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Rabbit Anti-Mouse Fibroblast Growth Factor 7 (FGF7) Polyclonal Antibody

Cat. No.VD2N59

Product TypeAnimal-targeted Antibodies

Size

Product Overview

BioVenic rabbit polyclonal antibody is specific for mouse fibroblast growth factor 7. It is affinity purified by protein A. It can be applied to WB, IHC, ICC and IP assays of mouse fibroblast growth factor 7.

Specifications

Application WB; IHC; ICC; IP
Clonality Polyclonal
Classification Primary Antibody
Clone A13N37
Host Rabbit
Target Species Mouse
Species Reactivity Mouse
Specificity Mouse Fibroblast Growth Factor 7
Isotype IgG
Immunogen Recombinant protein of mouse fibroblast growth factor 7
Purification Protein A Purified
Concentration 0.5 mg/mL
Conjugation Unconjugated
Preservative and Stabilizer 0.05% Proclin 300
Buffer 0.01M Phosphate Buffered Saline, pH 7.4, with 50% Glycerol
Physical State Liquid

Target Information

Mouse Fibroblast Growth Factor 7 (FGF7), also known as keratinocyte growth factor (KGF), is a member of the FGF family. It is primarily produced by fibroblasts and plays a crucial role in epithelial cell proliferation and differentiation. FGF7 binds to the FGF receptor 2 (FGFR2) and activates signaling pathways that promote cell growth and repair. In mice, FGF7 is essential for maintaining tissue homeostasis and supporting wound healing processes.

Target Mouse Fibroblast Growth Factor 7
Target Synonym KGF; HBGF7; Keratinocyte Growth Factor; Heparin-binding growth factor 7
Gene ID 14178
UniProt ID P36363

Shipping and Storage

This product is shipped with wet ice packs. Store at -20°C on receipt (up to 2 years). Avoid repeated freezing and thawing as this may denature the antibody.

Documents

COA

To request a Certificate of Analysis, please enter the Lot No. in the search box. Note: Certificate of Analysis not available for kits.

The product is for research use only.
Not for commercial, prophylactic, diagnostic, or therapeutic applications.

References

  1. Takaya, Kento, et al. "Fibroblast growth factor 7 suppresses fibrosis and promotes epithelialization during wound healing in mouse fetuses." International journal of molecular sciences 23.13 (2022): 7087.
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