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关于此项目
NACRES:
NA.32
UNSPSC Code:
41116158
Gene information:
human ... FGF9(2254)
Input:
sample type urine
sample type serum
sample type plasma
sample type cell culture supernatant(s)
sample type serum
sample type plasma
sample type cell culture supernatant(s)
Species reactivity:
human
Storage temp.:
−20°C
Shipped in:
wet ice
species reactivity
human
packaging
kit of 96 wells (12 strips x 8 wells)
technique(s)
ELISA: suitable, capture ELISA: suitable
input
sample type urine
sample type serum
sample type plasma
sample type cell culture supernatant(s)
assay range
inter-assay cv: <12%
intra-assay cv: <10%
sensitivity: 200 pg/mL
standard curve range: 358.4-35000 pg/mL
detection method
colorimetric
shipped in
wet ice
storage temp.
−20°C
Gene Information
human ... FGF9(2254)
General description
The Human FGF-9 ELISA (Enzyme-Linked Immunosorbent Assay) kit is an in vitro enzyme-linked immunosorbent assay for the quantitative measurement of human FGF-9 in serum, plasma, cell culture supernatants and urine.
Immunogen
Recombinant Human FGF9
Application
请参考Protocol了解详情。
Other Notes
A sample Certificate of Analysis is available for this product.
Please type the word sample in the text box provided for lot number.
Please type the word sample in the text box provided for lot number.
signalword
Warning
hcodes
pcodes
Hazard Classifications
Met. Corr. 1
存储类别
8A - Combustible corrosive hazardous materials
法规信息
新产品
此项目有
Somiraa S Said et al.
Advanced healthcare materials, 8(8), e1801294-e1801294 (2019-02-21)
Delivery of angiogenic growth factors lessens ischemia in preclinical models but has demonstrated little benefit in patients with peripheral vascular disease. Augmenting the wrapping of nascent microvessels by mural cells constitutes an alternative strategy to regenerating a functional microvasculature, particularly
Somiraa S Said et al.
Pharmaceutical research, 31(12), 3335-3347 (2014-05-24)
For building functional vasculature, controlled delivery of fibroblast growth factor-9 (FGF9) from electrospun fibers is an appealing strategy to overcome challenges associated with its short half-life. FGF9 sustained delivery could potentially drive muscularization of angiogenic sprouts and help regenerate stable
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