Specifications
- Assay duration:Multiple steps
- Assay Type:Sandwich
- Conjugate ELISA:Biotin
- Format:Pre-coated
- Host:Rabbit
- Primary antibody reactivity:Human
- Target protein:VGF
- Size:1 Kit
- Sample Type:Serum, Plasma, Cerebrospinal fluid and other biological fluids
- Cross Reactivity:No significant cross-reactivity or interference between High Sensitive VGF Nerve Growth Factor Inducible (VGF) and analogues was observed
- Detection Method:Colorimetric
- Time to Results:3 h
- Shelf Life:12 Months
- Detection Range:31.2 - 2000 pg/ml
- Storage Temperature:4 °C for one month (frequent use), −20 °C for one year
- Sample Volume:100 µl
- Sensitivity:12.8 pg/ml
- Regulatory Status:RUO
- Cat. No.:MSPP-HEB166HU
- No. of tests:96 wells
Specifications
About this item
This assay has high sensitivity and excellent specificity for detecting Human VGF (VGF Nerve Growth Factor Inducible). The assay range is from 31.2 to 2,000 pg/ml (Sandwich kit) with a sensitivity of 12.8 pg/ml. There is no detectable cross-reactivity with other relevant proteins. Activity loss rate and accelerated stability test ect have been conducted to guarantee the best performance of the products after long storage and delivery.
- High sensitivity and specificity
- Perfect reproducibility and consistency across batches
- Quality control with three-level inspections
- Wide range of targets/species available
- Intra-Assay: CV <10%, Inter-Assay: CV <12%
VGF or VGF nerve growth factor inducible is a protein and neuropeptide that may play a role in regulating energy homeostasis, metabolism and synaptic plasticity. The protein was first discovered in 1985 by Lewi et al., in an experiment with PC12 cells and its name is non-acronymic. VGF gene encodes a precursor which is divided by proteolysis to polypeptides of different mass, which have a variety of functions, the best studied of which is the role of TLQP-21 in the control of appetite and inflammation. The expression of VGF and VGF-derived peptides is detected in a subset of neurons in the central and peripheral nervous systems and specific populations of endocrine cells in the adenohypophysis, adrenal medulla, gastrointestinal tract, and pancreas.