The AlphaLISA® Human IL-23 Detection Kit is designed for detection and quantitation of human interleukin 23 in cell culture media using a homogeneous (no-wash steps, no separation steps) assay.
For research use only. Not for use in diagnostic procedures. All products to be used in accordance with applicable laws and regulations including without limitation, consumption & disposal requirements under European REACH regulations (EC 1907/2006).
Formats:
Features:
IL23A, also known as human interleukin 23, is a pro-inflammatory cytokine produced by T-helper cells. Interleukin-23 is a heterodimeric cytokine composed of an IL-12p40 subunit that is shared with IL-12 and the IL-23p19 subunit. It plays major role in inflammation in disorders such as arthritis and psoriasis, and has been demonstrated as being the primary generator of inflammation in multiple sclerosis, a role previously thought to be mediated by the related cytokine interleukin 12. The present kit is designed to detect IL23A in serum, plasma, cell culture supernatants, and cell lysates.
AlphaLISA technology allows the detection of molecules of interest in a no-wash, highly sensitive, quantitative assay. In an AlphaLISA assay, a biotinylated anti-analyte antibody binds to the Streptavidin-coated Donor beads while another anti-analyte antibody is conjugated to AlphaLISA Acceptor beads. In the presence of the analyte, the beads come into close proximity. The excitation of the Donor beads causes the release of singlet oxygen molecules that triggers a cascade of energy transfer in the Acceptor beads, resulting in a sharp peak of light emission at 615 nm.
Application |
Protein Analysis & Detection
|
---|---|
Assay Points |
100
|
Assay Target Class |
Cytokine
|
Automation Compatible |
Yes
|
Brand |
AlphaLISA
|
Detection Method |
Alpha
|
Experimental Type |
In vitro
|
Format |
Microplates
|
Shipping Conditions |
Shipped in Blue Ice
|
Therapeutic Area |
Inflammation
|
Unit Size |
100 Assay Points
|
Cytokines play a vital role in both innate and adaptive immunity and are known for their ability to exert diverse functions on...
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