Leinco Technologies

Anti-Human FGF-Basic (Clone 10060)

Product Code:
 
LEI-F149
Product Group:
 
Primary Antibodies
Host Type:
 
Mouse
Antibody Isotype:
 
IgG2b
Antibody Clonality:
 
Monoclonal
Antibody Clone:
 
10060
Regulatory Status:
 
RUO
Target Species:
 
Human
Application:
 
Enzyme-Linked Immunosorbent Assay (ELISA)
Shipping:
 
Ambient
Storage:
 
This lyophilized mon°Clonal antibody should be stored desiccated at -20°C. For long-term storage of the reconstituted antibody aseptically aliquot into working volumes and store at -20°C in a manual defrost freezer. Avoid Repeated Freeze Thaw Cycles.
 

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CodeSizePrice
LEI-F149-25ug25 ug£375.00
Quantity:
LEI-F149-100ug100 ug£659.00
Quantity:
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This product comes from: US.
Typical lead time: 14-21 working days.
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Further Information

Conjugate/Tag/Label:
Purified No Carrier Protein
Format:
This purified monoclonal antibody is aseptically filtered and lyophilized from PBS with no carrier proteins or preservatives added.
Formulation:
This purified monoclonal antibody is aseptically filtered and lyophilized from PBS with no carrier proteins or preservatives added.
Immunogen:
Purified Recombinant Human FGF-Basic (>98%)
Long Description:
Acidic and basic fibroblast growth factors (FGFs) are members of a family of proteins that exert pleiotropic effects in a range of cell types including skeletal myocytes.1 Fibroblast growth factor basic (FGF basic) significantly promote angiogenesis; a central event for the growth and metastasis of solid tumors.2 It is expressed in the brain, pituitary, kidney, retina, bone, testis, adrenal gland, liver, placenta, and monocytes, epithelial and endothelial cells. FGF-basic plays a central role during prenatal development and postnatal growth and regeneration of tissues, by promoting cellular proliferation and differentiation. FGF-basic is one of the angiogenesis factors and may promote wound healing.3
Target:
FGF-Basic

References

1. Swain, JL. et al. (1991) Developement 111: 7412. Grevers, G. et al. (1997) Laryngorhinootologie 76: 4213. B?hring, HJ. et al. (2007) Differentiation. 75(4):279-91