentrations of organic solvents should be avoided to protect the product from denaturation.
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