Q-Plex™ Human Angiogenesis (9-Plex)
List Price: $1,426
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Q-Plex Human Angiogenesis (9-Plex)
For measurement of Ang-2, FGF, HGF, IL-8, PDGF-BB, TIMP-1, TIMP-2, TNFα, VEGF
- Species Specificity: Human
- Validated Sample Type: Serum, EDTA/Heparin Plasma
- Sample Volume Required: Min. 25 µL
- Estimated Assay Length: 2.25 hours
- Intra-Assay Cross-Reactivity: All analytes < 1% intra-panel cross-reactivity
- Assay Type: Planar Based Multiplexed ELISA
- Detection Method: Chemiluminescent
- Multiplex Format: 96-well solid plate
- Catalog: #150233HU
The Q-Plex Human Angiogenesis (9-Plex) is a fully quantitative ELISA-based chemiluminescent assay allowing the concurrent measurement of nine biomarkers or analytes. Using only 25 µL of sample per well, up to 80 samples can be assayed for all nine markers in the panel within 2.25 hours.
The Q-Plex Human Angiogenesis (9-Plex) provides researchers an easy to use and cost effective means of generating a cytokine profile for each sample. Q-Plex™ plates are built by adsorbing nine distinct capture antibodies in a defined array to the bottom of each well. Our high quality reagents help ensure the accuracy of your results.
Each kit contains a 96-well plate, featuring the relevant biomarker panel in each well, and all reagents required to perform testing.
- Detection Mix
- Sample Diluents
- Streptavidin HRP
- Wash Buffer
All Quansys Q-Plex™ Multiplex and Singleplex assays require the use of the Q-View™ software to read and interpret the test results. A fully-functional, free trial version of the software is available to download, install, and use to analyze your first kit(s). At the end of the trial period, a purchased license is required to continue the use of the Q-View software.
Q-Plex™ arrays are developed and optimized to work with Q-View™ imagers. Quansys does not guarantee the results obtained from other imagers and not all imagers are compatible with Quansys Q-Plex arrays.
Role of erythropoietin in the angiogenic activity of bone marrow endothelial cells of MGUS and multiple myeloma patients
Publication: Oncotarget, March 2016
Continuous exposure to non-lethal doses of sodium iodate induces retinal pigment epithelial cell dysfunction
Publication: Sci Rep, November 2016
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