Specifications
- Assay duration:Multiple steps
- Assay Type:Sandwich
- Conjugate ELISA:Biotin
- Format:Pre-coated
- Host:Rabbit
- Primary antibody reactivity:Human
- Target protein:NOS2
- Size:1 Kit
- Sample Type:Serum, Plasma, Tissue homogenates, Cell lysates, Cell culture supernates and other biological fluids
- Cross Reactivity:No significant cross-reactivity or interference between High Sensitive Nitric Oxide Synthase 2, Inducible (NOS2) and analogues was observed
- Detection Method:Colorimetric
- Time to Results:3 h
- Shelf Life:12 Months
- Detection Range:15.6 - 1000 pg/ml
- Storage Temperature:4 °C for one month (frequent use), −20 °C for one year
- Sample Volume:100 µl
- Sensitivity:5.5 pg/ml
- Regulatory Status:RUO
- Cat. No.:MSPP-HEA837HU
- No. of tests:96 wells
Specifications
About this item
This assay has high sensitivity and excellent specificity for detecting Human NOS2 (Nitric Oxide Synthase 2, Inducible). The assay range is from 15.6 to 1,000 pg/ml (Sandwich kit) with a sensitivity of 5.5 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%
Nitric oxide synthase 2A (inducible, hepatocytes)is an enzyme encoded by the NOS2 gene. is produced by a group of enzymes called nitric oxide synthases (NOS). These enzymes catalyze the production of NO and L-citrulline from L-arginine, O2, and NADPH-derived electrons. Mammalian systems contain three well-characterized isoforms of the enzyme: neuronal NOS (nNOS, also called NOS1), inducible NOS (iNOS or NOS2), and endothelial NOS (eNOS or NOS3). The names reflect characteristics of the activity or the original tissues in which the enzymes were first described, but it is now known that each of these isoforms is expressed in a variety of tissues and cell types. The three main isoforms share structural similarities and have nearly identical catalytic mechanisms.