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Recombinant human VGF
NERP-1; NERP-2; Nerve growth factor inducible; Neuroendocrine regulatory peptide-2; Neurosecretory protein VGF; VGF_HUMAN.
濃度:1mg/ ml
來源:Recombinant Human
純度:≥95% SDS-PAGE
表達系統(tǒng):Escherichia coli
標簽:His tag
蛋白長度:Full length protein
內(nèi)毒素水平:<1.000 Eu/µg
純化方法:HPLC
應(yīng)用:SDS-PAGE,Western blot,,ELISA
Biological activity,immunology research
保存:-20℃
保質(zhì)期:1年
VGF is a peptide synthesized and secreted by neurons and is upregulated by NGF in the PC12 cell line. VGF is widely expressed in both the PNS and CNS, but is especially abundant in the adult hypothalamus. VGF plays an essential role in how the brain regulates energy expenditure and body weight. Its expression is rapidly induced by injury, the circadian clock, and neuronal activity
產(chǎn)品名稱:Rabbit Anti-VGF antibody
Rabbit Anti-VGF
別名:NERP-1; NERP-2; Nerve growth factor inducible; Neuroendocrine regulatory peptide-2; Neurosecretory protein VGF; VGF_HUMAN.
來源:Rabbit
克隆類型:Polyclonal
濃度:1mg/ml
亞型:IgG
應(yīng)用: WB=1:1000-1:2000,Elisa=1:1000-1:2000,IHC-P=1:100-500,IHC-F=1:100-500,ICC/IF=1:100-500,IF=1:100-500
反應(yīng):Rat (predicted: Human,Mouse,Cow,Dog,Horse)
理論分子量:65kDa
免疫原:KLH conjugated synthetic peptide derived from human VGF
保存:-20℃
保質(zhì)期:1年
單克隆抗體
產(chǎn)品名稱:Anti-VGF antibody
Mouse Anti-VGF
別名:NERP-1; NERP-2; Nerve growth factor inducible; Neuroendocrine regulatory peptide-2; Neurosecretory protein VGF; VGF_HUMAN.
來源:Mouse
克隆類型:Monoclonal
濃度:1mg/ml
亞型:IgG
應(yīng)用: WB=1:1000-1:2000,Elisa=1:1000-1:2000,IHC-P=1:100-500,IHC-F=1:100-500,ICC/IF=1:100-500,IF=1:100-500
反應(yīng): Human
理論分子量:65kDa
免疫原:KLH conjugated synthetic peptide derived from human VGF
保存:-20℃
保質(zhì)期:1年
VGF is a peptide synthesized and secreted by neurons and is upregulated by NGF in the PC12 cell line. VGF is widely expressed in both the PNS and CNS, but is especially abundant in the adult hypothalamus. VGF plays an essential role in how the brain regulates energy expenditure and body weight. Its expression is rapidly induced by injury, the circadian clock, and neuronal activity