| Application | Recommended Dilution |
|---|---|
| IHC | 1:200-1:500 |
| IF | 1:50-1:200 |
IHC image of CSB-PA008604LA01HU diluted at 1:400 and staining in paraffin-embedded human brain tissue performed on a Leica BondTM system. After dewaxing and hydration, antigen retrieval was mediated by high pressure in a citrate buffer (pH 6.0). Section was blocked with 10% normal goat serum 30min at RT. Then primary antibody (1% BSA) was incubated at 4°C overnight. The primary is detected by a biotinylated secondary antibody and visualized using an HRP conjugated SP system.
IHC image of CSB-PA008604LA01HU diluted at 1:400 and staining in paraffin-embedded human pancreatic tissue performed on a Leica BondTM system. After dewaxing and hydration, antigen retrieval was mediated by high pressure in a citrate buffer (pH 6.0). Section was blocked with 10% normal goat serum 30min at RT. Then primary antibody (1% BSA) was incubated at 4°C overnight. The primary is detected by a biotinylated secondary antibody and visualized using an HRP conjugated SP system.
Immunofluorescence staining of HepG2 cells with CSB-PA008604LA01HU at 1:133, counter-stained with DAPI. The cells were fixed in 4% formaldehyde, permeabilized using 0.2% Triton X-100 and blocked in 10% normal Goat Serum. The cells were then incubated with the antibody overnight at 4°C. The secondary antibody was Alexa Fluor 488-congugated AffiniPure Goat Anti-Rabbit IgG(H+L).
CUSABIO's product CSB-PA008604LA01HU is a polyclonal IgG antibody developed against the recombinant protein corresponding to the amino acids 143-178 of the human FFAR1. This FFAR1 antibody got purified by protein G, resulting in a purity exceeding 95%. It is recommended for the recognition and detection of human FFAR1 protein in ELISA, IHC, and IF applications.
The FFAR1 protein is involved in the fatty acid signaling pathway that can lead to the release of insulin from pancreatic beta cells, as well as the regulation of glucose and lipid metabolism in various tissues. FFAR1 has also been implicated in the regulation of appetite and energy expenditure, as well as inflammation, cell proliferation, and differentiation.
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