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MMP13 (human) AlphaLISA Detection Kit, 500 Assay Points

ITEM#: 2013-AL318C

MFR#: AL318C

The AlphaLISA® Human MMP-13 Detection Kit is designed for detection and quantitation of human MMP-13 in cell culture media using a homogeneous (no-wash steps, no separation steps) assay..Formats: Our HV (100 assay point) kits allow you to run 100 wel

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The AlphaLISA® Human MMP-13 Detection Kit is designed for detection and quantitation of human MMP-13 in cell culture media using a homogeneous (no-wash steps, no separation steps) assay..Formats: Our HV (100 assay point) kits allow you to run 100 wells in 96-well format, using a 100 µL reaction volume (10 µL of sample). Our 500 assay point kit allows you to run 500 wells in 96-well or 384-well format, using a 50 µL reaction volume (5 µL of sample). Our 5,000 assay point kit allows you to run 5,000 wells in 96-well or 384-well format, using a 50 µL reaction volume (5 µL of sample). Features: No-wash steps, no separation steps ELISA alternative technology Sensitive detection Broad sample compatibility Small sample volume Results in less than 3 hours Half the time of an ELISA assay Matrix metalloproteinase 13 (MMP13, Collagenase 3), a member of the matrix metalloproteinase family, is an enzyme composed of a catalytic domain and a hemopexin-like domain, activated by cleavage of inactive pro-proteins by extracellular proteinases. MMP13 is involved in the breakdown of extracellular matrix in normal physiological processes, such as embryonic development, reproduction, and tissue remodeling, as well as in disease processes, such as arthritis and metastasis of cancer. 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.